Please note:
To view the current Academic Calendar, go to www.sfu.ca/students/calendar.html.
Applied Mathematics Honours
Applied mathematics traditionally consists of areas of mathematics which are closely related to the physical sciences and engineering, but nowadays sophisticated mathematical tools are used across many disciplines, and applied mathematics has become increasingly computationally oriented.
The Department of Mathematics offers an applied mathematics honours program. Students interested in applied mathematics may also wish to consider the joint honours program in mathematics and computer science, and the mathematical physics honours program, both of which include a substantial number of applied mathematics courses.
Prerequisite Grade Requirement
To enroll in a course offered by the Department of Mathematics, a student must obtain a grade of C- or better in each prerequisite course. Some courses may require higher prerequisite grades. Check the MATH course's Calendar description for details.
Students will not normally be permitted to enroll in any course for which a D grade or lower was obtained in any prerequisite. No student may complete, for further credit, any course offered by the Department of Mathematics which is a prerequisite for a course the student has already completed with a grade of C- or higher, without permission of the department.
Program Requirements
Students complete 120 units, as specified below.
Lower Division Requirements
Students complete 40 units, including either
both of
An elementary introduction to computing science and computer programming, suitable for students with little or no programming background. Students will learn fundamental concepts and terminology of computing science, acquire elementary skills for programming in a high-level language, e.g. Python. The students will be exposed to diverse fields within, and applications of computing science. Topics will include: pseudocode; data types and control structures; fundamental algorithms; recursion; reading and writing files; measuring performance of algorithms; debugging tools; basic terminal navigation using shell commands. Treatment is informal and programming is presented as a problem-solving tool. Prerequisite: BC Math 12 or equivalent is recommended. Students with credit for CMPT 102, 128, 130 or 166 may not take this course for further credit. Students who have taken CMPT 125, 129, 130 or 135 first may not then take this course for further credit. Quantitative/Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Victor Cheung |
Sep 8 β Dec 7, 2021: Mon, 2:30β4:20 p.m.
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m. |
Burnaby Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Wed, 1:30β2:20 p.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Wed, 1:30β2:20 p.m.
|
Burnaby |
|
D103 |
Sep 8 β Dec 7, 2021: Wed, 3:30β4:20 p.m.
|
Burnaby |
|
D104 |
Sep 8 β Dec 7, 2021: Wed, 3:30β4:20 p.m.
|
Burnaby |
|
D105 |
Sep 8 β Dec 7, 2021: Wed, 3:30β4:20 p.m.
|
Burnaby |
|
D106 |
Sep 8 β Dec 7, 2021: Wed, 4:30β5:20 p.m.
|
Burnaby |
|
D107 |
Sep 8 β Dec 7, 2021: Wed, 4:30β5:20 p.m.
|
Burnaby |
|
D108 |
Sep 8 β Dec 7, 2021: Wed, 4:30β5:20 p.m.
|
Burnaby |
|
Diana Cukierman |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Burnaby |
|
Angelica Lim |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
Angelica Lim |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 1:30β2:20 p.m.
|
Burnaby |
A second course in computing science and programming intended for students studying mathematics, statistics or actuarial science and suitable for students who already have some background in computing science and programming. Topics include: a review of the basic elements of programming: use and implementation of elementary data structures and algorithms; fundamental algorithms and problem solving; basic object-oriented programming and software design; computation and computability and specification and program correctness. Prerequisite: CMPT 102 or CMPT 120, with a minimum grade of C-. Students with credit for CMPT 125 or 135 may not take this course for further credit. Quantitative.
(Students transferring into a math program should contact the math undergraduate advisor if they have already completed equivalent courses.)
or both of
An introduction to computing science and computer programming, using a systems oriented language, such as C or C++. This course introduces basic computing science concepts. Topics will include: elementary data types, control structures, functions, arrays and strings, fundamental algorithms, computer organization and memory management. Prerequisite: BC Math 12 (or equivalent, or any of MATH 100, 150, 151, 154, or 157, with a minimum grade of C-). Students with credit for CMPT 102, 120, 128 or 166 may not take this course for further credit. Students who have taken CMPT 125, 129 or 135 first may not then take this course for further credit. Quantitative/Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
John Edgar |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 10:30β11:20 a.m.
|
Surrey |
|
D101 |
Sep 8 β Dec 7, 2021: Wed, 9:30β10:20 a.m.
|
Surrey |
|
D102 |
Sep 8 β Dec 7, 2021: Tue, 9:30β10:20 a.m.
|
Surrey |
|
D103 |
Sep 8 β Dec 7, 2021: Tue, 10:30β11:20 a.m.
|
Surrey |
|
D104 |
Sep 8 β Dec 7, 2021: Tue, 10:30β11:20 a.m.
|
Surrey |
|
D105 |
Sep 8 β Dec 7, 2021: Tue, 11:30 a.m.β12:20 p.m.
|
Surrey |
|
D106 |
Sep 8 β Dec 7, 2021: Tue, 12:30β1:20 p.m.
|
Surrey |
|
D107 |
Sep 8 β Dec 7, 2021: Tue, 12:30β1:20 p.m.
|
Surrey |
|
D108 |
Sep 8 β Dec 7, 2021: Tue, 1:30β2:20 p.m.
|
Surrey |
A second course in systems-oriented programming and computing science that builds upon the foundation set in CMPT 130 using a systems-oriented language such as C or C++. Topics: a review of the basic elements of programming; introduction to object-oriented programming (OOP); techniques for designing and testing programs; use and implementation of elementary data structures and algorithms; introduction to embedded systems programming. Prerequisite: CMPT 130 with a minimum grade of C-. Students with credit for CMPT 125, 126, or 129 may not take this course for further credit. Quantitative.
and all of
Using a mathematical software package for doing calculations in linear algebra. Development of computer models that analyze and illustrate applications of linear algebra. All calculations and experiments will be done in the Matlab software package. Topics include: large-scale matrix calculations, experiments with cellular automata, indexing, searching and ranking pages on the internet, population models, data fitting and optimization, image analysis, and cryptography. Prerequisite: One of CMPT 102, 120, 126, 128 or 130 and one of MATH 150, 151, 154 or 157 and one of MATH 232 or 240. MATH 232 or 240 can be taken as corequisite. Students in excess of 80 units may not take MACM 203 for further credit. Quantitative.
Using a mathematical software package for doing computations from calculus. Development of computer models that analyze and illustrate applications of calculus. All calculations and experiments will be done in the Maple software package. Topics include: graphing functions and data, preparing visual aids for illustrating mathematical concepts, integration, Taylor series, numerical approximation methods, 3D visualization of curves and surfaces, multi-dimensional optimization, differential equations and disease spread models. Prerequisite: One of CMPT 102, 120, 126, 128 or 130 and MATH 251. MATH 251 can be taken as a corequisite. Students in excess of 80 units may not take MACM 204 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Michael Monagan |
Sep 8 β Dec 7, 2021: Thu, 2:30β3:20 p.m.
|
Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Fri, 2:30β3:20 p.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Fri, 3:30β4:20 p.m.
|
Burnaby |
|
D103 |
Sep 8 β Dec 7, 2021: Fri, 4:30β5:20 p.m.
|
Burnaby |
|
D104 |
Sep 8 β Dec 7, 2021: Fri, 1:30β2:30 p.m.
|
Burnaby |
Rectangular, cylindrical and spherical coordinates. Vectors, lines, planes, cylinders, quadric surfaces. Vector functions, curves, motion in space. Differential and integral calculus of several variables. Vector fields, line integrals, fundamental theorem for line integrals, Green's theorem. Prerequisite: MATH 152 with a minimum grade of C-; or MATH 155 or MATH 158 with a grade of at least B. Recommended: It is recommended that MATH 240 or 232 be taken before or concurrently with MATH 251. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Jamie Mulholland |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
||
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
||
OP01 | TBD | ||
OP02 | TBD | ||
OP03 | TBD |
Vector calculus, divergence, gradient and curl; line, surface and volume integrals; conservative fields, theorems of Gauss, Green and Stokes; general curvilinear coordinates and tensor notation. Introduction to orthogonality of functions, orthogonal polynomials and Fourier series. Prerequisite: MATH 240 or 232, and 251, all with a minimum grade of C-. MATH 240 or 232 may be taken concurrently. Students with credit for MATH 254 may not take MATH 252 for further credit. Quantitative.
First-order differential equations, second- and higher-order linear equations, series solutions, introduction to Laplace transform, systems and numerical methods, applications in the physical, biological and social sciences. Prerequisite: MATH 152 with a minimum grade of C-; or MATH 155 or 158, with a grade of at least B; MATH 232 or 240, with a minimum grade of C-. Students with credit for MATH 310 may not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Natalia Kouzniak |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
D201 |
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m.
|
Surrey |
|
D202 |
Sep 8 β Dec 7, 2021: Wed, 3:30β4:20 p.m.
|
Surrey |
|
D203 |
Sep 8 β Dec 7, 2021: Wed, 4:30β5:20 p.m.
|
Surrey |
|
Justin Gray |
Sep 8 β Dec 7, 2021: Mon, 4:30β5:20 p.m.
Sep 8 β Dec 7, 2021: Wed, 4:30β6:20 p.m. |
Burnaby Burnaby |
|
E101 |
Sep 8 β Dec 7, 2021: Tue, 4:30β5:20 p.m.
|
Burnaby |
|
E102 |
Sep 8 β Dec 7, 2021: Tue, 9:30β10:20 a.m.
|
Burnaby |
|
E103 |
Sep 8 β Dec 7, 2021: Tue, 10:30β11:20 a.m.
|
Burnaby |
|
E104 |
Sep 8 β Dec 7, 2021: Tue, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
E105 |
Sep 8 β Dec 7, 2021: Mon, 6:00β6:50 p.m.
|
Burnaby |
|
E106 |
Sep 8 β Dec 7, 2021: Tue, 5:30β6:20 p.m.
|
Burnaby |
Basic laws of probability, sample distributions. Introduction to statistical inference and applications. Prerequisite: or Corequisite: MATH 152 or 155 or 158, with a minimum grade of C-. Students wishing an intuitive appreciation of a broad range of statistical strategies may wish to take STAT 100 first. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Rachel Altman |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Burnaby |
|
OP01 | TBD |
and one of
Designed for students specializing in mathematics, physics, chemistry, computing science and engineering. Topics as for Math 151 with a more extensive review of functions, their properties and their graphs. Recommended for students with no previous knowledge of Calculus. In addition to regularly scheduled lectures, students enrolled in this course are encouraged to come for assistance to the Calculus Workshop (Burnaby), or Math Open Lab (Surrey). Prerequisite: Pre-Calculus 12 (or equivalent) with a grade of at least B+, or MATH 100 with a grade of at least B-, or achieving a satisfactory grade on the Ά‘ΟγΤ°AV Calculus Readiness Test. Students with credit for either MATH 151, 154 or 157 may not take MATH 150 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Natalia Kouzniak |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m. |
Burnaby Burnaby |
|
Sophie Burrill |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
Sep 8 β Dec 7, 2021: Tue, 8:30β9:20 a.m. |
Burnaby Burnaby |
|
OP01 | TBD | ||
OP02 | TBD |
Designed for students specializing in mathematics, physics, chemistry, computing science and engineering. Logarithmic and exponential functions, trigonometric functions, inverse functions. Limits, continuity, and derivatives. Techniques of differentiation, including logarithmic and implicit differentiation. The Mean Value Theorem. Applications of differentiation including extrema, curve sketching, Newton's method. Introduction to modeling with differential equations. Polar coordinates, parametric curves. Prerequisite: Pre-Calculus 12 (or equivalent) with a grade of at least A, or MATH 100 with a grade of at least B, or achieving a satisfactory grade on the Ά‘ΟγΤ°AV Calculus Readiness Test. Students with credit for either MATH 150, 154 or 157 may not take MATH 151 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Nils Bruin |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
||
OP01 | TBD | ||
OP02 | TBD |
Designed for students specializing in the biological and medical sciences. Topics include: limits, growth rate and the derivative; elementary functions, optimization and approximation methods, and their applications; mathematical models of biological processes. Prerequisite: Pre-Calculus 12 (or equivalent) with a grade of at least B, or MATH 100 with a grade of at least C, or achieving a satisfactory grade on the Ά‘ΟγΤ°AV Calculus Readiness Test. Students with credit for either MATH 150, 151 or 157 may not take MATH 154 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Tom Archibald |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Burnaby |
||
OP01 | TBD | ||
OP02 | TBD |
Designed for students specializing in business or the social sciences. Topics include: limits, growth rate and the derivative; logarithmic, exponential and trigonometric functions and their application to business, economics, optimization and approximation methods; introduction to functions of several variables with emphasis on partial derivatives and extrema. Prerequisite: Pre-Calculus 12 (or equivalent) with a grade of at least B, or MATH 100 with a grade of at least C, or achieving a satisfactory grade on the Ά‘ΟγΤ°AV Calculus Readiness Test. Students with credit for either MATH 150, 151 or 154 may not take MATH 157 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Jonathan Jedwab |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
Luis Goddyn |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
OP01 | TBD | ||
OP02 | TBD |
and one of
Riemann sum, Fundamental Theorem of Calculus, definite, indefinite and improper integrals, approximate integration, integration techniques, applications of integration. First-order separable differential equations and growth models. Sequences and series, series tests, power series, convergence and applications of power series. Prerequisite: MATH 150 or 151, with a minimum grade of C-; or MATH 154 or 157 with a grade of at least B. Students with credit for MATH 155 or 158 may not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Nathan Ilten |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
OP01 | TBD |
Designed for students specializing in the biological and medical sciences. Topics include: the integral, partial derivatives, differential equations, linear systems, and their applications; mathematical models of biological processes. Prerequisite: MATH 150, 151 or 154, with a minimum grade of C-; or MATH 157 with a grade of at least B. Students with credit for MATH 152 or 158 may not take this course for further credit. Quantitative.
Designed for students specializing in business or the social sciences. Topics include: theory of integration, integration techniques, applications of integration; functions of several variables with emphasis on double and triple integrals and their applications; introduction to differential equations with emphasis on some special first-order equations and their applications; sequences and series. Prerequisite: MATH 150 or 151 or 154 or 157, with a minimum grade of C-. Students with credit for MATH 152 or 155 may not take MATH 158 for further credit. Quantitative.
and one of
Linear equations, matrices, determinants. Introduction to vector spaces and linear transformations and bases. Complex numbers. Eigenvalues and eigenvectors; diagonalization. Inner products and orthogonality; least squares problems. An emphasis on applications involving matrix and vector calculations. Prerequisite: MATH 150 or 151 or MACM 101, with a minimum grade of C-; or MATH 154 or 157, both with a grade of at least B. Students with credit for MATH 240 may not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Brenda Davison |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
Seyyed Aliasghar Hosseini |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 3:30β4:20 p.m.
|
Burnaby |
|
OP01 | TBD | ||
OP02 | TBD |
Linear equations, matrices, determinants. Real and abstract vector spaces, subspaces and linear transformations; basis and change of basis. Complex numbers. Eigenvalues and eigenvectors; diagonalization. Inner products and orthogonality; least squares problems. Applications. Subject is presented with an abstract emphasis and includes proofs of the basic theorems. Prerequisite: MATH 150 or 151 or MACM 101, with a minimum grade of C-; or MATH 154 or 157, both with a grade of at least B. Students with credit for MATH 232 cannot take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Katrina Honigs |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
OP01 | TBD |
and at least one of
Introduction to a variety of practical and important data structures and methods for implementation and for experimental and analytical evaluation. Topics include: stacks, queues and lists; search trees; hash tables and algorithms; efficient sorting; object-oriented programming; time and space efficiency analysis; and experimental evaluation. Prerequisite: (MACM 101 and (CMPT 125, CMPT 129 or CMPT 135)) or (ENSC 251 and ENSC 252), all with a minimum grade of C-. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
David Mitchell |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 10:30β11:20 a.m.
|
Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Tue, 10:30β11:20 a.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Tue, 10:30β11:20 a.m.
|
Burnaby |
|
D103 |
Sep 8 β Dec 7, 2021: Tue, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D104 |
Sep 8 β Dec 7, 2021: Tue, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D105 |
Sep 8 β Dec 7, 2021: Tue, 12:30β1:20 p.m.
|
Burnaby |
|
D106 |
Sep 8 β Dec 7, 2021: Tue, 12:30β1:20 p.m.
|
Burnaby |
|
D107 |
Sep 8 β Dec 7, 2021: Tue, 1:30β2:20 p.m.
|
Burnaby |
|
D108 |
Sep 8 β Dec 7, 2021: Tue, 1:30β2:20 p.m.
|
Burnaby |
|
Thomas Shermer |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 10:30β11:20 a.m.
|
Burnaby |
|
D201 |
Sep 8 β Dec 7, 2021: Wed, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D202 |
Sep 8 β Dec 7, 2021: Wed, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D203 |
Sep 8 β Dec 7, 2021: Wed, 12:30β1:20 p.m.
|
Burnaby |
|
D204 |
Sep 8 β Dec 7, 2021: Wed, 12:30β1:20 p.m.
|
Burnaby |
|
D205 |
Sep 8 β Dec 7, 2021: Wed, 1:30β2:20 p.m.
|
Burnaby |
|
D206 |
Sep 8 β Dec 7, 2021: Wed, 1:30β2:20 p.m.
|
Burnaby |
|
D207 |
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m.
|
Burnaby |
|
D208 |
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m.
|
Burnaby |
Fundamental electrical circuit quantities, and circuit elements; circuits laws such as Ohm law, Kirchoff's voltage and current laws, along with series and parallel circuits; operational amplifiers; network theorems; nodal and mesh methods; analysis of natural and step response of first (RC and RL), as well as second order (RLC) circuits; real, reactive and rms power concepts. In addition, the course will discuss the worker safety implications of both electricity and common laboratory practices such as soldering. Prerequisite: (PHYS 121 or PHYS 126 or PHYS 141), ENSC 120, MATH 232 and (MATH 260 or MATH 310), all with a minimum grade of C-. MATH 232 and/or (MATH 260 or MATH 310) may be taken concurrently. Students with credit for MSE 250 or SEE 230 cannot take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Sep 8 β Dec 7, 2021: Tue, 8:30β10:20 a.m.
Sep 8 β Dec 7, 2021: Thu, 8:30β10:20 a.m. |
Burnaby Burnaby |
||
D101 | TBD | ||
LA01 |
Sep 8 β Dec 7, 2021: Mon, 4:30β6:50 p.m.
|
Burnaby |
|
LA02 |
Sep 8 β Dec 7, 2021: Thu, 2:30β4:50 p.m.
|
Burnaby |
|
LA03 |
Sep 8 β Dec 7, 2021: Fri, 9:30β11:50 a.m.
|
Burnaby |
A continuation of MACM 101. Topics covered include graph theory, trees, inclusion-exclusion, generating functions, recurrence relations, and optimization and matching. Prerequisite: MACM 101 or (ENSC 251 and one of MATH 232 or MATH 240). Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Jamie Mulholland |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
Amarpreet Rattan |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
OP01 | TBD | ||
OP02 | TBD |
This course will cover the following topics: fundamental electrical circuit quantities, and circuit elements; circuits laws such as Ohm law, Kirchoff's voltage and current laws, along with series and parallel circuits; operational amplifiers; network theorems; nodal and mesh methods; analysis of natural and step response of first (RC and RL), as well as second order (RLC) circuits; real, reactive and rms power concepts. In addition, the course will discuss the worker safety implications of both electricity and common laboratory practices such as soldering. Prerequisite: PHYS 141 or (PHYS 121 and 131), and MATH 232 and (MATH 260 or MATH 310). (MATH 260 or MATH 310) may be taken concurrently. Students with credit for SEE 230 or ENSC 220 may not take MSE 250 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Ahmad Rad |
Sep 8 β Dec 7, 2021: Mon, 10:30β11:20 a.m.
Sep 8 β Dec 7, 2021: Thu, 10:30 a.m.β12:20 p.m. |
Surrey Surrey |
|
D101 |
Sep 8 β Dec 7, 2021: Mon, 9:30β10:20 a.m.
|
Surrey |
|
LAB1 |
Sep 8 β Dec 7, 2021: Tue, 4:30β7:20 p.m.
|
Surrey |
|
LAB2 |
Sep 8 β Dec 7, 2021: Wed, 4:30β7:20 p.m.
|
Surrey |
|
LAB3 |
Sep 8 β Dec 7, 2021: Fri, 4:30β7:20 p.m.
|
Surrey |
An intermediate mechanics course covering kinematics, dynamics, calculus of variations and Lagrange's equations, non-inertial reference frames, central forces and orbits, and rigid body motion. Prerequisite: MATH 251; MATH 232 or MATH 240; PHYS 255 or ENSC 380. All prerequisite courses require a minimum grade of C-. Recommended Corequisite: MATH 260 or MATH 310. Quantitative.
The concepts of quantum mechanics introduced through two-level systems and explored in a way that requires only familiarity with general concepts of linear algebra. Introduction to concepts in classical and quantum information theory, bits and qubits, quantum dynamics, quantum communication and cryptography, and quantum circuits. Prerequisite: Either MATH 232 or MATH 240, with a minimum grade of C-. Quantitative.
This course is a continuation of STAT 270. Review of probability models. Procedures for statistical inference using survey results and experimental data. Statistical model building. Elementary design of experiments. Regression methods. Introduction to categorical data analysis. Prerequisite: STAT 270 and one of MATH 152, MATH 155, or MATH 158, all with a minimum grade of C-. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Joan Hu |
Sep 8 β Dec 7, 2021: Mon, 12:30β2:20 p.m.
Sep 8 β Dec 7, 2021: Wed, 12:30β1:20 p.m. |
Burnaby Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Thu, 3:30β4:20 p.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Thu, 4:30β5:20 p.m.
|
Burnaby |
and an additional six units from the Faculty of Science outside of the departments of Mathematics and Statistics and Actuarial Science and excluding PHYS 100, BISC 100 and CHEM 110/111.
* strongly recommended
** with a B grade or better
+ The following substitutions are also permitted. They may not be used to satisfy the upper division requirements below. MACM 409 - Numerical Linear Algebra: Algorithms, Implementation and Applications (3) for MACM 203. MACM 401 - Introduction to Computer Algebra (3) for MACM 204. MACM 442 - Cryptography (3) for MACM 204.
Upper Division Requirements
Students complete 48 units, including all of
A presentation of the problems commonly arising in numerical analysis and scientific computing and the basic methods for their solutions. Prerequisite: MATH 152 or 155 or 158, and MATH 232 or 240, and computing experience. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Ralf Wittenberg |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Wed, 3:30β4:20 p.m.
|
Burnaby |
|
D103 |
Sep 8 β Dec 7, 2021: Wed, 4:30β5:20 p.m.
|
Burnaby |
|
D104 |
Sep 8 β Dec 7, 2021: Thu, 9:30β10:20 a.m.
|
Burnaby |
|
D105 |
Sep 8 β Dec 7, 2021: Thu, 10:30β11:20 a.m.
|
Burnaby |
|
D106 |
Sep 8 β Dec 7, 2021: Thu, 11:30 a.m.β12:20 p.m.
|
Burnaby |
Fourier series, ODE boundary and eigenvalue problems. Separation of variables for the diffusion wave and Laplace/Poisson equations. Polar and spherical co-ordinate systems. Symbolic and numerical computing, and graphics for PDEs. Prerequisite: MATH 260 or MATH 310, with a minimum grade of C-; and one of MATH 251 with a grade of B+, or one of MATH 252 or 254, with a minimum grade of C-. Quantitative.
Functions of a complex variable, differentiability, contour integrals, Cauchy's theorem, Taylor and Laurent expansions, method of residues. Prerequisite: MATH 251 with a minimum grade of C-. Students with credit for MATH 424 may not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Tom Archibald |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 1:30β2:20 p.m.
|
Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Thu, 12:30β1:20 p.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Thu, 1:30β2:20 p.m.
|
Burnaby |
|
D103 |
Sep 8 β Dec 7, 2021: Thu, 11:30 a.m.β12:20 p.m.
|
Burnaby |
First-order linear equations, the method of characteristics. The wave equation. Harmonic functions, the maximum principle, Green's functions. The heat equation. Distributions and transforms. Higher dimensional eigenvalue problems. An introduction to nonlinear equations. Burgers' equation and shock waves. Prerequisite: (MATH 260 or MATH 310) and one of MATH 314, MATH 320, MATH 322, PHYS 384, all with a minimum grade of C-. An alternative to the above prerequisite is both of (MATH 252 or MATH 254) and (MATH 260 or MATH 310), both with grades of at least A-. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Razvan Fetecau |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
Students will develop skills required for mathematical research. This course will focus on communication in both written and oral form. Students will write documents and prepare presentations in a variety of formats for academic and non-academic purposes. The LaTeX document preparation system will be used. Course will be given on a pass/fail basis. Corequisite: MATH 499W. Students must have an approved project prior to enrollment.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Jonathan Jedwab |
Sep 8 β Dec 7, 2021: Thu, 12:30β2:20 p.m.
|
Burnaby |
An honours research project in mathematics is an original presentation of an area or problem in mathematics. A typical project is an original synthesis of knowledge generated from students research experience. A project can contain substantive, original mathematics, but need not. The presentation consists of a written report and an oral presentation both of which must be completed before the end of the exam period. Prerequisite: 18 units of upper division MATH or MACM courses. Must be in an honours program with a GPA of at least 3.0. Corequisite: MATH 498. Students must have an approved project prior to enrollment. Writing.
Section | Instructor | Day/Time | Location |
---|---|---|---|
TBD |
and at least one of
Linear programming modelling. The simplex method and its variants. Duality theory. Post-optimality analysis. Applications and software. Additional topics may include: game theory, network simplex algorithm, and convex sets. Prerequisite: MATH 150, 151, 154, or 157 and MATH 240 or 232, all with a minimum grade of C-. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Abraham Punnen |
Sep 8 β Dec 7, 2021: Mon, 2:30β4:20 p.m.
Sep 8 β Dec 7, 2021: Wed, 2:30β3:20 p.m. |
Surrey Surrey |
|
D101 |
Sep 8 β Dec 7, 2021: Thu, 3:30β4:20 p.m.
|
Surrey |
|
D102 |
Sep 8 β Dec 7, 2021: Thu, 9:30β10:20 a.m.
|
Surrey |
Theoretical and computational methods for investigating the minimum of a function of several real variables with and without inequality constraints. Applications to operations research, model fitting, and economic theory. Prerequisite: MATH 232 or 240, and 251, all with a minimum grade of C-. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
JF Williams |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Tue, 12:30β1:20 p.m.
|
Burnaby |
|
D102 |
Sep 8 β Dec 7, 2021: Tue, 1:30β2:20 p.m.
|
Burnaby |
and at least two of
Development of numerical methods for solving linear algebra problems at the heart of many scientific computing problems. Mathematical foundations for the use, implementation and analysis of the algorithms used for solving many optimization problems and differential equations. Prerequisite: MATH 251, MACM 316, programming experience. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Ben Adcock |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Burnaby |
An introduction to probability from the rigorous point of view. Random variables. Generating functions. Convergence of random variables. The strong law of large numbers and the central limit theorem. Stochastic processes. Stationary process and martingales. Prerequisite: MATH 242 and (MATH 348 or STAT 380), all with a minimum grade of C-.
Incompressible fluid flow phenomena: kinematics and equations of motion, viscous flow and boundary layer theory, potential flow, water waves. Aerodynamics. Prerequisite: One of MATH 314, MATH 418, PHYS 384, with a minimum grade of C-. An alternative to the above prerequisite is both of MATH 251 and (MATH 260 or MATH 310), both with grades of at least B+. Quantitative.
Stability and bifurcation in continuous and discrete dynamical systems, with applications. The study of the local and global behaviour of linear and nonlinear systems, including equilibria and periodic orbits, phase plane analysis, conservative systems, limit cycles, the Poincare-Bendixson theorem, Hopf bifurcation and an introduction to chaos. Prerequisite: MATH 310 with a minimum grade of C-. Quantitative.
An exploration of the mathematics of data science. Analysis of the foundations of algorithms currently used in the field. Potential topics to be covered include: machine learning, compressed sensing, clustering, randomized numerical linear algebra, complex networks and random graph models. Students may repeat this course for further credit under a different topic. Prerequisite: MATH 242, MATH 240 or MATH 232 and STAT 270, all with a minimum grade of C-.
The topics included in this course will vary from term to term depending on faculty availability and student interest. Prerequisite: Will be specified according to the particular topic or topics offered under this course number.
and at least 18 more upper division units, of which at least three must be chosen from the 400 level. These 18 units may be selected from any upper division MATH or MACM courses or from
Covers advanced topics in geometric modelling and processing for computer graphics, such as Bezier and B-spline techniques, subdivision curves and surfaces, solid modelling, implicit representation, surface reconstruction, multi-resolution modelling, digital geometry processing (e.g. mesh smoothing, compression, and parameterization), point-based representation, and procedural modelling. Prerequisite: CMPT 361, MACM 316, both with a minimum grade of C-. Students with credit for CMPT 469 between 2003 and 2007 or equivalent may not take this course for further credit.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Richard Zhang |
Sep 8 β Dec 7, 2021: Tue, 10:30 a.m.β12:20 p.m.
Sep 8 β Dec 7, 2021: Fri, 10:30β11:20 a.m. |
Burnaby Burnaby |
Computer-based approaches to solving complex physical problems. Includes topics such as Monte-Carlo and molecular dynamics techniques applied to thermal properties of materials; dynamical behavior of systems, including chaotic motion; methods for ground state determination and optimization, including Newton-Raphson, simulated annealing, neural nets, and genetic algorithms: symplectic methods; and analysis of numerical data. Prerequisite: MATH 260 or MATH 310; PHYS 255; CMPT 120 or equivalent. All prerequisite courses require a minimum grade of C-. Quantitative.
Central forces, rigid body motion, small oscillations. Lagrangian and Hamiltonian formulations of mechanics. Prerequisite: PHYS 384, with a minimum grade of C- or permission of the department. Non-physics majors may enter with MATH 252; MATH 260 or MATH 310; PHYS 211. All prerequisite courses require a minimum grade of C-. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Igor Herbut |
Sep 8 β Dec 7, 2021: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D101 |
Sep 8 β Dec 7, 2021: Mon, 3:30β4:20 p.m.
|
Burnaby |
Review of discrete and continuous probability models and relationships between them. Exploration of conditioning and conditional expectation. Markov chains. Random walks. Continuous time processes. Poisson process. Markov processes. Gaussian processes. Prerequisite: STAT 330, or all of: STAT 285, MATH 208W, and MATH 251, all with a minimum grade of C-. Quantitative.
NOTE: Ά‘ΟγΤ°AV students accepted in the accelerated master’s within the Department of Mathematics may apply a maximum of 10 graduate course units, taken while completing the bachelor's degree, towards the upper division electives of the bachelor's program and the requirements of the master's degree. For more information go to: /gradstudies/apply/programs/accelerated-masters.html.
Other Requirements
At least 60 of the units must be at the upper division. A cumulative grade point average (CGPA) of at least 3.00 and an upper division grade point average of at least 3.00 are required. These averages are computed on all courses completed at the University. If both averages are at least 3.50, the designation βfirst classβ applies.
University Honours Degree Requirements
Students must also satisfy University degree requirements for degree completion.
Writing, Quantitative, and Breadth Requirements
Students admitted to Ά‘ΟγΤ°AV beginning in the fall 2006 term must meet writing, quantitative and breadth requirements as part of any degree program they may undertake. See Writing, Quantitative, and Breadth Requirements for university-wide information.
WQB Graduation Requirements
A grade of C- or better is required to earn W, Q or B credit
Requirement |
Units |
Notes | |
W - Writing |
6 |
Must include at least one upper division course, taken at Ά‘ΟγΤ°AV within the studentβs major subject | |
Q - Quantitative |
6 |
Q courses may be lower or upper division | |
B - Breadth |
18 |
Designated Breadth | Must be outside the studentβs major subject, and may be lower or upper division 6 units Social Sciences: B-Soc 6 units Humanities: B-Hum 6 units Sciences: B-Sci |
6 |
Additional Breadth | 6 units outside the studentβs major subject (may or may not be B-designated courses, and will likely help fulfil individual degree program requirements) Students choosing to complete a joint major, joint honours, double major, two extended minors, an extended minor and a minor, or two minors may satisfy the breadth requirements (designated or not designated) with courses completed in either one or both program areas. |
Μύ
Residency Requirements and Transfer Credit
- At least half of the program's total units must be earned through Ά‘ΟγΤ°AV study.
- At least two thirds of the program's total upper division units must be earned through Ά‘ΟγΤ°AV study.
Elective Courses
In addition to the courses listed above, students should consult an academic advisor to plan the remaining required elective courses.