Academic Calendar

Computer Engineering/Red River College Polytechnic Articulation Agreement

Electrical Engineering Technology Diploma Program

Course Title Hours
Preliminary Engineering Program
CHEM 1100Introductory Chemistry 1: Atomic and Molecular Structure and Energetics3
CHEM 1122Introduction to Chemistry Techniques for Engineering 11.5
COMP 1012Computer Programming for Scientists and Engineers3
ENG 1430Design in Engineering3
ENG 1440Introduction to Statics3
ENG 1450Introduction to Electrical and Computer Engineering RRC13
ENG 1460Introduction to Thermal Sciences3
MATH 1210Techniques of Classical and Linear Algebra3
MATH 1510Applied Calculus 1 RRC23
MATH 1710Applied Calculus 2 RRC33
PHYS 1050Physics 1: Mechanics RRC43
One course that satisfies the university "writing" requirement3
One complementary studies elective 13
Program courses and electives taught by the department
ECE 2160Electronics 2E RRC55
ECE 2220Digital Logic Systems RRC65
ECE 2262Electric Circuits RRC74
ECE 2400Engineering Algorithms 14
ECE 3400Engineering Algorithms 24
ECE 3610Microprocessing Systems4
ECE 3700Telecommunication Network Engineering4
ECE 3740Systems Engineering Principles 14
ECE 3760Digital Systems Design 14
ECE 3780Signal Processing 14
ECE 4150Control Systems4
or ECE 4260 Communications Systems
ECE 4240Microprocessor Interfacing4
ECE 4830Signal Processing 24
ECE 4600Group Design Project 26
Choose ONE of:3-4
Real-time Embedded Systems
Parallel Processing
Distributed Computing
ECE 3720Electric Power and Machines RRC84
ECE 4850Topics in Electrical and Computer Engineering 1 RRC94
ECE 4860Topics in Electrical and Computer Engineering 2 RRC104
One Technical Elective from the approved list3-4
One Technical Elective from the approved list3-4
Program courses taught by other academic departments
ANTH 2430Ecology, Technology and Society 33
COMP 1020Introductory Computer Science 23
COMP 2140Data Structures: Analysis and Implementation3
ENG 2040Engineering Communication: Strategies, Practice and Design RRC113
ENG 3000Engineering Economics3
MATH 2130Engineering Mathematical Analysis 13
MATH 2132Engineering Mathematical Analysis 23
MATH 2136Mathematics for Computer Engineering3
PHYS 2152Modern Physics for Engineers3
STAT 2220Contemporary Statistics for Engineers 43
Electives taught by other departments
One complementary studies elective 13
One natural science elective course from the approved list3
One natural science elective course from the approved list3
Total Hours157.5-160.5
1

The complementary studies elective can be any course at the 1000 level or above from either the faculties of Arts or Management. However, ARTS 1110 may not be used for credit in the Price Faculty of Engineering.

2

Course continues through both terms with credit given upon completion.

3

ANTH 2430 is an Indigenous Knowledge course.

4

STAT 2220 is the recommended statistics course within this program, however, STAT 1000 and STAT 2000 together are considered equivalent to STAT 2220.

RRC1

RRC Polytech Equivalent Course: CIRC-1005 DC Circuits AND DIGI-1003 Digital Logic.

RRC2

RRC Polytech Equivalent Course: MATH-2013 Calculus.

RRC3

RRC Polytech Equivalent Course: MATH-2013 Calculus AND CTRL-1001 Linear Controls.

RRC4

RRC Polytech Equivalent Course: PHYS-1001 Physics 1 AND PHYS-2001 Physics 2.

RRC5

RRC Polytech Equivalent Course: DEVC-2003 Power Electronics 1 AND DEVC-2004 Semiconductor Devices AND DEVC-3001 Power Electronics.

RRC6

RRC Polytech Equivalent Course: DIGI-1003 Digital Logic.

RRC7

RRC Polytech Equivalent Course: CIRC-1005 DC Circuits AND CIRC-2002 AC Circuits AND PROJ-3002 Final Project.

RRC8

RRC Polytech Equivalent Course: MACH-1092 Electrical Machines 1 AND MACH-2000 Electrical Machines 2 AND TRAN-1000 Transformers.

RRC9

RRC Polytech Equivalent Course: CODE-2001 Electrical Practices and Design AND PRJ-2000 Project Management AND WRKS-1037 Introduction to Quality.

RRC10

RRC Polytech Equivalent Course: DCOM-1001 Digital Communications AND PLCS-1110 PLCs 1 AND PLCS-2111 PLCs 2.

RRC11

RRC Polytech Equivalent Course: COMM-1152 Technical Communications AND COMM-3005 Technical Thesis AND PROJ-3002 Final Project.

Electronic Engineering Technology Diploma Program

Course Title Hours
Preliminary Engineering Program
CHEM 1100Introductory Chemistry 1: Atomic and Molecular Structure and Energetics3
CHEM 1122Introduction to Chemistry Techniques for Engineering 11.5
COMP 1012Computer Programming for Scientists and Engineers3
ENG 1430Design in Engineering3
ENG 1440Introduction to Statics3
ENG 1450Introduction to Electrical and Computer Engineering RRC13
ENG 1460Introduction to Thermal Sciences3
MATH 1210Techniques of Classical and Linear Algebra3
MATH 1510Applied Calculus 1 RRC23
MATH 1710Applied Calculus 2 RRC33
PHYS 1050Physics 1: Mechanics RRC43
One course that satisfies the university "writing" requirement3
One complementary studies elective 13
Program courses and electives taught by the department
ECE 2160Electronics 2E RRC55
ECE 2220Digital Logic Systems RRC65
ECE 2262Electric Circuits RRC74
ECE 2400Engineering Algorithms 14
ECE 3400Engineering Algorithms 24
ECE 3610Microprocessing Systems4
ECE 3700Telecommunication Network Engineering4
ECE 3740Systems Engineering Principles 14
ECE 3760Digital Systems Design 14
ECE 3780Signal Processing 14
ECE 4150Control Systems4
or ECE 4260 Communications Systems
ECE 4240Microprocessor Interfacing4
ECE 4830Signal Processing 24
ECE 4600Group Design Project 26
Choose ONE of:3-4
Real-time Embedded Systems
Parallel Processing
Distributed Computing
ECE 4850Topics in Electrical and Computer Engineering 1 RRC84
ECE 4860Topics in Electrical and Computer Engineering 2 RRC94
One Technical Elective from the approved list3-4
One Technical Elective from the approved list3-4
One Technical Elective from the approved list3-4
Program courses taught by other academic departments
ANTH 2430Ecology, Technology and Society 33
COMP 1020Introductory Computer Science 23
COMP 2140Data Structures: Analysis and Implementation3
ENG 2040Engineering Communication: Strategies, Practice and Design RRC103
ENG 3000Engineering Economics3
MATH 2130Engineering Mathematical Analysis 13
MATH 2132Engineering Mathematical Analysis 23
MATH 2136Mathematics for Computer Engineering3
PHYS 2152Modern Physics for Engineers3
STAT 2220Contemporary Statistics for Engineers 4,RRC113
Electives taught by other departments
One complementary studies elective 13
One natural science elective course from the approved list3
One natural science elective course from the approved list3
Total Hours156.5-160.5
1

The complementary studies electives can be any course at the 1000 level or above from either the faculties of Arts or Management. However, ARTS 1110 may not be used for credit in the Price Faculty of Engineering.

2

Course continues through both terms with credit given upon completion.

3

ANTH 2430 is an Indigenous Knowledge course.

4

STAT 2220 is the recommended statistics course within this program, however, STAT 1000 and STAT 2000 together are considered equivalent to STAT 2220.

RRC1

RRC Polytech Equivalent Course: CIRC-1005 DC Circuits AND DIGI-1003 Digital Logic.

RRC2

RRC Polytech Equivalent Course: MATH-2013 Calculus.

RRC3

RRC Polytech Equivalent Course: MATH-2013 Calculus AND MATH-3007 Advanced Calculus.

RRC4

RRC Polytech Equivalent Course: PHYS-1001 Physics 1 AND PHYS-2001 Physics 2.

RRC5

RRC Polytech Equivalent Course: DEVC-2004 Semiconductor Devices AND DEVC-2005 Analog Devices and Applications.

RRC6

RRC Polytech Equivalent Course: DIGI-1003 Digital Logic AND DIGI-2224 Digital Systems.

RRC7

RRC Polytech Equivalent Course: CIRC-1005 DC Circuits AND CIRC-2002 AC Circuits AND PROJ-3000 Final Project.

RRC8

RRC Polytech Equivalent Course: DCOM-1000 Digital Communications AND DCOM-2001 Routing & Switching.

RRC9

RRC Polytech Equivalent Course: EMBD-3000 Embedded Systems 2 AND MANU-2009 Printed Circuit Board Manufacturing and Layout.

RRC10

RRC Polytech Equivalent Course: COMM-1152 Technical Communications AND COMM-3005 Technical Thesis AND PROJ-3000 Final Project

RRC11

RRC Polytech Equivalent Course: STAT-1001 Statistics and Quality Assurance.

Instrumentation and Control Engineering Technology Diploma Program

Course Title Hours
Preliminary Engineering Program
CHEM 1100Introductory Chemistry 1: Atomic and Molecular Structure and Energetics3
CHEM 1122Introduction to Chemistry Techniques for Engineering 11.5
COMP 1012Computer Programming for Scientists and Engineers3
ENG 1430Design in Engineering3
ENG 1440Introduction to Statics3
ENG 1450Introduction to Electrical and Computer Engineering RRC13
ENG 1460Introduction to Thermal Sciences RRC23
MATH 1210Techniques of Classical and Linear Algebra3
MATH 1510Applied Calculus 1 RRC33
MATH 1710Applied Calculus 2 RRC43
PHYS 1050Physics 1: Mechanics RRC53
One course that satisfies the university "writing" requirement3
One complementary studies elective 13
Program courses and electives taught by the department
ECE 2160Electronics 2E RRC65
ECE 2220Digital Logic Systems RRC75
ECE 2262Electric Circuits RRC84
ECE 2400Engineering Algorithms 14
ECE 3400Engineering Algorithms 24
ECE 3610Microprocessing Systems4
ECE 3700Telecommunication Network Engineering4
ECE 3740Systems Engineering Principles 14
ECE 3760Digital Systems Design 14
ECE 3780Signal Processing 14
ECE 4150Control Systems4
or ECE 4260 Communications Systems
ECE 4240Microprocessor Interfacing4
ECE 4830Signal Processing 24
ECE 4600Group Design Project 26
Choose ONE of:3-4
Real-time Embedded Systems
Parallel Processing
Distributed Computing
ECE 4850Topics in Electrical and Computer Engineering 1 RRC94
ECE 4860Topics in Electrical and Computer Engineering 2 RRC104
One Technical Elective from the approved list3-4
One Technical Elective from the approved list3-4
One Technical Elective from the approved list3-4
Program courses taught by other academic departments
ANTH 2430Ecology, Technology and Society 33
COMP 1020Introductory Computer Science 23
COMP 2140Data Structures: Analysis and Implementation3
ENG 2040Engineering Communication: Strategies, Practice and Design RRC113
ENG 3000Engineering Economics3
MATH 2130Engineering Mathematical Analysis 13
MATH 2132Engineering Mathematical Analysis 23
MATH 2136Mathematics for Computer Engineering3
PHYS 2152Modern Physics for Engineers3
STAT 2220Contemporary Statistics for Engineers 43
Electives taught by other departments
One complementary studies elective 13
One natural science elective course from the approved list3
One natural science elective course from the approved list3
Total Hours156.5-160.5
1

The complementary studies electives can be any course at the 1000 level or above from either the faculties of Arts or Management. However, ARTS 1110 may not be used for credit in the Price Faculty of Engineering.

2

Course continues through both terms with credit given upon completion.

3

ANTH 2430 is an Indigenous Knowledge course.

4

STAT 2220 is the recommended statistics course within this program, however, STAT 1000 and STAT 2000 together are considered equivalent to STAT 2220.

RRC1

RRC Polytech Equivalent Course: CIRC-1005 DC Circuits AND DIGI-1003 Digital Logic.

RRC2

RRC Polytech Equivalent Course: INST-2001 Heat Transfer and Thermodynamics.

RRC3

RRC Polytech Equivalent Course: MATH-2013 Calculus

RRC4

RRC Polytech Equivalent Course: MATH-2013 Calculus AND MATH-3006 Applied Calculus

RRC5

RRC Polytech Equivalent Course: PHYS-1001 Physics 1 AND PHYS-2001 Physics 2.

RRC6

RRC Polytech Equivalent Course: DEVC-2004 Semiconductor Devices AND PROJ-3003 Final Project and Technical Thesis.

RRC7

RRC Polytech Equivalent Course: DIGI-1003 Digital Logic AND DIGI-2224 Digital Systems.

RRC8

RRC Polytech Equivalent Course: CIRC-1005 DC Circuits AND CIRC-2002 AC Circuits AND PROJ-3003 Final Project and Technical Thesis.

RRC9

RRC Polytech Equivalent Course: PLCS-1002 Instrumentation PLCs 1 AND PLCS-2002 Instrumentation PLCs 2 AND INST-2004 Process Measurements 2.

RRC10

RRC Polytech Equivalent Course: DCOM-1009 Data Acquisition AND DCOM-2003 Electrical Systems 2 AND INST-1008 Robotics and Automation.

RRC11

RRC Polytech Equivalent Course: PROJ-1004 Project Management AND PROJ-3003 Final Project and Technical Thesis.

Concentrations

Computer Engineering Focus Areas

Students wishing to pursue more focused studies in a Computer Engineering subject/research area have the choice of doing so through a recognized Focus Area. Courses taken towards a Focus Area take the place of some of the Technical Electives required in the Computer Engineering program.

Computer Networks and Communications Focus Area

Course Title Hours
ECE 4260Communications Systems4
Three CNC Electives9-12
Two Technical Electives6-8
Total Hours19-24
Computer Networks and Communications (CNC) Electives
Course Title Hours
ECE 4250Digital Communications4
ECE 4520Simulation and Modelling4
ECE 4540Wireless Networks4
ECE 4870Topics in Electrical and Computer Engineering 3 13
COMP 3010Distributed Computing3
COMP 4580Computer Security3
1

Topic Title:  ECE 4870 Computer Communication Networks

Embedded Systems Focus Area

Course Title Hours
ECE 4150Control Systems4
Three ES Electives9-12
Two Technical Electives6-8
Total Hours19-24
Embedded Systems (ES) Electives List
Course Title Hours
ECE 3630Real-time Embedded Systems 14
ECE 3770Digital Systems Design 24
ECE 4180Introduction to Robotics4
ECE 4440Computer Vision4
ECE 4560Modern Computing Systems4
ECE 4570Sensors, Instrumentation, and the loT4
ECE 4610Biomedical Instrumentation and Signal Processing4
ECE 4740Digital Systems Implementation4
COMP 3020Human-Computer Interaction 13
COMP 4580Computer Security3
1

If selected as a focus area elective, this course may not be used to satisfy other program requirements.

Software Engineering Focus Area

Course Title Hours
ECE 4260Communications Systems4
or ECE 4150 Control Systems
COMP 3350Software Engineering 13
Three SE Electives9-12
One Technical Elective3-4
Total Hours19-23
Software Engineering (SE) Electives
Course Title Hours
ECE 3750Systems Engineering Principles 24
ECE 4530Parallel Processing4
COMP 3010Distributed Computing3
COMP 3020Human-Computer Interaction 13
COMP 3380Databases Concepts and Usage3
COMP 4350Software Engineering 23
COMP 4580Computer Security3
COMP 4710Introduction to Data Mining3

Biomedical Focus Area

Course Title Hours
ECE 4610Biomedical Instrumentation and Signal Processing4
BIOL 1410Anatomy of the Human Body 13
PHYS 2600Electromagnetic Field Theory 13
One Biomedical Group A Elective Course3-4
One Biomedical Group A or Group B Elective Course3-4
Two Technical Electives6-8
Total Hours22-26
1

These courses satisfy the Natural Science Elective Requirement.

Biomedical Group A Elective Courses
Course Title Hours
ECE 4860Topics in Electrical and Computer Engineering 2 14
PHYS 3220Medical Physics and Physiological Measurement3
PHYS 4300Topics in Physics3
1

Topic Title:  ECE 4860 Biomedical Optics

Biomedical Group B Elective Courses
Course Title Hours
BIOL 1412Physiology of the Human Body3
MBIO 1220Essentials of Microbiology3
BIOE 3320Engineering Properties of Biological Materials4
BIOE 46104

mECHATRONICS FOCUS AREA (cOMP e)

Course Title Hours
ECE 4150Control Systems4
ECE 4180Introduction to Robotics4
MECH 4900Mechatronics System Design4
Two ME Electives8
One Technical Elective3-4
Total Hours23-24
Mechatronics (ME) Electives List
Course Title Hours
ECE 3720Electric Power and Machines 14
ECE 4160Control Engineering 14
ECE 4370Power Electronics 14
ECE 4440Computer Vision4
ENG 4110Operational Excellence4
1

Computer Engineering students are limited to a maximum of two (2) Electrical Engineering elective courses in
their program.

Entrepreneurship Focus Area

Course Title Hours
MECH 3170Project Management4
ENTR 2020Starting a New Business 13
Two EN Electives6-7
Two Technical Electives6-8
Total Hours19-22
1

In addition to satisfying focus area requirements, ENTR 2020 also meets the general program requirement for one complementary studies elective.

Entrepreneurship (EN) Electives List
Course Title Hours
ENG 4110Operational Excellence4
ENTR 3060Creativity and Entrepreneurial Thinking3
ENTR 3070Innovation Management3
ENTR 3102Technological Entrepreneurship3
ENTR 4100New Venture Analysis3

Preliminary Engineering Program

Campus Address/General Office: E2-262 EITC
Telephone: (204) 474 9167
Email Addresseng.info@umanitoba.ca
Website: umanitoba.ca/engineering

The Preliminary Engineering Program is common to all programs in engineering. Students must complete a minimum of eight (excluding CHEM 1122) to be eligible to apply to one of the five degree granting engineering programs. A student must complete the following list of 13 courses as part of their engineering program in order to graduate with a BSc degree in engineering.

Course Title Hours
CHEM 1100Introductory Chemistry 1: Atomic and Molecular Structure and Energetics 13
CHEM 1122Introduction to Chemistry Techniques for Engineering 1 11.5
COMP 1012Computer Programming for Scientists and Engineers3
ENG 1430Design in Engineering3
ENG 1440Introduction to Statics3
ENG 1450Introduction to Electrical and Computer Engineering3
ENG 1460Introduction to Thermal Sciences3
MATH 1210Techniques of Classical and Linear Algebra 23
MATH 1510Applied Calculus 1 33
MATH 1710Applied Calculus 2 33
PHIL 1290Critical Thinking 43
PHYS 1050Physics 1: Mechanics3
Written English Course 5,63
Total Hours37.5
1

The former CHEM 1300 may be used in lieu of the combination of CHEM 1100 and CHEM 1122.

2

MATH 1300 is not an acceptable equivalent to MATH 1210.

3

Students intending to obtain a degree in Engineering are strongly advised to complete MATH 1510 and MATH 1710. However, MATH 1500 or MATH 1230 may be taken in lieu of MATH 1510; MATH 1700 or MATH 1232 may be taken in lieu of MATH 1710. MATH 1524 is not an acceptable equivalent to MATH 1510.

4

PHIL 1290 is the recommended complementary studies elective. Students may; however, select any course from the Faculties of Arts or Management (Asper School of Business) at the 1000 level or above, except for ARTS 1110.

5

Course selected from the list of approved Written English Courses for Engineering students.

6

Three credit hours are required to satisfy the Written English course requirement.  Should a student complete a six credit hour course, the additional three credit hours may be used to satisfy general complementary studies requirements within a student's program.

7

Equivalent courses offered through Université de Saint-Boniface may be used to satisfy program requirements.

Courses

Electrical and Computer Engineering

ECE 2160  Electronics 2E  5 cr  
(Lab required) Characteristics of integrated circuits and transistors; design of DC and AC amplifiers in the steady state.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2262.
ECE 2220  Digital Logic Systems  5 cr  
(Lab required) Boolean algebra and logic primitives, net-work simplification techniques, physical realizations, number systems and codes; analysis and design of asynchronous and synchronous sequential circuits; applications to computation, measurements, and control.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 1450
Mutually Exclusive: COMP 3090
ECE 2240  Numerical Methods for Electrical Engineers  4 cr  
(Lab required) Numerical methods applied to Electrical Engineering problems; mathematical models of physical systems, solutions of linear and non-linear equations, numerical differentiation and integration methods and associated errors, introduction to solution analysis. May not be held with MATH 2120.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 2262, COMP 1012, MATH 2132
Equiv To: MATH 2120
ECE 2262  Electric Circuits  4 cr  
(Lab required) The application of circuit concepts; network theorems and formal methods, steady state analysis, frequency and transient response, application of the Laplace transform in the analysis of linear time-invariant networks.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: [ENG 1450. Pre- or corequisite: MATH 2132 or [MATH 2100 and MATH 2110].
Equiv To: ECE 2260
ECE 2400  Engineering Algorithms 1  4 cr  
(Lab required) An introduction to common engineering algorithmic problem-solving approaches. Students will develop the ability to evaluate, analyze, design, and implement a wide array of generally useful algorithmic paradigms, for example, divide-and-conquer, dynamic programming, and greedy algorithms. May not be held with the former ECE 3790.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: MATH 2132. Pre- or corequisite: COMP 2140 and MATH 2136.
Equiv To: ECE 3790
ECE 3400  Engineering Algorithms 2  4 cr  
(Lab required) An exploration of common engineering algorithmic problem-solving approaches, focused primarily on numerical analysis problems. Students will develop the ability to evaluate, analyze, design, and implement a wide array of generally useful paradigms, for example solving linear and non-linear equations (linear algebra and root finding), curve fitting, numerical integration and differentiation, solving differential equations, and introduction to optimization and machine learning.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2400 or the former ECE 3790.
ECE 3540  Advanced Circuit Analysis and Design  4 cr  
(Lab required) Application of the Laplace Transform in the analysis of linear time-invariant networks, poles, zeros and frequency response; natural frequencies; general network theorems; two ports; energy and passivity; transmission lines; time and frequency domain.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 2262 and MATH 2132.
ECE 3580  Foundations of Electromagnetics  4 cr  
(Lab required) (Formerly ECE 2130) Fundamental laws of field theory; Maxwell's equations in integral and point form.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2240, PHYS 2152, and MATH 3132 (MATH 3100).
Equiv To: ECE 2130
ECE 3590  Electromagnetic Theory  4 cr  
(Lab required) Maxwell's equations; plane electromagnetic waves; transmission line theory; electromagnetic radiation and introduction to antennas.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3580 (or the former ECE 2130.)
ECE 3600  Physical Electronics  4 cr  
(Lab required) Basic solid state theory; properties of semi-conductors; principles of metal-semiconductor junctions, p-n junctions and transistors; optoelectronic processes.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: PHYS 2152 (or PHYS 1070) and (MATH 2136 or MATH 3132) and ECE 2160.
ECE 3610  Microprocessing Systems  4 cr  
(Lab required) Fundamentals of microprocessors and microcomputers; data flow; machine programming; architectures and instructions sets; stacks, subroutines, I/0, and interrupts; interfacing fundamentals; designing with microprocessors.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2220.
Mutually Exclusive: COMP 2280
ECE 3630  Real-time Embedded Systems  4 cr  
(Lab required) Design of embedded systems with real-time requirements. File, memory, I/O, and process management. Real-time operating system considerations, including multitasking, thread communication, and real-time scheduling. Debugging and testing of embedded real-time systems. May not be held with COMP 3430.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 3610 and ECE 3740.
Mutually Exclusive: COMP 3430
ECE 3650  Electric Machines  5 cr  
(Lab required) Continuation of ECE 3720 , including steady state and transient performance and introductory power systems theory.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3720
ECE 3670  Electronics 3E  4 cr  
(Lab required) Continuation of ECE 2160, including device models, feedback, regulators, frequency effects, oscillators, and bistability and gates.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2160.
ECE 3700  Telecommunication Network Engineering  4 cr  
( Lab required) This course will introduce modem concepts in telecommunications, including LANs, WANs, telephone networks, wireless and mobile networks, and Internet networks. Focus will be on design engineering, and management of networks, and on network programming for client server architectures.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: COMP 2140.
Mutually Exclusive: COMP 3720, COMP 4300
ECE 3720  Electric Power and Machines  4 cr  
(Lab required) Principles and applications of electric power, energy conversion and machines.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2262.
ECE 3730  Principles of Embedded System Design  4 cr  
(Lab required) This course will introduce students to the design and implementation of embedded systems. Topics include introduction to UML and data structures, A-to-D, D-to-A, serial bus architectures, embedded computing, bus-based computer systems, program design and analysis, networks, and hardware-software co-design.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 2160, ECE 3610 and (COMP 1010 or COMP 1012).
ECE 3740  Systems Engineering Principles 1  4 cr  
(Lab required) Complexity and other system measures and analysis, system architectures and architectural elements for embedded systems, hardware and software, incremental design elaboration. Coding, testing, debugging, verification and validation. Project planning, cost analysis and maintenance. Real-time systems, graphical user interfaces and computational models.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: COMP 2140.
ECE 3750  Systems Engineering Principles 2  4 cr  
(Lab required) Reliability measures and analysis, software system architectures, system metrics, system verification for embedded systems. Coding practices for large scale embedded system development. Real- time systems, graphical user interfaces, and computational models.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3740.
ECE 3760  Digital Systems Design 1  4 cr  
(Lab required) Design methodologies for the development of digital hardware, including system specification, component allocation, functional partitioning, specification refinement, implementation, verification, and testing. Hardware-software co-design.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 4240.
Mutually Exclusive: COMP 4550
ECE 3770  Digital Systems Design 2  4 cr  
(Lab required) Executable system specification and a methodology for system partitioning and refinement into system-level components. Models and architectures, specification languages, translation to an HDL, system partitioning, design quality estimation, specification refinement into synthesizable models.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 4240 and MATH 3120.
ECE 3780  Signal Processing 1  4 cr  
(Lab required) Introduction to signals and systems; spectral analysis (Fourier Series) of continuous-time periodic signals; spectral analysis of aperiodic signals (Fourier Transform); the impulse response and convolution operator; frequency analysis of linear time-invariant systems; applications to filtering, communications systems, and biological systems; A/D conversion; sampling. Laboratory periods will be used to give students hands-on experience in programming many of the techniques covered in the theoretical parts of the course.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 2262 and (MATH 2136 or MATH 3132).
ECE 4100  Introduction to Microelectronic Fabrication  4 cr  
(Lab required) Introduction to the fabrication of integrated circuits (ICs). Emphasis is on silicon based devices. Topics include water preparation, oxidation, thin film deposition, diffusion and ion implantation, lithography, wet and dry etching and metallization. An introduction to MEMS and micromachining technology is given.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2160 (B+) or ECE 3670.
ECE 4150  Control Systems  4 cr  
(Lab required) Principal methods of analysis and design for feedback control systems.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2160 and ECE 3780.
ECE 4160  Control Engineering  4 cr  
(Lab required) Design of control systems by frequency domain and root locus method; state equations; introduction to nonlinear analysis.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 4150.
ECE 4180  Introduction to Robotics  4 cr  
(Lab required) This course provides fundamental concepts of robotics, including robot classification and applications, robot kinematics, sensor and actuators, sensor interfacing, motor control, trajectory planning, and robot programming.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 4150 and (ECE 4240 or ECE 3730).
ECE 4240  Microprocessor Interfacing  4 cr  
(Lab required) Interfacing of microcomputers to the external world: interfacing of I/0 devices with minimum hardware and software; data acquisition with and without microprocessors; data communication, transmission and logging with small computers.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2160 and ECE 3610.
Mutually Exclusive: COMP 4550
ECE 4250  Digital Communications  4 cr  
(Lab required) Transmission of digital data; error rates, interference. Information measures, information rate and channel capacity. Coding.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 4260 and ECE 3780.
ECE 4260  Communications Systems  4 cr  
(Lab required) Development and applications of random processes. Analysis and comparison of modulation schemes: AM, FM, PM, PCM.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 3780 and [STAT 2220 preferred or (STAT 1000 and STAT 2000)].
ECE 4270  Antennas  4 cr  
(Lab required) Radiation fundamentals, linear antennas, point source arrays, aperture antennas, antenna impedance, antenna systems.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3590.
ECE 4280  Engineering Electromagnetics  4 cr  
(Lab required) Plane, cylindrical and spherical waves, introduction to scattering and diffraction, waveguides, transmission line applications.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3590.
ECE 4290  Microwave Engineering  4 cr  
(Lab required) Microwave circuit analysis; passive and active devices; communication system power budget and signal-to-noise ratio calculations.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3590.
ECE 4300  Electrical Energy Systems 1  4 cr  
(Lab required) Power system component modelling and computational methods for system problems such as load flow, faults, and stability.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3650.
ECE 4310  Electrical Energy Systems 2  4 cr  
(Lab required) Generating stations. Power system stability and optimal operation. EHV-ac and HVDC power transmission. Power system protective relaying and reliability evaluation.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 4150 and ECE 4300.
ECE 4360  High Voltage Engineering  4 cr  
(Lab required) The course serves as an introduction to high voltage engineering, including basics of electrical breakdown, high voltage generation, high voltage test systems, measurement and analysis techniques as applied to power system apparatus, such as cables, insulators, transformers, and generators.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3580, ECE 3720.
ECE 4370  Power Electronics  4 cr  
(Lab required) Thyristor device theory and operation, controlled rectifiers and line-commuted inverters, and forced commutation as applied to d/c choppers and a/c variable frequency and voltage inverters.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 3720 and ECE 2160.
ECE 4390  Engineering Computations 4E  4 cr  
(Lab required) Development and application of numerical methods for the solution of electrical and computer engineering problems. Optimization techniques. Finite difference, finite element and boundary element methods. Solution of large systems of linear and non-linear equations.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: MATH 3132, ECE 2240.
ECE 4420  Digital Control  4 cr  
(Lab required) Mathematical modelling of sampling switches. Z-transforms. Response and stability of systems involving sampling. Design of digital compensators.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 4830 and ECE 4150.
ECE 4430  Design of RF Devices and Wireless Systems  4 cr  
(Lab required) Techniques for the system level design, simulation, fabrication,and testing of RF devices and microwave circuits, including the basics of radar and RFID technology. May not be held with ECE 4860 when titled " Design of RF Devices and Wireless Systems".
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3590.
Mutually Exclusive: ECE 4860
ECE 4440  Computer Vision  4 cr  
(Lab required) Image formation and sensing, image compression, degradation and restoration, geometrical and topological properties, pattern classification, segmentation procedures, line-drawing images, texture analysis, 3-D image processing.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3780.
ECE 4450  Applied Computational Intelligence  4 cr  
(Lab required) Computational intelligence and machine learning algorithms and their application in solving complex engineering problems. May not be held with COMP 4360 or EGE 4850 when titled “Applied Computational Intelligence."
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: STAT 2220 and (ECE 2240 or ECE 3400).
Mutually Exclusive: COMP 4360, ECE 4850
ECE 4460  Applied Probability and Stochastic Processes  4 cr  
(Lab required) Probability theory and stochastic processes are heavily used in many engineering disciplines, such as risk assessment, data networks, operations research, information/communication theory, control theory, quantum theory. This course introduces probabilistic modeling, including random processes and the basic elements of statistical inference, as well as relevant models, skills, and tools that are key to analyzing data and making scientifically sound predictions under uncertainty. May not be held with ECE 4860 when titled "Stochastic Processes."
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: STAT 2220 or [(STAT 1000 or STAT 1001) and (STAT 2000 or STAT 2001)].
Mutually Exclusive: ECE 4860
ECE 4520  Simulation and Modelling  4 cr  
Monte Carlo Methods, random processes, simulation of complex systems in the design of computer systems. Use of statistical interference and measures of performance in hardware and software systems.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: [STAT 2220 preferred or (STAT 1000 and STAT 2000)] and COMP 2140.
ECE 4530  Parallel Processing  4 cr  
(Lab required) This course provides an overview of parallel processing (classification of parallel processing architectures and other select topics), parallel programming strategies (embarrassingly parallel partitioning, divide-and-conquer, and other select topics), applied design and implementation of parallel software solutions (including distributed computing, shared memory computing, and GPGPU computing), and evaluation of parallel performance (time and memory complexity, speedup, efficiency, Amdahl's law, Gustafson's law). May not be held with COMP 4510.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: (COMP 2140 and (ECE 2400 or the former ECE 3790)) or (ECE 2240 and ECE 3730).
Mutually Exclusive: COMP 4510
ECE 4540  Wireless Networks  4 cr  
(Lab required) Introduction to wireless communications systems, network architectures, protocols and applications. Topics include mobile computing systems, signals propagation, channel modelling, modulation, and networking standards.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3700 and ECE 3780.
ECE 4560  Modern Computing Systems  4 cr  
(Lab required) Advanced topics in computer architecture and organization, such as instruction set architecture, performance measures, pipeline processor design, data and instruction cache, data dependencies, branch prediction and penalties, superscalar architecture, multithreading, out-of-order execution, speculative execution, overlapping register windowing, and multiprocessor system design. May not be held with ECE 4850 when titled" Modern Computing Systems".
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3610.
Mutually Exclusive: ECE 4850
ECE 4570  Sensors, Instrumentation, and the loT  4 cr  
(Lab required) This course presents the fundamental concepts and application of sensors and instrumentation. This will include discussion of sensor characteristics such as precision, error, uncertainty, sensitivity, calibration, accuracy, linearity, and hysteresis. Circuitry and methods for measuring and representing sensor outputs will also be presented, together with techniques for analysing those measurements. May not be held with ECE 4860 when titled "Sensors, Instrumentation and the loT."
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 2160.
Mutually Exclusive: ECE 4860
ECE 4580  Optoelectronics  4 cr  
(Lab required) Basic theory of quantum mechanics; solution of Schrodinger equations; interaction of radiation with matter; masers and lasers; propagation, modulation, excitation and detection in optical waveguides; introduction to fiber and integrated optics.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3600.
ECE 4600  Group Design Project  6 cr  
The engineering curriculum must culminate in a significant design experience which is based on the knowledge and skills acquired in earlier course work and which gives students an exposure to the concepts of team work and project management.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: [ENG 2040 or the former ENG 2030] and ECE 3780 and [(ECE 3580 (or the former ECE 2130), ECE 3720, ECE 3670 and ECE 3610) or (ECE 3700, ECE 3760 and ECE 3740)].
ECE 4610  Biomedical Instrumentation and Signal Processing  4 cr  
(Lab required) Introduction to biological systems and the application of engineering principles to medical problems. Students design systems to acquire and analyze biological signals in the laboratory. Content includes introduction to relevant physiology and anatomy of cells, skeletal muscles, heart and cardiovascular systems, human balance and biomechanics, recording and analyzing biological signals (ECG, EMG,respiratory sounds), design of instrumentation amplifiers for signal conditioning, medical instrumentation safety and health hazards.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ECE 2160 and ECE 3780.
ECE 4740  Digital Systems Implementation  4 cr  
(Lab required) Implementation methodologies and technologies for digital systems, including VLSI implementations, PCB implementations, and rapid prototyping (FPGA). Not to be held with ECE 4500.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 4240.
ECE 4830  Signal Processing 2  4 cr  
(Lab required) Representation of discrete-time signals and systems in the time and frequency domains; the z-transform; application to various discrete-time linear time-invariant systems; design of digital filters. Laboratory periods will be used to give students hands-on experience in programming many of the techniques covered in the theoretical parts of the course.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ECE 3780.
ECE 4850  Topics in Electrical and Computer Engineering 1  4 cr  
(Lab required) This course will cover contemporary topics in Electrical and Computer Engineering via lectures and laboratory sessions. The specific topics and a detailed course outline will be available at the time or registration.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: Permission of the Department.
Mutually Exclusive: ECE 4450, ECE 4560
ECE 4860  Topics in Electrical and Computer Engineering 2  4 cr  
(Lab required) This course will cover contemporary topics in Electrical and Computer Engineering via lectures and laboratory sessions. The specific topics and a detailed course outline will be available at the time or registration.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: Permission of the Department.
Mutually Exclusive: ECE 4430, ECE 4460, ECE 4570
ECE 4870  Topics in Electrical and Computer Engineering 3  3 cr  
This lecture based course will cover contemporary topics in Electrical and Computer Engineering. The specific topics and a detailed course outline will be available at the time of registration.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: Permission of the Department.
ECE 4880  Topics in Electrical and Computer Engineering 4  3 cr  
This lecture based course will cover contemporary topics in Electrical and Computer Engineering . The Specific topics and a detailed course outline will be available at the time of registration.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: Permission of the Department.

Engineering Courses

ENG 1420  Engineering Processes for Non-Engineering Students  3 cr  
Develops a basic understanding of the engineering profession with emphasis on basic technical principles, Systems Engineering, and Project Management. Special emphasis will be placed upon the interface between management and engineering and the role management plays in the conduct of technical projects and manufacturing. NOTE: This course is not available for credit to students registered in the Price Faculty of Engineering.
ENG 1430  Design in Engineering  3 cr  
(Lab required) The creative process; the design process; working in a team. The engineering profession from the perspective of students and professionals. Academic, legal and ethical considerations.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: [Pre-Calculus Mathematics 40S (60%) (or one of MATH 0401, MATH 1018, MATH 1230, MATH 1500, MATH 1501, MATH 1510, MATH 1524, MATH 1525, MSKL 0100, or the former MATH 1520, or the former MATH 1680)] and [Physics 40S (60%) (or PHYS 0900 (P) or PSKL 0100 (P) or PHYS 1018, PHYS 1050, or PHYS 1051)] and [Chemistry 40S (60%) (CHEM 0900 (P) or CSKL 0100 (P) or CHEM 1018, CHEM 1100, CHEM 1301, or the former CHEM 1300)] or their equivalents.
Attributes: Recommended Intro Courses
ENG 1440  Introduction to Statics  3 cr  
(Lab required) Statics of particles; rigid bodies, equilibrium of rigid bodies; analysis of structures; distributed forces. Not to be held with ENG 1441.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: [Pre-Calculus Mathematics 40S (60%) (or one of MATH 0401, MATH 1018, MATH 1230, MATH 1500, MATH 1501, MATH 1510, MATH 1524, MATH 1525, MSKL 0100, or the former MATH 1520 or the former MATH 1680)] and [Physics 40S (60%) (or PHYS 0900 (P) or PSKL 0100 (P) or PHYS 1018, PHYS 1050, or PHYS 1051)] and [Chemistry 40S (60%) CHEM 0900 (P) or CSKL 0100 (P) or CHEM 1018, CHEM 1100, CHEM 1301, or the former CHEM 1300)] or their equivalents.
Equiv To: ENG 1441
Attributes: Recommended Intro Courses
ENG 1450  Introduction to Electrical and Computer Engineering  3 cr  
(Lab required) Part I: Current, voltage, energy, potential, power Ohm's law; independent sources; capacitor, inductor, ideal diode, op-amp; Kirchoff's law; simple circuits (Resistive, RC, RL, OP-Amp; Diode); introduction to ac theory (Sinusoidal waveform, phase relations of voltage and current waveforms for R,L,C. RL and RC circuits). Part II: Applications (Digital Logic, motors).
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: [Pre-Calculus Mathematics 40S (60%) (or one of MATH 0401, MATH 1018, MATH 1230, MATH 1500 , MATH 1501, MATH 1510, MATH 1524, MATH 1525, MSKL 0100, or the former MATH 1520 or the former MATH 1680)] and [Physics 40S (60%) (or PHYS 0900 (P) or PSKL 0100 (P) or PHYS 1018, PHYS 1050 or PHYS 1051)] and [Chemistry 40S (60%) (or CHEM 0900 (P) or CSKL 0100 (P) or CHEM 1018, CHEM 1100 or CHEM 1301 or the former CHEM 1300)] or their equivalents.
Attributes: Recommended Intro Courses
ENG 1460  Introduction to Thermal Sciences  3 cr  
(Lab required) Properties of pure substances; first law for closed systems; first law for open systems; second law; examples of power cycles and refrigeration cycles.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: [Pre-Calculus Mathematics 40S (60%) (or one of MATH 0401, MATH 1018, MATH 1230, MATH 1500, MATH 1501, MATH 1510, MATH 1524, MATH 1525, MSKL 0100, or the former MATH 1520 or the former MATH 1680)] and [Physics 40S (60%) (or PHYS 0900 (P) or PSKL 0100 (P) or PHYS 1018, PHYS 1050 or PHYS 1051)] and [Chemistry 40S (60%) (or CHEM 0900 (P) or CSKL 0100 (P) or CHEM 1018, CHEM 1100 or CHEM 1301 or the former CHEM 1300)] or their equivalents.
Attributes: Recommended Intro Courses
ENG 1900  Occupational Health and Safety Awareness  3 cr  
Occupational health and safety will be discussed from the perspectives of various professions to understand 1) the issues relevant to individual professions and 2) how these individual perspectives may conflict. The overall goal for the course is to ensure that the student gains an appreciation for the importance of occupational health and safety to society.
ENG 2022  Engineering CAD Technology for Biosystems  3 cr  
(Lab required) Instruction in the use of current CAD technology for conveying design through the use of graphics. Students will gain knowledge in technical drawing, 3D modelling techniques, production technology, and visual communication. Registration restricted to students in Engineering.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: BIOE 2900 or the former BIOE 2580.
Mutually Exclusive: MECH 2112
ENG 2040  Engineering Communication: Strategies, Practice and Design  3 cr  
This team-based course focuses on a rhetorical approach, communication strategies and guided practice in the design of engineering communications. May not be held with the former ENG 2010.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisites: ENG 1430 and one of the courses from the list of Written English Courses for Engineering Students.
Mutually Exclusive: ENG 2010
ENG 2400  Decolonizing and Indigenizing Engineering  3 cr  
(Tutorial required, Field Trip required) This course engages students to critically examine engineering and reflect on current perspectives and practices in decolonizing and Indigenizing the profession. We will examine how Western ideologies, knowledge systems, and biases in engineering have impacted Indigenous lands, waters, cultures, and communities and re-frame Indigenous peoples as engineers. May not be held with ENG 4100 when titled “Decolonizing and Indigenizing Engineering.”
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 1430.
Mutually Exclusive: ENG 4100
ENG 3000  Engineering Economics  3 cr  
This course offers an introduction to the economic aspects of the engineering discipline. It covers applied economic concepts such as: time value of money, taxation in cash flows, breakeven points, inflation of goods, cost/benefit ratios, income and depreciation, and general microeconomic concepts. The focus includes analysis techniques such as: cash flow analysis, cost-based analysis, rate of return analysis, sensitivity analysis, replacement analysis, and risk mitigation. Concepts are introduced in the context of sustainability and project management fundamentals in a professional practice setting. May not be held with CIVL 4050.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: MATH 1510 (or MATH 1230, or MATH 1500, or MATH 1501).
Equiv To: CIVL 4050
ENG 3020  Technology, Society and the Future  3 cr  
Impact of technology and technological change on society-past, present, future; specific technologies, e.g. construction. Machine power, computers, communications, medical, military: the process of technological change; invisible effects of technology; technology and resource use; sustainable development, limits to growth and the role of technology. May not be held with CIVL 4460 or ANTH 2430.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 2040 or the former ENG 2030 or BIOE 2900.
Equiv To: CIVL 4460
Mutually Exclusive: ANTH 2430
ENG 4010  Practicing Professional Engineering in Manitoba  3 cr  
An introduction to the practice of professional engineering in Manitoba, including culture, professional organization and regulation, employability aspects, engineering ethics and law.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: Must be enrolled in the Internationally-Educated Engineers Qualification Program (IEEQ).
Mutually Exclusive: ENG 4020
ENG 4012  IEEQ CO-OP ASSIGNMENT  1 cr  
Professional work assignment in business, industry, or government for cooperative education students in the IEEQ Program. Requires submission of a written report covering the work completed during a minimum 16-week work period. (Pass/Fail grade only).
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: enrolled in IEEQ Program with 80% of courses complete, including ENG 4010; good academic standing.
ENG 4020  Professional Engineering Practice in Manitoba  4 cr  
(Lab required) An introduction to the practice of professional engineering in Manitoba. Professional culture, organization and regulation; industry topics; engineering ethics and law. Emphasis on professional communication development. Restricted to students enrolled in the IEEQ Program. May not be held with ENG 4010.
Mutually Exclusive: ENG 4010
ENG 4100  Contemporary Topics in Engineering Practice  4 cr  
This course will cover contemporary topics relating to the practice of professional engineering. The specific topics and a detailed outline will be available prior to the start of the registration period for the session in which the course will be offered. As the course content will vary from year to year, students may take this course more than once for credit.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: Permission of the Centre for Engineering Professional Practice and Engineering Education.
Mutually Exclusive: ENG 2400, ENG 4400
ENG 4110  Operational Excellence  4 cr  
(Lab required) Methodical application of operational excellence and engineering principles and theory to address real industry problems, with emphasis on the data and fact-based engineering method of problem solving. Grounded in the Plan-Do-Study-Act system. Covers the seven step problem solving method (problem definition, examine the current situation, root cause analysis, action planning and testing, study the results, standardize the changes, and draw conclusions), applied concepts (Lean Six Sigma Management) and the fundamentals of teamwork, team dynamics and change management. It is expected that students will be challenged in terms of their understanding of the method, concepts, analytics, and the tools, and their application to solving 'real' operational problems. Students must attend both lecture and tutorial. Students will be required to attend meetings at industrial partner facilities. May not be held with MECH 4342 where the topic is Operational Excellence.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Pre- or Co-requisites: STAT 2220 or (STAT 1000 and STAT 2000).
ENG 4400  Transdisciplinary Land-Based Design and Build  4 cr  
(Lab required) An interdisciplinary design-build course involving engineering, architecture and Indigenous design, physical and digital experimentation, prototyping, teamwork, and a build. Students will work with their peers and instructors to design and build a predetermined project. The course will be delivered in studio and on the land. Each student will be required to create a portfolio and deliver a presentation of their experiences with the design project. May not be held with ENG 4100 when titled “Design and Build with Shoal Lake 40” or “The Space for Gathering/Design and Build.”
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 1430.
Mutually Exclusive: ENG 4100
ENG 4800  Co-operative Work 1  1 cr  
Work assignment in business, industry, or government for the Price Faculty of Engineering co-operative education stream students. Requires submission of a written report covering the work completed during the four- month professional assignment. Those registering for this course must apply for and be accepted into the Price Faculty of Engineering co-operative stream. May not be held with BIOE 2000, CIVL 2900, ECE 4720, MECH 2050 or ENG 4012. This course is graded on a pass/fail basis.
Equiv To: BIOE 2000, CIVL 2900, ECE 4720, ENG 4012, MECH 2050
ENG 4810  Co-operative Work 2  1 cr  
Work assignment in business, industry, or government for the Price Faculty of Engineering co-operative education stream students. Requires submission of a written report covering the work completed during the four-month professional assignment. Those registering for this course must apply for and be accepted into the Price Faculty of Engineering co-operative education stream. May not be held with: BIOE 3000, CIVL 3910, ECE 4720, or MECH 3050. This course is graded on a pass/fail basis.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 4800
Equiv To: BIOE 3000, CIVL 3910, ECE 4720, MECH 3050
ENG 4820  Co-operative Work 3  1 cr  
Work assignment in business, industry, or government for the Price Faculty of Engineering co-operative education stream students. Requires submission of a written report covering the work completed during the four-month professional assignment. Those registering for this course must apply for and be accepted into the Price Faculty of Engineering co-operative education stream. May not be held with: BIOE 4000, CIVL 4920, ECE 4720, or MECH 4050. This course is graded on a pass/fail basis.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 4810.
Equiv To: BIOE 4000, CIVL 4920, ECE 4720, MECH 4050
ENG 4830  Co-operative Work 4  1 cr  
Work assignment in business, industry, or government for the Price Faculty of Engineering co-operative education stream students. Requires submission of a written report covering the work completed during the four-month professional assignment. Those registering for this course must apply for and be accepted into the Price Faculty of Engineering co-operative education stream. May not be held with: CIVL 4930, ECE 4720, or MECH 4060. This course is graded on a pass/fail basis.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 4820.
Equiv To: CIVL 4930, ECE 4720, MECH 4060
ENG 4840  Co-operative Work 5  1 cr  
Work assignment in business, industry, or government for the Price Faculty of Engineering co-operative education stream students. Requires submission of a written report covering the work completed during the four-month professional assignment. Those registering for this course must apply for and be accepted into the Price Faculty of Engineering co-operative education stream. May not be held with: CIVL 4940. This course is graded on a pass/ fail basis.
PR/CR: A minimum grade of C is required unless otherwise indicated.
Prerequisite: ENG 4830.
Equiv To: CIVL 4940

Faculty Academic Regulations

Admission to the Price Faculty of Engineering

The following is a summary of the admission requirements. Equivalent academic courses completed at recognized universities elsewhere will be considered. All admission requirements, as well as application deadline dates and forms, are included in an applicant information bulletin that is available from the Admissions Office, Enrolment Services, 424 University Centre; this information is also posted on the university’s website.

Direct Admission into the Price Faculty of Engineering from High School

Applicants may apply directly to the Preliminary Engineering Program from a Manitoba high school (or the equivalent) and must meet the General Entrance and Specific Admission Requirements for the Price Faculty of Engineering.  The General Admission Requirement is a Manitoba (or equivalent) high school graduation.  The Specific Admission Requirements is a minimum 80% average over the following four subjects, with no less than 70% in each course: Chemistry 40S, Precalculus Mathematics 40S, Physics 40S, and English 40S.  In cases where the number of eligible applicants exceeds the available spaces, applicants will require higher averages than stipulated to be successful in the admissions competition.

Please see the website for more detailed information.

All Other Admissions

A minimum of 8 of the 12 courses in the Preliminary Engineering Program, each with a minimum grade of “C”, and a minimum Adjusted Grade Point Average (AGPA) of 2.0. In addition, if the total number of credit hours attempted by the student in all courses that apply in the Price Faculty of Engineering meets or exceeds 72, then the ratio of those credit hours passed (from all courses with a grade of “C” or better that are applicable to the student’s potential Engineering program) to total credit hours attempted must be greater than or equal to 75%.  Furthermore, if the student has attempted less than 72 credit hours, the total number of failed credit hours (from all courses with a grade of “D”  or “F” that are applicable to the student’s potential Engineering program) must not exceed 18 credit hours in order to be eligible to be considered for admission.

Acceptance to Engineering programs is competitive. Courses must be completed within ten years of the application date in order to be considered for transfer credit.

Admission as a Second Degree Student

Students possessing a first bachelor's level Engineering degree from an accredited Engineering program with a minimum Cumulative Grade Point Average of 2.00 on their first degree may be eligible for admission as a Second Degree student in a different program provided they have completed the minimum coursework entrance requirements for their intended degree program, see Admissions to Price Faculty of Engineering: All Other Admissions. Admission is subject to available space within the program.

Students who are admitted to the Price Faculty of Engineering following the completion of another degree program are eligible to receive a maximum of 20 single term courses of transfer credit from applicable courses completed outside of their new degree program. Exceptions will be granted to students holding an Electrical or Computer Engineering degree applying as a Second Degree student to Electrical or Computer Engineering. In those cases, students are eligible to receive a maximum of 30 single term courses of transfer credit due to the significant overlap between the two programs. Courses must be completed within 10 years of the application date in order to be considered for transfer credit. Once admitted, students will be expected to satisfy all graduation requirements in their degree program. In all cases, students must complete a capstone design project as part of their degree.

English and Mathematics Requirements

All students are required to complete the University written English and mathematics requirement within the first 60 credit hours of their program.  The requirement is described in the chapter General Academic Regulations and Requirements of this Calendar.  In the Engineering programs the mathematics requirement is satisfied by one of MATH 1510 or MATH 1710 (or an equivalent); the written English requirement is satisfied by completing a course selected from the list of approved Written English Courses for Engineering Students listed below.

Note that courses transferred from other institutions are evaluated for content, but are not assessed for the written English requirement unless the student explicitly requests such an assessment.  Therefore, students wishing to transfer a course from another institution which may be considered equivalent to a course on the list of Written English Courses for Engineering Students should request that the transfer be assessed as meeting the written English requirement.  If the assessed course is found not to meet the requirement, the student will be compelled to complete another course from the list.

Written English Courses for Engineering Students

Course Title Hours
ASIA 1420Asian Civilizations to 1500 (B)3
ASIA 1430Asian Civilization from 1500 (B)3
CATH 1190Introduction to Catholic Studies3
ENGL 1200Representative Literary Works6
ENGL 1300Literature since 19006
ENGL 1340Introduction to Literary Analysis3
ENGL 1400Thematic Approaches to the Study of Literature3
GPE 2700Perspectives on Global Political Economy3
GRMN 1300Masterpieces of German Literature in English Translation (C)3
GRMN 1310Love in German Culture in English Translation (C)3
Any 1000 level HIST course 13-6
Any 2000 level HIST course 13-6
INDG 2020The Métis in Canada3
POL 1900Love, Heroes and Patriotism in Contemporary Poland3
POL 2600Polish Culture until 19183
POL 2610Polish Culture 1918 to the Present3
POLS 1502Introduction to Political Science 23
RLGN 1440Evil in World Religions3
RLGN 2036Introduction to Christianity3
RLGN 2140Introduction to Judaism3
RLGN 2160Hebrew Bible (Tanakh/"Old Testament")3
RLGN 2170Introduction to the New Testament3
RLGN 2222The Supernatural in Popular Culture3
RLGN 2590Religion and Social Issues3
RUSN 1400Masterpieces of Russian Literature in Translation3
RUSN 2280Russian Culture until 19003
RUSN 2290Russian Culture from 1900 to the Present3
RUSN 2310Exploring Russia through Film3
UKRN 2200Ukrainian Myth, Rites and Rituals3
UKRN 2410Ukrainian Canadian Cultural Experience3
UKRN 2590Ukrainian Literature and Film3
UKRN 2770Ukrainian Culture until 19003
UKRN 2780Ukrainian Culture from 1900 to the Present3
UKRN 2820Holodomor and Holocaust in Ukrainian Literature and Culture3
WOMN 1500Introduction to Women's and Gender Studies in the Humanities3
WOMN 1600Introduction to Women's and Gender Studies in the Social Sciences3
WOMN 2560Women, Science and Technology3
1

Unallocated credits may not be used

2

This course requires a laboratory

Academic Regulations

The provisions of the, General Academic Regulations, and the, University Policies and Procedures, apply to all students. In addition, the Price Faculty of Engineering has regulations and requirements, published below, which apply specifically to its students. Notwithstanding the regulations given in this section, the Faculty Council of Engineering reserves the right to rule on individual cases in exceptional circumstances.

Limited Access will not affect registration for the current Academic Year, which includes Fall, Winter, and Summer terms. See University Policy and Procedures – Repeat Course Policy – Section 2.5 (a) Limited Access.

Appeals

Students who feel that they have received unfair treatment in a course should appeal to the instructor. If the matter is not thereby resolved, it should be raised with the Department Head and subsequently the Associate Dean (Undergraduate Programs).

A student's academic status is based on academic performance.  Students who feel that there are circumstances that have affected their academic performance should write to the Associate Dean (Undergraduate Programs), Chair of the Committee on Standing and Appeals, E1-262 EITC. Information regarding this process is available from the Undergraduate Student Services Office, E1-262 EITC and may be viewed through web site.

Attendance and Approved Leaves

Attendance and Participation in Courses

Regular attendance and participation is expected of all students in all courses. Excused absences for medical or compassionate reasons must follow the UM policies. When the number of unexcused absences and/or incomplete coursework in any course exceeds 10 percent, the instructor shall report the case to the Department Head. If a student’s attendance or work continues to be unsatisfactory, the case will be referred to the Associate Dean Undergraduate Programs who may initiate debarment of the student. Students who are debarred for inadequate attendance and participation prior to the VW deadline can choose to VW the course. Students who are debarred after the VW deadline will receive a failing grade.

Leaves of Absence

Students may choose not to register for courses in any term at their own discretion. However, doing so will not extend a student's time to completion as set out in Requirements for the Bachelor's Degree.

In exceptional cases, students may make a written application to the Associate Dean (Undergraduate Programs) for a Leave of Absence from their studies when significant circumstances (i.e. parental, medical or compassionate) affect their ability to continue in their program. Supporting documentation may be required. Leaves of absence must correspond with the start and end of (an) academic term(s) for a period of time normally not to exceed one (1) year. The limit on a student's time to complete their Engineering program, as set out in Requirements for the Bachelor's Degree, will be extended by the duration of the approved Leave of Absence.

For situations affecting a student's ability to complete courses already in progress, see Withdrawal from Courses.

Notwithstanding a Leave of Absence, student may choose not to register for courses in any term at their own discretion. However, doing so will not extend a student's time to completion as set out in Requirements for the Bachelor's Degree..

Categories of Students

A student shall normally register for three to six courses in a term.  Registration for more than six or fewer than three courses in a term must be approved by the Department Head or, in the preliminary program, by the Associate Dean (Undergraduate Programs).  Students must also receive approval for registration in courses that are not part of the regular degree program.

All undergraduate programs offered by the Price Faculty of Engineering are full-time programs. Engineering considers registration in 15 credit hours per term to be a full course load. Full-time status is defined as being registered in at least 60 percent of this load, or 9 credit hours per term. Scholarships and other awards may require registration in more than this minimum.

Complementary Studies Electives

Complementary studies electives are an integral part of the curriculum. Their purpose is to broaden the student’s experience beyond the purely scientific and technical content of engineering. They include studies in engineering economics and the impact of technology on society, as well as the central issues, methodologies and thought processes characteristic of the humanities and social sciences. Opportunities for development of the student’s oral and written communication skills are also provided. The complementary studies elective requirements may vary from one program to another.  Course numbers beginning with a 0 (i.e. ENGL 0930) are not allowed as complementary studies electives and ARTS 1110 cannot not be used for credit in the Price Faculty of Engineering.

Procedure Regarding the Inclusion of Elective Courses Taken Towards a Student's Degree Requirements

Upon Admission Into Engineering

At the time of admission, students may choose to apply (transfer) some or all eligible non-Engineering elective courses (i.e., complementary studies electives, science electives, free electives) taken prior to their admission to the Faculty towards their current Engineering degree program. All attempts for those selected courses shall be applied to the student’s degree program and included in the calculation of Degree Grade Point Average (DGPA).

After Admission Into Engineering

Grades for all eligible courses (i.e., technical electives, complementary studies electives, science electives, free electives) attempted following admission to Engineering shall be included in and applied to a student's current degree program.

Special cases for either circumstance may be considered at the discretion of the Price Faculty of Engineering Associate Dean (Undergraduate Programs).

Course Selection

When arranging a program of study, a student must satisfy the following requirements:

  1. All prerequisite and corequisite course requirements must be met.
  2. All previously failed compulsory courses must be repeated. Students repeating a course previously taken are subject to Limited Access.  Limited Access information may be viewed on the Registrar's Office web site.
  3. Students are not normally allowed to repeat courses graded “C” or higher, except under special circumstances with the approval of the Department Head, or for students in the Preliminary Engineering Program, of the Associate Dean (Undergraduate Programs).
  4. Failed elective courses may be repeated or replaced with alternative elective courses, however, all attempts will be included in the degree grade point average calculation.

Prerequisite Course: A prerequisite course must have been completed with a “C” grade or better before a subsequent course can be attempted. Under exceptional circumstances, a course instructor may waive, subject to approval by the Department Head (or designate), a prerequisite requirement.

Corequisite Course: A corequisite course must be taken concurrently or before its companion course. Under exceptional circumstances, a course instructor may waive, subject to approval by the Department Head (or designate), a corequisite requirement.

Examinations

Deferred Examinations

If you miss a final examination for medical or compassionate reasons, you may be granted a deferred examination.  Applications for a deferred examination after the examination has been missed must be filed within 48 hours of the date of the missed examination.  A medical certificate or other appropriate documentation may be required.

(Please refer to the General Academic Regulations-Deferred Examinations for more information)

Deferred Examinations are normally scheduled to take place within 30 working days from the end of the examination series from which the examination was deferred. The date of the deferred examination for a particular course will be set by the Dean’s Office no later than January 15, May 15 or Sept 15 and in consultation with the instructor.

Supplemental Examinations

A student who has attempted to meet all requirements for the degree and has a single failure in an Engineering course taken in their final academic year may apply for a supplemental examination in that course. Supplemental examinations may not be requested for any other reason. A student shall only be permitted to exercise the privilege of writing a supplemental examination once in their degree program.

The grade for a course in which a supplemental examination is written shall be calculated in the following manner, with the grade reported being the greater of these two calculations:

  1. The supplemental examination shall have the same percentage weighting as the original examination;
  2. The supplemental examination shall have the percentage weighting equal to the combined weight of the original examination and all term tests.

Both the original course grade and the supplemental examination course grade are retained on the student's record, and both are used in the calculation of TGPA and DGPA.

In the event that the supplemental examination is not successfully passed, the course must be repeated again in a subsequent term.

The supplemental examination privileges apply only to courses offered by the Price Faculty of Engineering.

Challenge for Credit

Courses offered in Engineering may not be challenged for credit.

Grading and Assessment

All grades awarded by instructors for undergraduate courses offered in the Price Faculty of Engineering are reviewed by examiners’ boards, which comprise all of the instructors in the student’s program year. After approval by department councils, grades are presented to the Faculty Council of Engineering for acceptance.  Grades are published subsequent to their approval by the Faculty Council of Engineering.

Following are the descriptions of grade point averages used for evaluation at end of each of the terms (Fall, Winter, and Summer):

Term Grade Point Average (TGPA)

The Term Grade Point Average (TGPA) is computed from all of the final grades in all undergraduate courses completed during a given academic term.

Degree Grade Point Average (DGPA)

The Degree Grade Point Average (DGPA) is computed from the final grades obtained in all courses attempted, including applicable courses transferred from other faculties and other institutions, as part of a student’s current degree program.  Where a course has been repeated or replaced by an approved substitution or equivalent course, all attempts shall be included in the computation.

Cumulative Grade Point Average (CGPA)

The Cumulative Grade Point Average (CGPA) is computed from the final grades in all undergraduate courses attempted at the University of Manitoba and courses transferred from other faculties and other institutions.

Dean’s Honour List

A continuing student who achieves a Term Grade Point Average (TGPA) of 3.50 or higher in their most recent academic term will be placed on the Dean’s Honour List. The assessment is based on a minimum of 12 credit hours completed in that term. In addition, a graduating student who achieves a Degree Grade Point Average (DGPA) of 3.5 or higher in their final academic evaluation will graduate on the Dean’s Honour List and receive a notation indicating this on their final term transcript.

Awards

A number of scholarships, bursaries and other academic awards are available to Engineering students. For information concerning awards (prizes, scholarships, and bursaries), please visit the Faculty web site

Minors in Engineering

In meeting the specific requirements for any minors available to Engineering students, no more than 50% of the credit hours required for a minor may be common with those forming part of a student's regular Engineering program. Normal pre-requisites and class size restriction apply to courses taken towards minors.

Arts Minor

A Minor in Arts is available to Engineering students. The minor consists of 18 credit hours of Arts courses, including a minimum of 6 credit hours in the Humanities and 6 credit hours in the Social Sciences; students must meet all pre-requisite requirements and all courses must be at the 1000 level or higher. ARTS 1110 may not be included in the minor. Depending on the approval of the Engineering department, courses used for the minor may also be used to fulfill program  requirements in Engineering.

Computer Science Minor

A Minor in Computer Science is available to Engineering students. The minimum requirement is 18 credit hours of computer science courses subject to the following constraints:

  1. Courses COMP 1012, COMP 1020, and COMP 2140 are compulsory;
  2. Nine (9) additional credit hours of COMP courses at the 2000 level or above; and
  3. registration in computer science courses will be controlled by normal pre-requisites and class size restrictions.
Earth Sciences Minor

The Minor in Earth Sciences includes the following set of courses: 

  1. GEOL 1340;
  2. One of the following three courses: GEOL 1400, GEOL 1410 or GEOL 1420;
  3. Twelve (12) credit hours of 2000-level or above courses in Earth Sciences
Leadership for Business and Organizations Minor

The minor in Leadership for Business and Organizations offered by the Faculty of Management is available to Engineering students. The minor consists of 18 credit hours of approved coursework. Please see the Leadership for Business and Organizations Minor for Non-Business Students under Faculty of Management/I.H. Asper School of Business.

Management Minor

The Minor in Management offered by the Faculty of Management is available to Engineering students. The minor consists of any 18 credit hours of Management courses; students must meet all prerequisite requirements. Depending on the approval of the Engineering department, courses used for the minor may also be used to fulfill program requirements in Engineering. Admission requirements for the minor are based on all courses transferred to Engineering or completed while in Engineering; the requirements are a minimum of 30 credit hours applied to their degrees with a minimum Degree Grade Point Average (DGPA) of 3.00. Up to 10 spaces are available each year for engineering students on a competitive basis. Applications can be made in the Engineering Dean’s office by May 30th.  Students not granted a reserve space in the minor, but who have successfully completed 18 credit hours of Management courses at the time of graduation, will qualify for the Management Minor.

Notes:

  1. Civil Engineering students only may use CIVL 2780 for credit towards the Management Minor in Engineering.
  2. Mechanical Engineering students only may use MECH 3170 for credit towards the Management Minor in Engineering.
Mathematics Minor

A Minor in Mathematics is available to Engineering students. The minimum requirement is 24 credit hours of mathematics courses subject to the following constraints:

  1. the students must notify their home department that they are pursuing the minor;
  2. up to 12 credit hours of mathematics courses in a student’s engineering program may be counted toward the minor;
  3. the student must complete at least 6 credit hours of courses from the mathematics department at the 3000 level or higher that are not included as part of the curriculum in the student’s engineering program; and
  4. approval of the Department of Mathematics is required for courses outside of the regular engineering program.
Music Minor

The Minor in Music requires 18 credit hours of MUSC courses and students are subject to the regulations set by the Marcel A. Desautels Faculty of Music.  Please see Music Minors for students in the Price Faculty of Engineering, Faculty of Arts and Faculty of Science under the Marcel A. Desautels Faculty of Music.

Recreation Studies Minor

The Minor in Recreation Studies requires 18 credit hours of approved coursework.  Students are subject to the regulations set by the Faculty of Kinesiology and Recreational Management. See Minor in for a list of course requirements.

Professional Registration

In order to practice engineering in any province or territory in Canada, it is necessary to be a member of the professional engineering association of that province or territory. The requirements for membership are acceptable academic preparation and a subsequent period of acceptable engineering experience gained under the supervision of a registered professional engineer. The undergraduate programs in Biosystems, Civil, Computer, Electrical, and Mechanical Engineering are accredited by the Canadian Engineering Accreditation Board (CEAB), reflecting acceptable academic preparation for membership in the association of professional engineers in any province or territory in Canada. Through a mutual recognition agreement, these programs are also recognized as satisfying accreditation requirements in many other countries such as the United States, the United Kingdom, Ireland, New Zealand, Australia, and Hong Kong.

Graduates of an accredited program are eligible to apply for membership as an engineering intern, in the association of professional engineers in their province of residence in Canada. After a period of acceptable experience, they are eligible to apply to the association for registration as a professional engineer in that province.

Requirements for the Bachelor’s Degree

The requirement for a Bachelor of Science degree in Engineering is a grade of “C” or better in all courses in the student’s program. All students are governed by the rules in effect at the time of their first registration in Engineering.

A student must complete at least 50 per cent of an engineering degree program as a full-time student in the Price Faculty of Engineering. Unless otherwise approved by the Dean of Engineering, students must complete all degree requirements within seven calendar years after being accepted into an Engineering departmental program.

Degree with Distinction

A student who on graduation achieves a Degree Grade Point Average (DGPA) of 3.80 or higher is awarded the degree “With Distinction.”

Criteria for Medal Awards

The Price Faculty of Engineering Program Medal shall be awarded to the graduating student in each engineering program who has achieved the highest Degree Grade Point Average (DGPA) (minimum of 3.80) with no distinction as to full- or part-time status. The Program Medal will be awarded at spring convocation to the student who has completed that program in the past academic year (including October and February graduands).

The University Gold Medal for the Price Faculty of Engineering shall be awarded to the graduating student in the Price Faculty of Engineering who has achieved the highest Degree Grade Point Average (DPGA) (minimum of 3.80) for the entire program with no distinction as to full- or part-time status.

Student Progress and Academic Status

A student’s academic status shall be evaluated at the conclusion of every academic term in which they receive a final grade in a minimum of 6 credit hours of course material, with the assessment being based on the resulting Term Grade Point Average (TGPA) in those courses.

Notwithstanding the above, students will become Ineligible to Proceed in Engineering if at any time the ratio of credit hours passed (from all courses with a grade of "C" or better that are applicable to the student's Engineering program) to total credit hours attempted for that student drops below 75% and the student has attempted a minimum of 72 credit hours.

The academic assessments are as follows:

Preliminary Program:

Good Academic Standing

A student with a TGPA of 2.00 or higher is in Good Academic Standing. This will be notated as “Faculty Minimum Met” or “Satisfactory” on the student academic transcript.

Academic Warning

The first time the student’s TGPA drops below 2.00, they will receive an Academic Warning. Students who receive such a warning are required to meet with an academic advisor.

Academic Probation

The second time that a student’s TGPA drops below 2.00, the student will be placed on Academic Probation. The student will be required to meet with an academic advisor who will assign remedial actions which may include but are not limited to follow-up meetings, participation in skill building workshops determined by the advisor such as study skills, time management, academic writing, test/exam preparation, career development and planning and/or referrals to student support resource units.

Ineligible to Proceed in the Preliminary Program

The third time that a student's TGPA drops below 2.00, the student will be Ineligible to Proceed in the Preliminary Engineering program.

Departmental Programs and Post-baccalaureate Diploma Students:

Good Academic Standing

A student with a TGPA of 2.00 or higher is in Good Academic Standing. This will be notated as "Faculty Minimum Met" or "Satisfactory" on the student academic transcript.

Academic Probation

The first time that a student's TGPA drops below 2.00, the student will be placed on Academic Probation. The student will be required to meet with an academic advisor who will assign remedial actions which may not include but are not limited to follow-up meetings, participation in skill building workshops determined by the advisor such as study skills, time management, academic writing, test/exam preparation, career development and planning and/or referrals to student support resource units.

Required to Withdraw

The second time that a student’s TGPA drops below 2.00, the student will be Required to Withdraw. Students who receive such a suspension shall be ineligible to take courses offered by the Price Faculty of Engineering from the end of the term for which the suspension was issued through to the start of that same term in the subsequent academic year (normally, a period of 8 months.)

In order to be reinstated following the suspension period, the student must submit a written request for reinstatement to the Associate Dean (Undergraduate Programs). Applications must be received between 45-60 days in advance of the effective date of reinstatement; requests made earlier than 60 days in advance will not be accepted.

Ineligible to Proceed in Engineering

The third time that a student's TGPA drops below 2.00, the student will be Ineligible to Proceed in their Engineering program.

Starting Afresh

Students who have become Ineligible to Proceed in Engineering may apply to the Dean for permission to start their degree afresh, should they wish to return to the Price Faculty of Engineering. At the discretion of the Dean, a student may start afresh in an engineering program after a minimum period of two years from their last academic assessment by the Price Faculty of Engineering, and may request to transfer up to 40 credit hours in which a minimum grade of "C+" was achieved. All previous courses will remain on the student's academic transcript, but will not be applied to their new program.

Limit on Time in the Preliminary Engineering Program

Students admitted to the Preliminary Engineering Program shall have two years to complete the minimum course requirements and submit an application for possible acceptance into an Engineering program.  In the case of students admitted to the program through the Engineering Access Program the limit shall be three years.

Students who fail to meet this criterion shall be required to withdraw from Engineering.  Such students may subsequently apply to an engineering program after successfully completing all courses forming the Preliminary Engineering Program.

Students Applying to an Engineering Program

Students will be accepted into department programs based on the following criteria. Students who have completed 8-12 Preliminary Engineering Program courses by May 1st of each academic year will be ranked and admitted on a competitive basis based on the average of the best eight marks in courses in the Preliminary Engineering Program.

Students applying from programs, faculties, colleges, or other institutions will have all courses or equivalent courses that are required in a particular engineering program transferred in, including failed grades (“D’s” and “F’s”) in those courses.  In addition, if the total number of credit hours attempted by the student in all courses that apply in the Price Faculty of Engineering meets or exceeds 72, then the ratio of those credit hours passed (from all courses with a grade of “C” or better that are applicable to the student’s potential Engineering program) to total credit hours attempted must be greater than or equal to 75%.  Furthermore, if the student has attempted less than 72 credit hours, the total number of failed credit hours (from all courses with a grade of “D” or “F” that are applicable to the student’s potential Engineering program) must not exceed 18 credit hours in order to be eligible to be considered for admission.  Students are advised to consult with the Engineering Undergraduate Student Affairs Office if there is concern as to their standing under this rule.

Direct entry engineering students must submit an application for admission through the on line process, indicating their program(s) of choice. The application fee for direct entry engineering students applying to an engineering program is waived.  Students from University 1 and other faculties must apply for admission through the on line process as well and will be subject to an application fee.

Admission as a Second Degree Student

Students possessing the first bachelor's level Engineering degree from an accredited Engineering program with a minimum Cumulative Grade Point Average of 2.00 on their first degree may be eligible for admission as a Second Degree student in a different program provided they have completed the minimum coursework entrance requirements for their intended degree program, see Admissions to Price Faculty of Engineering: All Other Admissions. Admission is subject to available space within the program.

Students who are admitted to the Price Faculty of Engineering following the completion of another degree program are eligible to receive a maximum of 20 single term courses of transfer credit from applicable courses completed outside of their new degree program. Exceptions will be granted to students holding an Electrical or Computer Engineering degree applying as a Second Degree student to Electrical or Computer Engineering. In those cases, students are eligible to receive a maximum of 30 single term courses of transfer credit due to the significant overlap between the two programs. Courses must be completed within 10 years of the application date in order to be considered for transfer credit. Once admitted, students will be expected to satisfy all graduation requirements in the degree program. In all cases, students must complete a capstone design project as part of their degree.

Use of Calculating Devices

For courses offered by the Price Faculty of Engineering in which the use of devices capable of calculations is permitted in tests or examinations, such devices must be incapable of receiving and/or transmitting signals. Instructors wishing to restrict devices to certain capabilities must inform students, in writing, within the first week of term. Questions concerning the suitability of any given device should be directed to the course instructor(s).

Withdrawal from Courses

The responsibility for initiating withdrawals rests solely with the student, and no voluntary withdrawals are permitted after the deadlines for voluntary withdrawal without academic penalty (please refer to the General Academic Regulations). For documented medical or compassionate reasons, Authorized Withdrawals may be permitted by the Dean's Office, Price Faculty of Engineering.

A student who, after registering for courses, in any term, becomes Ineligible to Proceed in Engineering will be withdrawn from his or her courses for the effective term as well as any subsequent terms, including Summer Session.

Co-operative Education and Industrial Internship Programs

Contact and Program Information

Director: Carolyn Geddert, P.Eng., Engineer-in-Residence
Tel. 204 474 8948
Email: carolyn.geddert@umanitoba.ca
Cooperative Education Administrator: Megan Johnson
Telephone: 204 480 1069
Email: megan.johnson@umanitoba.ca

The Price Faculty of Engineering offers a Co-operative education and Industrial Internship Program (Co-op/IIP) designed to complement and enrich the academic program with work experience. The work terms provide students with practical experience, assistance in financing their education, and guidance for future career specialization.

Applications are accepted for Co-op/IIP every fall. Co-op/IIP supports the application and participation of all students who meet the requirements and wish to apply. Application to Co-op/IIP is a process. The Co-op/IIP Office will work with you. Please connect with our staff via email: engineeringcoop@umanitoba.ca and refer to the web site for the benefits of Co-op/IIP.

Successful applicants to Co-op/IIP have:

  • Attended an information session.
  • Been accepted as an undergraduate student into an Engineering Department.
  • Completed all 13 Preliminary Engineering Program courses before their first work term.
  • Completed 42 credit hours towards your degree by the end of the Fall term. Students must return for at least one academic term following the completion of their final work term placement. (Application early in a student's degree program will support the completion of 3 work terms.)
  • Been assessed as in Good Academic standing (GPA above 2.0). I.E. not on Probation or Academic Warning.
  • Agree to follow all rules and regulations of the program as detailed in the Rules and Regulations

Work placements must be confirmed to be appropriate by the Co-op/IIP office in order be credited as a Co-op/IIP work term.

Upon securing a job placement, Engineer­ing students enroll in the course ENG 4800 and subsequently the specific work term of employ­ment ENG 4810, ENG 4820, ENG 4830, ENG 4840.

Students who are unable to maintain the standards of the Co-op/IIP will be transferred back into the regular program.

The course and grade requirements for completion of the Co-op/IIP are the same as those required for the regular program. However, in order to satisfy course prerequisite requirements, timetables may differ from the regular program. Co-op/IIP students are evaluated in the same manner as regular students and all rules and regulations of the Price Faculty of Engineering apply.

Students who are placed on Academic Probation may either be removed from Co-op/IIP or have their acceptance deferred until they have completed two consecutive terms with an Academic Standing of “Satisfactory”.

Students who are Required to Withdraw will immediately become ineligible for Co-op/IIP and will remain ineligible after re-instatement to the Price Faculty of Engineering.

Written reports must be completed at the end of each four-month work term. Each successfully completed four-month work term and its corresponding report receives a Pass/Fail grade and is rated at one credit hour. Graduates who successfully complete at least three work terms and the required work term reports will have the Co-operative Education Option acknowledged on their B.Sc. graduation parchment.

For more information regarding the Co-op/IIP rules, benefits, regulations and requirements, please refer to the web site.

Introduction

This chapter contains the regulations and requirements that apply to all students, regardless of faculty or school.

Each faculty and school has its own supplementary regulations and requirements. These are published in the faculty or school chapters of the Academic Calendar. Some faculties and schools also have additional regulations and requirements governing their programs; these are available from the faculty or school.

It is the responsibility of each student to be familiar with the academic regulations and requirements of the University of Manitoba in general and of the specific academic regulations and requirements of their faculty or school of registration. Accordingly, students are asked to seek the advice of advisors in faculty and school general offices whenever there is any question concerning how specific regulations apply to their situations.

Residence and Written English and Mathematics Requirements

Residence Requirements For Graduation

Each faculty and school recommends to the Senate the number of credit hours each student must complete in order to graduate from its programs. Senate also requires each student to complete a minimum number of credit hours at the University of Manitoba -- this is called the “residence requirement.”

Unless otherwise stated in faculty and school chapters, the minimum residence requirement of the University of Manitoba is the work normally associated with one year in the case of programs of three years’ duration, and two years for programs of four years’ duration. Some faculties and schools may have additional residence requirements specified in their program regulations. However, in all cases, the residence requirement is assessed following an appraisal of the educational record of the student applying to transfer credits from another institution or applying to earn credits elsewhere on a letter of permission. The residence requirement is not reduced for students whose “challenge for credit” results in a passing grade.

University English and Mathematics Requirements for Undergraduate Students

All students are required to complete, within the first 60 credit hours of their programs, a minimum of one three credit hour course with significant content in written English, and a minimum of one three credit hour course with significant content in mathematics.

Some degree programs have designated specific written English and mathematics courses to fulfil this requirement.

Price Faculty of Engineering have their own written English requirements.

Some degree programs require that the written English and/or mathematics requirements be completed prior to admission.

See the program descriptions in the faculty and school chapters of the Academic Calendar for details.

Exemptions to the Written English and Mathematics Requirement

  • All students with completed baccalaureate degrees and who transfer into any program to which these requirements apply.
  • Registered Nurses entering the Bachelor of Nursing Program for Registered Nurses.
  • Students admitted before the 1997-98 Regular Session.
  • Written English exemption only: Students transferring from Université de Saint-Boniface who have completed a written French requirement (at the university) before transferring to the University of Manitoba will be deemed to have met the written English requirement.

Approved English and Mathematics Courses

A complete list of all courses which satisfy the university written English and mathematics requirement is provided below. (When searching for courses in Aurora, students may search Course Attributes for courses that satisfy the written English and Mathematics requirements).

Note that some programs may restrict the choice of English or Mathematics courses. See the program descriptions in the faculty and school chapters of the Academic Calendar for details.

Written English Courses

Course Title Hours
AGRI 2030Technical Communications3
ANTH 2020Relatedness in a Globalizing World3
ARTS 1110Introduction to University3
ASIA 1420Asian Civilizations to 1500 (B)3
ASIA 1430Asian Civilization from 1500 (B)3
CATH 1190Introduction to Catholic Studies3
CATH 2010Literature and Catholic Culture 13
CATH 2020Literature and Catholic Culture 23
CLAS 2612Greek Literature in Translation3
CLAS 2622Latin Literature in Translation3
ENGL 0930English Composition3
ENGL 0940Writing About Literature3
ENGL 1XXX All English courses at the 1000 level
ENGL 2XXX All English courses at the 2000 level
ENVR 2810Environmental Critical Thinking and Scientific Research3
FAAH 2930Writing about Art3
FILM 2280Film and Literature6
GEOG 2900Geography of Canadian Prairie Landscapes (A)3
GEOL 3130Communication Methods in the Geological Sciences3
GMGT 1010Business and Society3
GMGT 2010Business Communications3
GPE 2700Perspectives on Global Political Economy3
GRMN 1300Masterpieces of German Literature in English Translation (C)3
GRMN 1310Love in German Culture in English Translation (C)3
GRMN 2120Introduction to German Culture from 1918 to the Present (C)3
GRMN 2130Introduction to German Culture from the Beginnings to 1918 (C)3
GRMN 2500Special Topics in German in English Translation (C)3
GRMN 2510German Fairy Tales from the Brothers Grimm to Hollywood (C)3
GRMN 2520Spies: Stories of Secret Agents, Treason, and Surveillance (C)3
GRMN 2530My Friend the Tree: Environment and Ecology in German Culture in English Translation (C)3
GRMN 2540Heroes, Feathers, and Tipis: German Fascination with North American Indigenous Peoples3
GRMN 3262Representations of the Holocaust in English Translation (C)3
GRMN 3270Studies in Contemporary German Cinema (C)3
GRMN 3282Sex, Gender and Cultural Politics in the German-Speaking World in English Translation (C)3
GRMN 3390German Representations of War (C)3
GRMN 3510Special Topics in German in English Translation (C)3
GRMN 3530Special Topics in Comparative German and Slavic Studies (C)3
HIST 1XXX All History courses at 1000 level
HIST 2XXX All History courses at 2000 level
HIST 2530History of the Modern Middle East (R)3
HIST 2540History of the Islamic World (R)3
HNSC 2000Research Methods and Presentation3
HYGN 1340Communications2
INDG 2012Indigenous History in Canada6
INDG 2020The Métis in Canada3
INDG 2110Introduction to Indigenous Community Development3
INDG 2530Introduction to Indigenous Theory3
KPER 2120Academic Skills in Kinesiology and Recreation Management3
LABR 1260Working for a Living3
LABR 1290Labour Unions and Workers' Rights in Canada3
LABR 2200Labour History: Canada and Beyond (C)3
LABR 2300Workers, Employers and the State3
LABR 4510Labour Studies Field Placement Seminar3
LAW 1540Legal Methods5
LAW 2650Introduction to Advocacy3
LING 2740Interpretation Theory3
PHIL 2612A Philosophical History of Science3
PHIL 2614Philosophy of Science3
PHIL 2790Moral Philosophy6
PHIL 3220Feminist Philosophy3
POL 1900Love, Heroes and Patriotism in Contemporary Poland3
POL 2600Polish Culture until 19183
POL 2610Polish Culture 1918 to the Present3
POL 2660Special Topics in Polish Literature and Culture3
POLS 1502Introduction to Political Science3
PSYC 3380Nature, Nurture and Behaviour3
PSYC 4520Honours Research Seminar6
RLGN 1440Evil in World Religions3
RLGN 2032Introduction to the Study of Religion3
RLGN 2036Introduction to Christianity3
RLGN 2052Conservative Christianity in the United States3
RLGN 2112Medicine, Magic, and Miracle in the Ancient World3
RLGN 2116Cognitive Science and Religion3
RLGN 2140Introduction to Judaism3
RLGN 2160Hebrew Bible (Tanakh/"Old Testament")3
RLGN 2162Great Jewish Books3
RLGN 2170Introduction to the New Testament3
RLGN 2222The Supernatural in Popular Culture3
RLGN 2590Religion and Social Issues3
RLGN 2770Contemporary Judaism3
RLGN 3102Myth and Mythmaking: Narrative, Ideology, Scholarship3
RLGN 3280Hasidism3
RUSN 1400Masterpieces of Russian Literature in Translation3
RUSN 1410Love in Russian Culture in English Translation3
RUSN 2280Russian Culture until 19003
RUSN 2290Russian Culture from 1900 to the Present3
RUSN 2310Exploring Russia through Film3
RUSN 2410Russian Literature after Stalin3
RUSN 2600Special Topics in Russian Culture in English Translation3
RUSN 2740Literature and Revolution3
RUSN 3770Tolstoy3
SLAV 3530Special Topics in Comparative German and Slavic Studies3
SOC 3100Practicum in Criminological/Sociological Research6
SOC 3350Feminism and Sociological Theory3
UKRN 2200Ukrainian Myth, Rites and Rituals3
UKRN 2410Ukrainian Canadian Cultural Experience3
UKRN 2590Ukrainian Literature and Film3
UKRN 2600Special Topics in Ukrainian Studies3
UKRN 2770Ukrainian Culture until 19003
UKRN 2780Ukrainian Culture from 1900 to the Present3
UKRN 2820Holodomor and Holocaust in Ukrainian Literature and Culture3
UKRN 3970Women and Ukrainian Literature3
WOMN 1500Introduction to Women's and Gender Studies in the Humanities3
WOMN 1600Introduction to Women's and Gender Studies in the Social Sciences3
WOMN 2560Women, Science and Technology3
WOMN 3520Transnational Feminisms3

Mathematics Courses

Course Title Hours
AGRI 2400Experimental Methods in Agricultural and Food Sciences3
ECON 2040Quantitative Methods in Economics3
FA 1020Mathematics in Art3
GEOG 3810Quantitative Research Methods in Geography (TS)3
MATH 1XXX All Mathematics courses at 1000 level
MATH 2XXX All Mathematics at 2000 level
MATH 3XXX All Mathematics at 3000 level
MATH 4XXX All Mathematics at 4000 level
MUSC 3230Acoustics of Music3
PHIL 1300Introduction to Logic3
PHYS 1020General Physics 13
PHYS 1030General Physics 23
PSYC 2260Introduction to Research Methods in Psychology3
SOC 2294Understanding Social Statistics3
STAT 1XXX All Statistics courses at 1000 level
STAT 2XXX All Statistics courses at 2000 level
STAT 3XXX All Statistics courses at 3000 level
STAT 4XXX All Statistics courses at 4000 level

Course Identification

Credit Hours (Cr.Hrs.)

Each faculty and school develops courses for its degree credit programs, subject to Senate approval, and assigns a credit hour value to each course.

The credit hours for a course are expressed as a number associated with the course which indicates its relative weight. There is a correlation between class hours and credit hours (i.e. 6 credit hours = 3 hours a week, two terms; and 3 credit hours = 3 hours a week, one term).

For the purposes of registration, courses taught over both the Fall and Winter Terms have been divided into two parts. The credit hour value of the course are divided equally and applied to each part of the course. For example: for a six credit hour spanned course each of the Fall and Winter Term parts of the course will be assigned the value of three credit hours. Students registering for term spanning courses will receive one grade for the course and only when the second part is completed. The course grade will be applied to both the Fall and Winter parts of the course.

Prerequisite and Co-requisite Courses

Prerequisite: If a course is prerequisite for a second course, the prerequisite must be met in order to begin the second course. To determine whether or not a course has a prerequisite, see the course descriptions in the chapter of the faculty or school offering the course. Normally, a minimum grade of “C” is required in all courses listed as prerequisites, except as otherwise noted in the course descriptions.

For some courses, the prerequisite may be completed before registering for the second course or may be taken concurrently with the second course. To determine if a course may be taken concurrently, see the course descriptions in the chapter of the faculty or school offering the course.

Co-requisite: If a first course is a co-requisite for a second course, the first course must be completed in the same term as the second course. To determine if a course has a co-requisite, see the course descriptions in the chapter of the faculty or school offering the course.

Course Numbers

First Two to Four Characters

The two, three or four characters in every course number are a shortened version of the subject of the course.

Last Four Digits

At the University of Manitoba the last four digits of the course number reflect the level of contact with the subject.

For example:
ECON 1210

ECON is the code for Economics.

1210 indicates that it is an introductory or entry level course.

If the course requires a laboratory, this will be shown following the credit hours immediately following the title.
For example:
BIOL 3242 (lab required)

Courses numbered in the 1000 range are introductory. Most appear on the Recommended Introductory Course (RIC) List. 2000, 3000, and 4000 course numbers indicate second, third, and fourth levels of university study in a subject. These courses are at the Undergraduate (UG) level.

Courses numbered in the 5000 range are normally associated with pre-Master's work, courses in Post-Baccalaureate Diplomas, and Post-Graduate Medical Education programs. These courses are also at the Undergraduate (UG) level.

Courses numbered in the 6000 - 8000 range are courses of the Faculty of Graduate and Postdoctoral Studies. These courses are at the Graduate (GR) level.

Course numbers in the 9000 series are used to identify courses taken at the University of Winnipeg by students in the University of Manitoba/University of Winnipeg Joint Master’s Programs. The 9000 numbers do not indicate the level of the course taken (see Graduate Calendar or University of Winnipeg Calendar).

In most cases, some correlation exists between the course number and a student's year of study; that is, students in the third year of a program will generally carry course loads comprised primarily of 3000-level courses.

Other course numbering information

Courses with numbers that end in 0 or an even number are taught in English, most of which are offered on the Fort Garry or Bannatyne campuses or through Distance and Online Education.

Courses with numbers that end in odd numbers are taught in French at Université de Saint-Boniface.

Grades and Grade Point Average Calculation

Introduction

Final grades in most courses are expressed as letters, ranging from F, to A+ the highest. A grade of D is the lowest passing grade, however the minimum grade required to use a course as credit toward a degree or diploma program may be set higher by a faculty or school. Refer to faculty and school regulations. Each letter grade has an assigned numerical value which is used to calculate grade point averages.  Grading scales used to determine the final letter grade may vary between courses and programs.

Some courses are graded on a pass/fail basis and because no numerical value is assigned to these courses, they do not affect grade point averages. Courses graded in this way are clearly identified in course descriptions and program outlines.

The Letter Grade System

Letter Grade Grade Point Value Description
A+ 4.5 Exceptional
A 4.0 Excellent
B+ 3.5 Very Good
B 3.0 Good
C+ 2.5 Satisfactory
C 2.0 Adequate
D 1.0 Marginal
F 0 Failure
P Pass
S Standing

The grade of “D” is regarded as marginal in most courses by all faculties and schools. It contributes to decreasing a term, degree or cumulative Grade Point Average to less than 2.0. Courses graded “D” may be repeated for the purpose of improving a GPA. Note that some faculties and schools consider a grade of “D” as unacceptable and will not apply the course toward the program as credit. In most cases the course will need to be repeated to attain the acceptable grade. Refer to faculty and school regulations.

Calculation of Grade Point Average

The University of Manitoba will report cumulative and term grade point averages for all students through Aurora Student.
Please also refer to the Grade Point Averages Policy found in the University Policies and Procedures..

Quality Points

The quality points for a course are the product of the credit hours for the course and the grade point obtained by the student; e.g., 3 credit hours with a grade of “B” (3.0 points) = 3 credit hours x 3.0 = 9.0 quality points.

Quality Point Total

The quality point total is the sum of quality points accumulated as students proceed through their program of studies.

Grade Point Average (GPA)

The grade point average (GPA) is the quality point total divided by the total number of credit hours.

Example:

Course Credit Hours Grade Grade Points Quality Points
Course 1 3 B 3 9
Course 2 3 B+ 3.5 10.5
Course 3 3 C+ 2.5 7.5
Course 4 3 B 3 9
Course 5 3 A 4 12
Totals 15 48


Grade point average: 240 Quality Points / 15 Credit Hours = 3.20

Poor Grades and Program Progression

A course in which a “D” standing is obtained may need to be repeated by probationary students in certain faculties or where a minimum grade of “C” is required in a prerequisite subject or to meet degree requirements.

Students in doubt as to the status of their record should consult an advisor in their faculty or school.

For minimum grade levels, especially as they affect progression requirements, see the faculty or school regulations in the Academic Calendar or consult an advisor.

Academic Honours

Students qualify for the Honour List (Dean’s, Director’s, University 1) when they achieve qualifying grade point averages, as specified by the faculty/school or program regulations.

In addition, outstanding academic achievement will qualify students for other honours and awards.  These include:

  • the University Gold Medal, which is awarded at graduation in each faculty or school to the student with the most outstanding academic record;
  • program medals, which are awarded by faculties and schools to the best student graduating from a specific program;
  • graduation “with distinction”, which is recorded on the transcripts of all students who attain a qualifying grade point average;
  • and other medals and prizes that are specific to programs or disciplines.

Academic Evaluation

Methods of Evaluation

Students shall be informed of the method of evaluation to be used in each course, as specified in the Responsibilities of Academic Staff with Regard to Students Policy, found in the University Policies and Procedures.

In departments where a course is offered in more than one section, the department offering the course endeavours to provide instruction so that all sections cover similar topics and that all students achieve a similar level of competency in the topic. However, there will be differences in evaluation as well as in teaching style, readings and assignments from one section to another. Students may contact the department for additional information before registration.

Credit for Term Work

In subjects involving written examinations, laboratories, and term assignments, a student may be required to pass each component separately. If no final examination is scheduled in a course, the student’s final grade will be determined on the basis of the method of evaluation as announced in the first week of lectures.

If credit is not given for term work, the student’s final grade will be determined entirely by the results of the final written examination. Where the final grade is determined from the results of both term work and final examinations, the method of computing the final grade will be as announced within the first week of classes. Should a student write a deferred examination, term grades earned will normally be taken into account as set out in the immediately preceding paragraph.

Repeating a Course

A course in which a “D” standing is obtained may need to be repeated by probationary students in certain faculties or where a minimum grade of “C” is required in a prerequisite subject or to meet degree requirements.

Elective courses graded “F” may either be repeated or another elective substituted. All electives in a program must be approved by the faculty or school.

Probation and Academic Suspension

Failure to meet minimum levels of performance as specified in the regulations of the faculty or school will result in a student being placed either on probation or academic suspension in accordance with the faculty or school regulations.

A student’s status is determined, following final examinations, at the end of each term (Fall, Winter or Summer terms) or at the end of an academic session as specified in faculty regulations. A student placed on probation is advised to discuss his/her program prior to the next registration with a representative of the dean or director to determine which courses, if any, should be repeated.

A student placed on academic suspension will normally be permitted to apply for re-entry to the faculty or school after one year has elapsed, but reinstatement is not automatic and individual faculty or school regulations must always be consulted.

While on suspension, students are not normally admissible to another faculty or school.

Other Forms of Earning Degree Credit

Letter of Permission for Transfer of Credit

Students in degree programs at this university may take courses at other recognized colleges or universities for transfer of credit provided such courses are approved at least one month prior to the commencement of classes at the other institution by the faculty or school in which they are currently registered. The approval is subject to individual faculty/school regulations and is granted in the form of a Letter of Permission. The student must obtain a Letter of Permission whether or not the course/s being taken are for transfer of credit to the University of Manitoba. Failure to obtain a Letter of Permission may have serious academic implications.

To obtain a Letter of Permission, application must be made to the Registrar’s Office as early as possible and at least one month prior to when required at the other institution.

Each application must be accompanied by the appropriate fee. The fees are for each application and a separate application is required for each session and institution regardless of the number of courses being considered. Students planning to seek permission to take courses elsewhere for transfer of credit to the University of Manitoba are cautioned to check the current Academic Calendar for the residence and degree requirements of the degree programs in which they are enrolled.

Transferred courses will be given assigned credit hour values and grades. The transferred grade will be included in the student's degree and cumulative GPA.

Challenge for Credit

The purpose of Challenge for Credit is to provide students of the university with some means of obtaining academic credit in University of Manitoba courses (not otherwise obtainable as a transfer of credit from other institutions) for practical training and experience, or reading and study previously completed. Students who have registered to challenge would normally not attend classes or laboratories. Courses which have previously been taken at the University of Manitoba may not be challenged for credit.

To be eligible to challenge for credit a student must first be admitted to a faculty or school of the University of Manitoba. Eligible students will be required to demonstrate their competence in the courses which they are challenging for credit. Where formal, written examinations are required, these will be generally scheduled during the regular examination sessions in April/May, June, August, or December.

For information regarding requirements, procedures, applications and fees a student should contact the office of the faculty or school in which the student is enrolled, or in the case of new students, the faculty or school to which the new student has been admitted.

Application of Course Credit when transferring between Programs within the University of Manitoba

When students transfer into program from another faculty or school within the University of Manitoba, some course credits previously earned may be applied to the new program. The credit hour value assigned by the faculty or school that offers the course is used. That is, there can only be one credit weight designated for a course with a particular course number.

Appeal of Academic Decisions, Admission Decisions and Academic Accommodation Decisions

The Senate Committee on Appeals will consider appeals of Academic Decisions, Admission Decisions and Academic Accommodation Decisions, in accordance with the Senate Committee on Appeals policy and procedure.

Academic Decisions: Decisions of Faculty/School Councils or their Appeal Bodies, of Professional Unsuitability Committees, of Faculty/School Award Selection Committees and of the Comité d’appels de l’Université de Saint Boniface upon application by Appellants.

Admission Decisions: Decisions of Faculty/School/College admission selection committees, and these only when the Appellant has sought reconsideration by the admission selection committee as set out below: 

i) Administrative decisions which affect the admission process

ii) Decisions of Faculties/Schools/Colleges or Admissions Office personnel regarding eligibility requirements

iii) Decisions of Faculties/Schools/Colleges regarding granting transfer of credit at the point of admission and possible granting of advanced standing

Academic Accommodation Decisions: Decisions of the Director of Student Accessibility Services (SAS) regarding a request for reconsideration of a proposed accommodation.

The Senate Committee on Appeals policy and procedure as well as an Appeal Form may be obtained from the Governing Documents website.

Academic Integrity

The University of Manitoba takes academic integrity seriously. Academic Integrity refers to the adherence and alignment with ethical and professional principles, standards, practices and guided by a consistent system of values including honesty, trust, fairness, respect, responsibility, and courage that serves as the foundation for making decisions and taking actions in education, research, and scholarship.

To help students understand the expectations of the University of Manitoba, definitions for different types of prohibited behaviours are in the Student Academic Misconduct Procedure and provided below.

"Academic Integrity" refers to the adherence/alignment with ethical and professional principles, standards, practices and guided by a consistent system of values including honesty, trust, fairness, respect, responsibility and courage that serves as the foundation for making decisions and taking actions in education, research, and scholarship.

"Academic Misconduct" is any action or attempted action that undermines Academic Integrity at the University and may result in an unfair academic advantage or disadvantage for any member of the academic community or wider society, including but not limited to:

(a) Plagiarism – the presentation or use of information, ideas, images, sentences, findings, etc. as one’s own without appropriate attribution in a written assignment, test or final examination.

(b) Cheating on Quizzes, Tests, or Final Examinations – the circumventing of fair testing procedures or contravention of exam regulations. Such acts may be premeditated/planned or may be unintentional or opportunistic.

(c) Inappropriate Collaboration – when a student and any other person work together on assignments, projects, tests, labs or other work unless authorized by the course instructor.

(d) Academic Fraud - falsification of data or official documents as well as the falsification of medical or compassionate circumstances/documentation to gain accommodations to complete assignments, tests, examinations or other evaluations of academic work

(e) Impersonation - writing an assignment, lab, test, or examination for another student, or the unauthorized use of another person's signature or identification in order to impersonate someone else. Impersonation includes both the impersonator and the person initiating the impersonation.

(f) Contract Cheating - the outsourcing of academic work to a third party to produce work in whole or in part, whether or not payment or favour is involved, and submitting it as one's own.

(g) Duplicate Submission – cheating where a student submits a paper/assignment/test in full or in part, for more than one course without the permission of the course instructor.

(h) Unauthorized Content Generation - the production of academic work in whole or part, for academic credit, progression or award, whether or not any payment or other benefit is involved, using not explicitly approved or undeclared technological assistance.

Note that the above applies to written, visual, and spatial assignments as well as oral presentations.

Over the course of your university studies, you may find yourself in situations that can make the application of these definitions unclear. The University of Manitoba wants to help you be successful, and this includes providing you with the knowledge and tools to support your decisions to act with integrity. There are a number of people and places on campus that will help you understand the rules and how they apply to your academic work. If you have questions or are uncertain about what is expected of you in your courses, you have several options:

  • Ask your professor, instructor, or teaching assistant for assistance or clarification.
  • Get support from the Academic Learning Centre or Libraries:
  • Visit the Academic Integrity site for information and tools to help you understand academic integrity.
  • Make an appointment with the Student Advocacy office. This office assists students to understand their rights and responsibilities and provides support to students who have received an allegation of academic misconduct.

Appeals of Grades

Appeal of Term Work

Students may formally appeal a grade received for term work provided that the matter has been discussed with the instructor in the first instance in an attempt to resolve the issue without the need of formal appeal. Term work grades normally may be appealed up to ten (10) working days after the grades for the term work have been made available to the student.

The fee which is charged for each appealed term work grade will be refunded for any grade which is changed as a result of the appeal.

Appeal of Final Grades

Final grades are not released to students who are on “Hold Status”; the deadline for appeal of assigned grades will not be extended for students who were unable to access their final grades due to a hold.

These regulations expand on the Final Grades Procedures found in the University Policies and Procedures.

Attendance and Withdrawal

Attendance at Class and Debarment

Regular attendance is expected of all students in all courses.

An instructor may initiate procedures to debar a student from attending classes and from final examinations and/or from receiving credit where unexcused absences exceed those permitted by the faculty or school regulations.

A student may be debarred from class, laboratories, and examinations by action of the dean/director for persistent non-attendance, failure to produce assignments to the satisfaction of the instructor, and/or unsafe clinical practice or practicum. Students so debarred will have failed that course.

Withdrawal from Courses and Programs

Voluntary Withdrawal

The registration revision period extends two weeks from the first day of classes in both Fall and Winter terms. Courses dropped during this period shall not be regarded as withdrawals and shall not be recorded on official transcripts or student histories. The revision period is prorated for Summer terms and for parts of term.

After the registration revision period ends, voluntary withdrawals (VWs) will be recorded on official transcripts and student histories.

The following dates are deadlines for voluntary withdrawals:

  • The Voluntary Withdrawal deadline shall be the 48th teaching day in both Fall and Winter term for those half-courses taught over the whole of each term;
  • The Voluntary Withdrawal deadline for full-courses taught over both Fall and Winter term shall be the 48th teaching day of the Winter term; and
  • The Voluntary Withdrawal deadline for full-and-half courses taught during Summer terms or during some other special schedule shall be calculated in a similar manner using a pro-rated number of teaching days.

The exact Voluntary Withdrawal dates that apply to courses offered in the current academic session are published in the Academic Schedule.

Authorized Withdrawal

Subject to the provision of satisfactory documentation to the faculty of registration, Authorized Withdrawals (AWs) may be permitted on medical or compassionate grounds.

Required Withdrawal from Professional Programs

Senate, at the request of some faculties and schools, has approved bylaws granting them the authority to require a student to withdraw on the basis of unsuitability for the practice of the profession to which the program of study leads.

This right may be exercised at any time throughout the academic year or following the results of examinations at the end of every year.

This right to require a student to withdraw prevails notwithstanding any other provisions in the academic regulations of the particular faculty or school regarding eligibility to proceed or repeat.

Where Senate has approved such a bylaw, that fact is indicated in the Academic Calendar chapter for that faculty or school. A copy of the professional unsuitability bylaw may be obtained from the general office of the faculty or school.

Deferred and Supplemental Examinations

These regulations expand on the Deferred and Supplemental Examinations Procedures found in the University Policies and Procedures.

Accepting Standing in Course without Examination

In the event that a student is unable to write a deferred examination as it has been scheduled, a grade may be assigned without examination (please refer to the Deferred and Supplemental Examinations Procedures). A student who accepts standing in a course without examination may not, at a later date, request permission to write a deferred examination in the course.

Supplemental Examinations

Supplemental Examinations are offered by some faculties to students who have not achieved the minimum result in required courses.

Students who are granted supplemental privileges are normally required to sit the examination within thirty (30) working days from the end of the examination series in which the supplemental grade was received, unless the progression rules of a faculty or school require the successful completion of an entire academic year before a student is eligible to proceed into the next. In this case, students are obliged to sit the examination at the next ensuing examination period.

Final Examinations

These regulations expand on the Final Examinations and Final Grades Policy and Procedures found in the University Policies and Procedures.

General Examination Regulations

Students (with the exception of students auditing courses) are required to write all final examinations. Those who absent themselves without an acceptable reason will receive a grade classification of “NP” (No Paper) accompanied by a letter grade based on term work completed, using a zero value for incomplete term work and for the final examination. If no credit for term work is involved, a grade of “F” will be assigned. Under certain conditions a student may apply for a deferred examination; see Deferred and Supplemental Examinations.

Examination Schedules

For most faculties, schools and colleges, final examinations are normally conducted in December for Fall Term courses; in April/May for Winter Term and Fall/Winter Term spanned courses; and in August for Distance and Online Education Summer Term courses. Exact dates for the exam period can be found in the Academic Schedule.

The Schedule of Final Exams for Fall and Winter is made available by the Registrar’s Office approximately one month after the beginning of the term. This schedule is made available on the Registrar’s Office Website and includes finalized dates and times for each exam.  Exam locations are added to the schedule at a later date. Summer Term courses, final exam details will be made available 1 – 2 weeks before the posted exam period.

Students must remain available until all examination and test obligations have been fulfilled.  Travel plans are not an acceptable reason for missing an exam.

Examination Personations

A student who arranges for another individual to undertake or write any nature of examination for and on his/her behalf, as well as the individual who undertakes or writes the examination, will be subject to discipline under the university’s Student Discipline Bylaw, which could lead to suspension or expulsion from the university. In addition, the Canadian Criminal Code treats the personation of a candidate at a competitive or qualifying examination held at a university as an offence punishable by summary conviction.

Hold Status

More details about being on Hold can be found online on the Registrar's Office website.

Students will be placed on "Hold Status" if they incur any type of outstanding obligation (either financial or otherwise) to the university or its associated faculties, schools, colleges or administrative units.

Some typical reasons for holds are:

  • Program/course selection must be approved
  • U1 student must transit into the Faculty of Arts or Science
  • Required Major, Minor and/or Concentration declaration
  • Transcripts or documents required from other institutions
  • Unpaid tuition and/or other university fees
  • Outstanding library books and/or fines
  • Parking fines
  • Pending disciplinary action

Depending on the reason for the hold, limited or no administrative or academic services will be provided to students on Hold Status until the specific obligations have been met.

Students must clear their holds prior to registration by contacting the appropriate office.  Students with outstanding financial obligations to the university will not be permitted to register again until the hold has been cleared or permission to register has been obtained from the Office of the Vice-President (Administration).

Advisor and Program Holds

Students enroled in some programs are required to discuss their course selections and program status with an advisor prior to registration. Advisor and Program Holds normally only restrict registration activity; other administrative services remain available.

Students can verify whether their program requires consultation with an advisor by checking their faculty/school section of the Academic Calendar, or by viewing their Registration Time and Status in Aurora.

Graduation and Convocation

Graduation

Students may graduate from the University of Manitoba at the end of the following terms: Winter (May/June graduation date), Summer (October graduation date), and Fall (February graduation date). Convocation ceremonies are held in May/June and October only. Students who graduate at the end of Fall term are welcome to attend the May/June ceremonies.

Students are eligible to graduate when they have completed all requirements for their degree program in accordance with the regulations described in the section General Academic Regulations and the regulations available from the advising offices of their faculties, colleges, or schools.

It is the responsibility of each student to be familiar with the graduation requirements of the program in which they are enrolled. Consultation with academic advisors is strongly recommended to ensure that graduation requirements are met.

Please refer to the Registrar’s Office website for Frequently asked Questions about Graduation and Convocation.

Every candidate for a degree, diploma or certificate must make formal application at the beginning for the Term in which they expect to complete graduation requirements. Application is made through the Aurora Student Information System.

Candidates who need to change their graduation date after they have made a graduation declaration, must contact the advising office of their faculty, college, or school as soon as possible.

After graduation has been declared, candidates will be sent a series of emails to their email account, requesting verifications of full legal name, degree sought and plans for attendance at Convocation ceremonies. It is imperative that you activate your University of Manitoba email account and check it regularly.

Convocation

Convocation ceremonies are held in May/June and October of each year. February graduates are invited to attend the May/June ceremonies.

Graduating students are encouraged to attend with their families and friends because it is the one ceremonial occasion that marks the successful conclusion of their program of studies.

Graduates who wish to attend Convocation, verify their attendance at the Convocation ceremony by reserving their academic attire through the University approved supplier.

Graduates who, for any reason, do not attend Convocation will receive their degrees in absentia.

The Registrar’s Office will hold unclaimed parchments for a maximum of twelve months after graduation when any unclaimed parchments will be destroyed. These will include those not given at Convocation, those that were to be picked up in person but not claimed, those that were mailed but returned to the Registrar’s Office by the postal outlet or courier depot, those that were not issued due to a financial hold on a student’s records, and those that were reprinted immediately after convocation due to corrections.

It is critical that you update your address, phone number, and email through Aurora whenever changes occur. Note that any changes made with the Alumni Association are not reflected in your University of Manitoba student records.

If you do not receive your parchment, it is your responsibility to follow up with the Registrar’s Office within a twelve-month period. Any requests for parchments after this time will be processed as replacements; there is a fee charged for replacement parchments.

Academic Dress

Students are responsible for making arrangements to reserve their academic attire through the University approved supplier. Rental fees apply. Details will be provided via e-mail once Convocation planning begins.

Convocation Information

Information on Convocation may be found on the Graduation/Convocation website.

Personal Information

Mailing Address

In order to receive University mail, it is essential that you to provide the Registrar’s Office with your current address. All mail will be directed to the address you provide. You may change your mailing address and phone number by accessing Aurora Student and then selecting Personal Information.

Change of Name

If you have changed your name since you were first admitted or if the name on your record is incomplete or inaccurate, official evidence of the name change or correction must be submitted to the Registrar’s Office along with a completed Request for Change of Name form. The University of Manitoba uses your full legal name on its records, transcripts, and graduation documents (a full legal name, for example, includes all names on your birth certificate - first, middle, and last - or on your study permit). Abbreviated names, Anglicized names, or initials should not be used unless they have been proven with appropriate documentation.