Ά‘ΟγΤ°AV Calendar | Spring 2016
Geographic Information Science Honours
The School of Computing Science and the Department of Geography offer an honours program leading to a bachelor of science (BSc) degree.
Ά‘ΟγΤ°AV Requirements
Entry is via direct admission from high school, direct transfer from a recognized post-secondary institution, or internal transfer from within Ά‘ΟγΤ°AV. Ά‘ΟγΤ°AV is competitive. A separate admission average for each entry route is established each term depending on available spaces and subject to the approval of the dean of applied sciences.
Ά‘ΟγΤ°AV averages and calculations for direct program admission (from high school or post-secondary) are the same as the major program. Internal transfers are assessed on the lower division requirements grade poinnt average (see below). Only Ά‘ΟγΤ°AV courses are used in GPA calculation. Grades from all course attempts (including repeats) are used equally to calculate the average.
Apply anytime after at least 18 Ά‘ΟγΤ°AV lower division units (100 or 200 division courses) are completed, and all 100 division requirements (completed at either Ά‘ΟγΤ°AV or a BC community college) have been satisfied.
Ά‘ΟγΤ°AV, continuation and graduation are contingent upon maintaining 3.00 or better on all relevant grade point averages (cumulative GPA, upper division GPA, computing science GPA, computing science upper division GPA, geography GPA, geography upper division GPA).
Program Requirements
Lower Division Requirements
Students complete a total of 48-52 lower division units including all 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 either (CMPT 125 and 127) or CMPT 135) or (ENSC 251 and ENSC 252). Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Burnaby |
|
D101 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Tue, 9:30β10:20 a.m.
|
Burnaby |
D102 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Tue, 10:30β11:20 a.m.
|
Burnaby |
D103 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Tue, 11:30 a.m.β12:20 p.m.
|
Burnaby |
D104 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Tue, 12:30β1:20 p.m.
|
Burnaby |
D105 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Wed, 10:30β11:20 a.m.
|
Burnaby |
D106 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Wed, 11:30 a.m.β12:20 p.m.
|
Burnaby |
D107 |
Geoffrey Tien |
Jan 5 β Apr 11, 2016: Wed, 12:30β1:20 p.m.
|
Burnaby |
An overview of various techniques used for software development and software project management. Major tasks and phases in modern software development, including requirements, analysis, documentation, design, implementation, testing,and maintenance. Project management issues are also introduced. Students complete a team project using an iterative development process. Prerequisite: One W course, CMPT 225, (MACM 101 or (ENSC 251 and ENSC 252)) and (MATH 151 or MATH 150). MATH 154 or MATH 157 with at least a B+ may be substituted for MATH 151 or MATH 150. Students with credit for CMPT 275 may not take this course for further credit.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Bobby Chan |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
Ted Kirkpatrick |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 3:30β4:20 p.m.
|
Surrey |
The curriculum introduces students to topics in computer architecture that are considered fundamental to an understanding of the digital systems underpinnings of computer systems. Prerequisite: MACM 101- Discrete Mathematics I and CMPT 125- Introduction to Computing Science and Programming II and CMPT 127- Computing Laboratory or CMPT 135- Introduction to Computer Programming II. Students with credits for CMPT 150 or 250 may not take this course for further credit.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Anthony Dixon |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 1:30β2:20 p.m.
|
Burnaby |
|
D101 |
Anthony Dixon |
Jan 5 β Apr 11, 2016: Thu, 10:30β11:20 a.m.
|
Burnaby |
D102 |
Anthony Dixon |
Jan 5 β Apr 11, 2016: Thu, 11:30 a.m.β12:20 p.m.
|
Burnaby |
D103 |
Anthony Dixon |
Jan 5 β Apr 11, 2016: Thu, 12:30β1:20 p.m.
|
Burnaby |
D104 |
Anthony Dixon |
Jan 5 β Apr 11, 2016: Thu, 1:30β2:20 p.m.
|
Burnaby |
D105 |
Anthony Dixon |
Jan 5 β Apr 11, 2016: Thu, 2:30β3:20 p.m.
|
Burnaby |
D106 |
Anthony Dixon |
Jan 5 β Apr 11, 2016: Thu, 3:30β4:20 p.m.
|
Burnaby |
A survey of how humans shape their world, considered from spatial and environmental perspectives. Themes include population, culture, resources, livelihood, cities. Breadth-Social Sciences.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Ivor Winton |
Jan 5 β Apr 11, 2016: Mon, 2:30β4:20 p.m.
Jan 5 β Apr 11, 2016: Wed, 2:30β3:20 p.m. |
Burnaby Burnaby |
|
Gretchen Ferguson Hernandez |
Jan 5 β Apr 11, 2016: Wed, 4:30β7:20 p.m.
|
Surrey |
An introduction to landforms, climates, soils and vegetation; their origins, distributions, interrelationships and roles in the ecosystem. Laboratory work and field trips are included. Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Faran Ali |
Jan 5 β Apr 11, 2016: Tue, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Tue, 12:30β2:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
|
Burnaby |
|
D104 |
Jan 5 β Apr 11, 2016: Wed, 8:30β10:20 a.m.
|
Burnaby |
|
D105 |
Jan 5 β Apr 11, 2016: Wed, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D106 |
Jan 5 β Apr 11, 2016: Wed, 12:30β2:20 p.m.
|
Burnaby |
|
D107 |
Jan 5 β Apr 11, 2016: Wed, 4:30β6:20 p.m.
|
Burnaby |
|
D108 |
Jan 5 β Apr 11, 2016: Thu, 12:30β2:20 p.m.
|
Burnaby |
|
D109 |
Jan 5 β Apr 11, 2016: Thu, 2:30β4:20 p.m.
|
Burnaby |
|
D110 |
Jan 5 β Apr 11, 2016: Fri, 8:30β10:20 a.m.
|
Burnaby |
|
D111 |
Jan 5 β Apr 11, 2016: Fri, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D112 |
Jan 5 β Apr 11, 2016: Fri, 12:30β2:20 p.m.
|
Burnaby |
|
D113 |
Jan 5 β Apr 11, 2016: Fri, 2:30β4:20 p.m.
|
Burnaby |
|
Michele Wiens |
Jan 5 β Apr 11, 2016: Mon, 5:30β7:20 p.m.
|
Surrey |
|
D201 |
Jan 5 β Apr 11, 2016: Mon, 7:30β9:20 p.m.
|
Surrey |
|
D202 |
Jan 5 β Apr 11, 2016: Tue, 12:30β2:20 p.m.
|
Surrey |
An introduction to the theory and practice of remote sensing, including the relevant physical processes, digital image processing and information extraction, and a review of remote sensing applications. Prerequisite: GEOG 111. Quantitative/Breadth-Science.
A basic overview of Geographical Information Systems and Science; GIS software, hardware, data structures and models; spatial data, operations and algorithms; practical applications and limitations. Prerequisite: GEOG 100 or 111 or permission of instructor. Students with credit for GEOG 354 may not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Paul Zandbergen |
Jan 5 β Apr 11, 2016: Tue, 12:30β2:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Wed, 8:30β10:20 a.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Thu, 10:30 a.m.β12:20 p.m.
|
Burnaby |
Introduction to counting, induction, automata theory, formal reasoning, modular arithmetic. Prerequisite: BC Math 12 (or equivalent), or any of MATH 100, 150, 151, 154, 157. Quantitative/Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Brad Bart |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 10:30β11:20 a.m.
|
Burnaby |
|
D101 |
Brad Bart |
Jan 5 β Apr 11, 2016: Tue, 1:30β2:20 p.m.
|
Burnaby |
D102 |
Brad Bart |
Jan 5 β Apr 11, 2016: Tue, 2:30β3:20 p.m.
|
Burnaby |
D103 |
Brad Bart |
Jan 5 β Apr 11, 2016: Tue, 3:30β4:20 p.m.
|
Burnaby |
D104 |
Brad Bart |
Jan 5 β Apr 11, 2016: Tue, 4:30β5:20 p.m.
|
Burnaby |
D105 |
Brad Bart |
Jan 5 β Apr 11, 2016: Wed, 2:30β3:20 p.m.
|
Burnaby |
D106 |
Brad Bart |
Jan 5 β Apr 11, 2016: Wed, 3:30β4:20 p.m.
|
Burnaby |
D107 |
Brad Bart |
Jan 5 β Apr 11, 2016: Wed, 4:30β5:20 p.m.
|
Burnaby |
Brad Bart |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 1:30β2:20 p.m.
|
Burnaby |
|
D201 |
Brad Bart |
Jan 5 β Apr 11, 2016: Thu, 9:30β10:20 a.m.
|
Burnaby |
D202 |
Brad Bart |
Jan 5 β Apr 11, 2016: Thu, 10:30β11:20 a.m.
|
Burnaby |
D203 |
Brad Bart |
Jan 5 β Apr 11, 2016: Thu, 1:30β2:20 p.m.
|
Burnaby |
D204 |
Brad Bart |
Jan 5 β Apr 11, 2016: Thu, 2:30β3:20 p.m.
|
Burnaby |
D205 |
Brad Bart |
Jan 5 β Apr 11, 2016: Thu, 3:30β4:20 p.m.
|
Burnaby |
D206 |
Brad Bart |
Jan 5 β Apr 11, 2016: Fri, 9:30β10:20 a.m.
|
Burnaby |
D207 |
Brad Bart |
Jan 5 β Apr 11, 2016: Fri, 10:30β11:20 a.m.
|
Burnaby |
Steve Pearce |
Jan 5 β Apr 11, 2016: Tue, 10:30β11:20 a.m.
Jan 5 β Apr 11, 2016: Thu, 9:30β11:20 a.m. |
Surrey Surrey |
|
D301 |
Steve Pearce |
Jan 5 β Apr 11, 2016: Wed, 2:30β3:20 p.m.
|
Surrey |
D302 |
Steve Pearce |
Jan 5 β Apr 11, 2016: Wed, 3:30β4:20 p.m.
|
Surrey |
D303 |
Steve Pearce |
Jan 5 β Apr 11, 2016: Wed, 4:30β5:20 p.m.
|
Surrey |
D304 |
Steve Pearce |
Jan 5 β Apr 11, 2016: Wed, 5:30β6:20 p.m.
|
Surrey |
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 |
---|---|---|---|
Karen Yeats |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
Abraham Punnen |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Surrey |
|
OPO1 | TBD | ||
OP02 | TBD |
and either all 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 and be exposed to diverse fields within, and applications of computing science. Topics will include: pseudocode, data types and control structures, fundamental algorithms, computability and complexity, computer architecture, and history of computing science. 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, 125, 126, 128 or 130 may not take this course for further credit. Quantitative/Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Anne Lavergne |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
Jan 5 β Apr 11, 2016: Thu, 2:30β3:20 p.m. |
Burnaby Burnaby |
|
D101 |
Anne Lavergne |
Jan 5 β Apr 11, 2016: Wed, 11:30 a.m.β12:20 p.m.
|
Burnaby |
D102 |
Anne Lavergne |
Jan 5 β Apr 11, 2016: Wed, 11:30 a.m.β12:20 p.m.
|
Burnaby |
D103 |
Anne Lavergne |
Jan 5 β Apr 11, 2016: Wed, 12:30β1:20 p.m.
|
Burnaby |
D104 |
Anne Lavergne |
Jan 5 β Apr 11, 2016: Wed, 12:30β1:20 p.m.
|
Burnaby |
D105 |
Anne Lavergne |
Jan 5 β Apr 11, 2016: Wed, 1:30β2:20 p.m.
|
Burnaby |
D106 |
Anne Lavergne |
Jan 5 β Apr 11, 2016: Wed, 1:30β2:20 p.m.
|
Burnaby |
A rigorous introduction to computing science and computer programming, suitable for students who already have some background in computing science and programming. Intended for students who will major in computing science or a related program. Topics include: fundamental algorithms; elements of empirical and theoretical algorithmics; abstract data types and elementary data structures; basic object-oriented programming and software design; computation and computability; specification and program correctness; and history of computing science. Prerequisite: CMPT120. Co-requisite: CMPT127. Students with credit for CMPT 126, 135 or CMPT 200 or higher may not take for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Bobby Chan |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 3:30β4:20 p.m.
|
Burnaby |
Builds on CMPT 120 to give a hands-on introduction to programming in C and C++, the basics of program design, essential algorithms and data structures. Guided labs teach the standard tools and students exploit these ideas to create software that works. To be taken in parallel with CMPT 125. Prerequisite: CMPT 120 or CMPT 128 or CMPT 130. Corequisite CMPT 125.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Richard Vaughan |
Jan 5 β Apr 11, 2016: Tue, 9:30 a.m.β12:20 p.m.
|
Burnaby |
|
Richard Vaughan |
Jan 5 β Apr 11, 2016: Tue, 12:30β3:20 p.m.
|
Burnaby |
|
Richard Vaughan |
Jan 5 β Apr 11, 2016: Tue, 3:30β6:20 p.m.
|
Burnaby |
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). Students with credit for CMPT 102, 120, 126, or 128 may not take this course for further credit. Quantitative/Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Karol Swietlicki |
Jan 5 β Apr 11, 2016: Mon, Wed, 8:30β9:20 a.m.
Jan 5 β Apr 11, 2016: Fri, 8:30β9:20 a.m. |
Surrey Surrey |
|
D101 |
Karol Swietlicki |
Jan 5 β Apr 11, 2016: Wed, 9:30β10:20 a.m.
|
Surrey |
D102 |
Karol Swietlicki |
Jan 5 β Apr 11, 2016: Wed, 10:30β11:20 a.m.
|
Surrey |
D103 |
Karol Swietlicki |
Jan 5 β Apr 11, 2016: Wed, 11:30 a.m.β12:20 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. Students with credit for CMPT 125 or 126 may not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Scott Kristjanson |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 10:30β11:20 a.m.
|
Surrey |
|
D101 |
Scott Kristjanson |
Jan 5 β Apr 11, 2016: Mon, 11:30 a.m.β12:20 p.m.
|
Surrey |
D102 |
Scott Kristjanson |
Jan 5 β Apr 11, 2016: Mon, 12:30β1:20 p.m.
|
Surrey |
D103 |
Scott Kristjanson |
Jan 5 β Apr 11, 2016: Mon, 1:30β2:20 p.m.
|
Surrey |
and one of
An examination of landforms, processes, laws, and theories of development; types and distributions. Prerequisite: GEOG 111 or EASC 101. Quantitative/Breadth-Science.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Christina Neudorf |
Jan 5 β Apr 11, 2016: Thu, 12:30β2:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Mon, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Mon, 12:30β2:20 p.m.
|
Burnaby |
An examination of the basic principles and processes governing the Earth's weather and climate. Topics include: radiation, greenhouse effect, clouds, precipitation, atmospheric circulation, mid-latitude cyclones, tropical storms, climate change. Prerequisite: GEOG 111. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Khaled Hamdam |
Jan 5 β Apr 11, 2016: Thu, 8:30β10:20 a.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Thu, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Thu, 2:30β4:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Thu, 4:30β6:20 p.m.
|
Burnaby |
An examination of the abiotic and biotic factors that control the distribution and development of plant communities, including climatic and geological change. Prerequisite: GEOG 111. Students with credit for BISC 204 may not take this course for further credit.
Section | Instructor | Day/Time | Location |
---|---|---|---|
AndrΓ©s Varhola |
Jan 5 β Apr 11, 2016: Mon, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Mon, 12:30β2:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Wed, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Wed, 2:30β4:20 p.m.
|
Burnaby |
and one of
The basic concepts of economic geography, involving consideration of the spatial organization and development of economic and resource based systems. Prerequisite: GEOG 100. Breadth-Social Sciences.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Roger Hayter |
Jan 5 β Apr 11, 2016: Thu, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Thu, 12:30β1:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Thu, 2:30β3:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Thu, 3:30β4:20 p.m.
|
Burnaby |
Systematic consideration of the spatial and environmental bases of societies, in historical and cultural perspective. Prerequisite: GEOG 100. Breadth-Social Sciences.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Paul Kingsbury |
Jan 5 β Apr 11, 2016: Thu, 2:30β4:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Thu, 4:30β5:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Fri, 10:30β11:20 a.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
This course will introduce basic concepts in the study of urban geography by systematically identifying and examining major components of urban structure. Prerequisite: GEOG 100 or 102 or 30 units. Breadth-Social Sciences.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Eugene McCann |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Tue, 4:30β5:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Wed, 11:30 a.m.β12:20 p.m.
|
Burnaby |
and one of
An introduction to basic quantitative techniques for the collection of geographic data. Topics include describing data, gathering samples, theoretical distributions, linking samples and populations, testing significance, and exploring spatial relationships all within practical, real-world application contexts. Prerequisite: GEOG 100 or 111. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Shivanand Balram |
Jan 5 β Apr 11, 2016: Mon, 2:30β4:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Fri, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Fri, 12:30β2:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Fri, 2:30β4:20 p.m.
|
Burnaby |
Basic laws of probability, sample distributions. Introduction to statistical inference and applications. Corequisite: MATH 152 or 155 or 158. 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 |
---|---|---|---|
Distance Education | |||
Tim Swartz |
Jan 5 β Apr 11, 2016: Mon, Wed, 9:30β10:20 a.m.
Jan 5 β Apr 11, 2016: Fri, 9:30β10:20 a.m. |
Burnaby Burnaby |
|
Derek Bingham |
Jan 5 β Apr 11, 2016: Tue, 8:30β10:20 a.m.
Jan 5 β Apr 11, 2016: Thu, 8:30β9:20 a.m. |
Surrey Surrey |
|
OP01 | TBD | ||
OP09 | 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 |
---|---|---|---|
Distance Education | |||
Justin Gray |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 8:30β9:20 a.m.
Jan 5 β Apr 11, 2016: Tue, 8:30β9:20 a.m. |
Burnaby Burnaby |
|
Jeremy Chiu |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
Jan 5 β Apr 11, 2016: Wed, 1:30β2:20 p.m. |
Surrey Surrey |
|
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.
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 |
---|---|---|---|
Petr Lisonek |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
OP01 | 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; functions of several variables. 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 |
---|---|---|---|
Weiran Sun |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
Natalia Kouzniak |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Surrey |
|
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; 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 |
---|---|---|---|
Brenda Davison |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
Veselin Jungic |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Surrey |
|
OP01 | TBD | ||
OP02 | 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; 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.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Luis Goddyn |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 8:30β9:20 a.m.
|
Burnaby |
|
Natalia Kouzniak |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 9:30β10:20 a.m.
|
Surrey |
|
OP01 | TBD | ||
OP02 | TBD |
Theory of integration and its applications; introduction to multivariable calculus with emphasis on partial derivatives and their applications; introduction to differential equations with emphasis on some special first-order equations and their applications to economics and social sciences; continuous probability models; sequences and series. Prerequisite: MATH 150 or 151 or 154 or 157. Students with credit for MATH 152 or 155 may not take MATH 158 for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Luis Goddyn |
Jan 5 β Apr 11, 2016: Mon, 4:30β5:20 p.m.
Jan 5 β Apr 11, 2016: Wed, 4:30β6:20 p.m. |
Burnaby Burnaby |
|
OP01 | TBD |
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; or MATH 154 or 157, both with a grade of at least B. Students with credit for MATH 240 make not take this course for further credit. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Marni Julie Mishna |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
JF Williams |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 2:30β3:20 p.m.
|
Surrey |
|
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; 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 |
---|---|---|---|
Michael Monagan |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
OPO1 | TBD |
β with a grade of B+ or better and permission of the School of Computing Science
Upper Division Requirements
Students complete a total of 58 upper division units including all of
This course aims to give the student an understanding of what a modern operating system is, and the services it provides. It also discusses some basic issues in operating systems and provides solutions. Topics include multiprogramming, process management, memory management, and file systems. Prerequisite: CMPT 225 and (MACM 101 or (ENSC 251 and ENSC 252)).
Section | Instructor | Day/Time | Location |
---|---|---|---|
Arrvindh Shriraman |
Jan 5 β Apr 11, 2016: Wed, 1:30β2:20 p.m.
Jan 5 β Apr 11, 2016: Fri, 12:30β2:20 p.m. |
Surrey Surrey |
|
Steve Pearce |
Jan 5 β Apr 11, 2016: Tue, 5:30β8:20 p.m.
|
Burnaby |
Analysis and design of data structures for lists, sets, trees, dictionaries, and priority queues. A selection of topics chosen from sorting, memory management, graphs and graph algorithms. Prerequisite: CMPT 225, MACM 201, MATH 151 (or MATH 150), and MATH 232 or 240.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Pavol Hell |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
Jan 5 β Apr 11, 2016: Thu, 2:30β3:20 p.m. |
Burnaby Burnaby |
Logical representations of data records. Data models. Studies of some popular file and database systems. Document retrieval. Other related issues such as database administration, data dictionary and security. Prerequisite: CMPT 225, and (MACM 101 or (ENSC 251 and ENSC 252)).
Section | Instructor | Day/Time | Location |
---|---|---|---|
Bobby Chan |
Jan 5 β Apr 11, 2016: Wed, 5:30β8:20 p.m.
|
Burnaby |
This course provides an introduction to the fundamentals of computer graphics. Topics include graphics display and interaction hardware, basic algorithms for 2D primitives, anti-aliasing, 2D and 3D geometrical transformations, 3D projections/viewing, Polygonal and hierarchical models, hidden-surface removal, basic rendering techniques (color, shading, raytracing, radiosity), and interaction techniques. Prerequisite: CMPT 225 and MATH 232 or 240.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Thomas Shermer |
Jan 5 β Apr 11, 2016: Wed, 1:30β2:20 p.m.
Jan 5 β Apr 11, 2016: Fri, 12:30β2:20 p.m. |
Burnaby Burnaby |
An advanced course on database systems which covers crash recovery, concurrency control, transaction processing, distributed database systems as the core material and a set of selected topics based on the new developments and research interests, such as object-oriented data models and systems, extended relational systems, deductive database systems, and security and integrity. Prerequisite: CMPT 300 and 354.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Ke Wang |
Jan 5 β Apr 11, 2016: Tue, 10:30β11:20 a.m.
Jan 5 β Apr 11, 2016: Thu, 9:30β11:20 a.m. |
Burnaby Burnaby |
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 |
---|---|---|---|
Steven Ruuth |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 12:30β1:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Tue, 9:30β10:20 a.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Tue, 10:30β11:20 a.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Tue, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D104 |
Jan 5 β Apr 11, 2016: Thu, 9:30β10:20 a.m.
|
Burnaby |
|
D105 |
Jan 5 β Apr 11, 2016: Thu, 10:30β11:20 a.m.
|
Burnaby |
|
D106 |
Jan 5 β Apr 11, 2016: Thu, 11:30 a.m.β12:20 p.m.
|
Burnaby |
|
D107 |
Jan 5 β Apr 11, 2016: Tue, 4:30β5:20 p.m.
|
Burnaby |
and three of
Elements of cartographic analysis, design and visualization, with an emphasis on digital mapping, animation techniques, cartographic software and internet mapping. Prerequisite: GEOG 255. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Shivanand Balram |
Jan 5 β Apr 11, 2016: Mon, 4:30β6:20 p.m.
|
Burnaby |
|
E101 |
Jan 5 β Apr 11, 2016: Tue, 8:30β10:20 a.m.
|
Burnaby |
|
E102 |
Jan 5 β Apr 11, 2016: Tue, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
E103 |
Jan 5 β Apr 11, 2016: Tue, 12:30β2:20 p.m.
|
Burnaby |
Advanced quantitative techniques for spatial analysis of geographic data and patterns. Topics include geostatistics, spatial interpolation, autocorrelation, kriging, and their use in geographic problem solving with spatial analysis software. Prerequisite: GEOG 251 or one of STAT 101, 201, 203 (formerly 103), or 270. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Suzana Dragicevic |
Jan 5 β Apr 11, 2016: Thu, 2:30β4:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Fri, 12:30β2:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Fri, 2:30β4:20 p.m.
|
Burnaby |
Advanced remote sensing principles and techniques, including physics-based modeling, advanced classifiers, automated data processing, and integration of ancillary data products. Prerequisite: GEOG 253. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Shivanand Balram |
Jan 5 β Apr 11, 2016: Tue, 4:30β6:20 p.m.
|
Burnaby |
|
D101 |
Jan 5 β Apr 11, 2016: Wed, 12:30β2:20 p.m.
|
Burnaby |
An examination of technical components of GIS. Topics include spatial representations, generalization and data management; computational algebra and set theory; digital surfaces and terrain models. Prerequisite: GEOG 255. Quantitative.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Blake Walker |
Jan 5 β Apr 11, 2016: Thu, 10:30 a.m.β12:20 p.m.
|
Burnaby |
|
D102 |
Jan 5 β Apr 11, 2016: Mon, 12:30β2:20 p.m.
|
Burnaby |
|
D103 |
Jan 5 β Apr 11, 2016: Wed, 10:30 a.m.β12:20 p.m.
|
Burnaby |
3D geovisualization methods, concepts and theory. Bridges conventional geographic visualization with emerging 3D methods. Emphasizes user-centered design and cognitive implications. Prerequisite: GEOG 255.
and three of
This course provides a comprehensive study of user interface design. Topics include: goals and principles of UI design (systems engineering and human factors), historical perspective, current paradigms (widget-based, mental model, graphic design, ergonomics, metaphor, constructivist/iterative approach, and visual languages) and their evaluation, existing tools and packages (dialogue models, event-based systems, prototyping), future paradigms, and the social impact of UI. Prerequisite: CMPT 225.
Data communication fundamentals (data types, rates, and transmission media). Network architectures for local and wide areas. Communications protocols suitable for various architectures. ISO protocols and internetworking. Performance analysis under various loadings and channel error rates. Prerequisite: CMPT 225, (CMPT 150, ENSC 150 or CMPT 295) and MATH 151 (MATH 150). MATH 154 or 157 with a grade of at least B+ may be substituted for MATH 151 (MATH 150).
Section | Instructor | Day/Time | Location |
---|---|---|---|
Edward Lo |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
Jan 5 β Apr 11, 2016: Thu, 2:30β3:20 p.m. |
Surrey Surrey |
|
Balbir Gill |
Jan 5 β Apr 11, 2016: Wed, 5:30β8:20 p.m.
|
Vancouver |
This course considers modelling and programming techniques appropriate for symbolic data domains such as mathematical expressions, logical formulas, grammars and programming languages. Topics include recursive and functional programming style, grammar-based data abstraction, simplification and reduction transformations, conversions to canonical form, environment data structures and interpreters, metaprogramming, pattern matching and theorem proving. Prerequisite: CMPT 225, and (MACM 101 or ENSC 251 and ENSC 252)).
Computational approaches to image understanding will be discussed in relation to theories about the operation of the human visual system and with respect to practical applications in robotics. Topics will include edge detection, shape from shading, stereopsis, optical flow, Fourier methods, gradient space, three-dimensional object representation and constraint satisfaction. Prerequisite: MATH 152, and nine units in Computing upper division courses or permission of the instructor.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Brian Funt |
Jan 5 β Apr 11, 2016: Mon, Wed, Fri, 1:30β2:20 p.m.
|
Burnaby |
Covers advanced topics and techniques in computer graphics with a focus on image synthesis. Topics include photorealistic rendering, advanced ray tracing, Monte Carlo methods, photon maps, radiosity, light fields, participating media, as well as tone reproduction. Prerequisite: CMPT 361, MACM 201 and 316. Students with credit for CMPT 451 may not take this course for further credit.
This course examines: two-tier/multi-tier client/server architectures; the architecture of a Web-based information system; web servers/browser; programming/scripting tools for clients and servers; database access; transport of programming objects; messaging systems; security; and applications (such as e-commerce and on-line learning). Prerequisite: CMPT 354.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Gregory Baker |
Jan 5 β Apr 11, 2016: Thu, 5:30β8:20 p.m.
|
Vancouver |
and two of
Spatial models for the representation and simulation of physical, human and environmental processes. GIS and spatial analysis software are used in the laboratory for model development, from problem definition and solution to visualization. Prerequisite: GEOG 251 or one of STAT 101, 201, 203 (formerly 103), or 270; one of GEOG 351, 352, 353, 355 or 356. Quantitative.
Examination of advanced topics in remote sensing, including calibration /validation, spatial scale, data fusion, and the role of remote sensing in a spatial world. Students will work on independent projects applying remote sensing in their area of interest. Prerequisite: GEOG 353. Recommended: One of GEOG 351, 352, 355, or 356. Students with credit for GEOG 453W may not repeat this course for further credit. Quantitative.
A critical examination of advanced topics in GIS, such as: boundary definition, expert systems and artificial intelligence, error and uncertainty, and scale in a digital context. Examines social applications and the roles of GIS in society. Students will design original projects, including data acquisition, analysis, and web site development. Prerequisite: GEOG 355. Students with credit for GEOG 452 may not take this course for further credit. Quantitative.
The concepts, theories, and technology behind interactive and immersive interface technologies used for geospatial visualization. Applications and implications for GIScience and spatial knowledge acquisition. Combines GIScience, spatial cognition, and virtual environments/interface research perspectives. Prerequisite: GEOG 356. Students with credit for GEOG 457 (STT) Geospatial Virtual Environments in fall 2005 or fall 2006 may not take this course for further credit.
Section | Instructor | Day/Time | Location |
---|---|---|---|
Nicholas Hedley |
Jan 5 β Apr 11, 2016: Tue, 12:30β2:20 p.m.
|
Burnaby |
|
D101 |
Nicholas Hedley |
Jan 5 β Apr 11, 2016: Tue, 2:30β4:20 p.m.
|
Burnaby |
and four additional upper division units in physical or human geography. Students should consult with the geography program advisor when choosing these units.
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 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 student’s major subject | |
Q - Quantitative |
6 |
Q courses may be lower or upper division | |
B - Breadth |
18 |
Designated Breadth | Must be outside the student’s 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 student’s 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. |
Residency Requirements and Transfer Credit
The University’s residency requirement stipulates that, in most cases, total transfer and course challenge credit may not exceed 60 units, and may not include more than 15 units as upper division work.
Elective Courses
In addition to the courses listed above, students should consult an academic advisor to plan the remaining required elective courses.