
Note: This is the 2010–2011 edition of the eCalendar. Update the year in your browser's URL bar for the most recent version of this page, or click here to jump to the newest eCalendar.
Note: This is the 2010–2011 edition of the eCalendar. Update the year in your browser's URL bar for the most recent version of this page, or click here to jump to the newest eCalendar.
Academic Adviser-U1: Professor Grant Clark
Macdonald-Stewart Building, Room 1-099
Telephone: 514-398-7784
Mathematics (Agric&Envir Sci) : Partial differentiation; multiple integrals; vector calculus; infinite series; and introduction to the use of computer-based mathematical tools in applications.
Terms: Fall 2010
Instructors: Knutt, Marcia E (Fall)
Mathematics (Agric&Envir Sci) : First and second order differential equations, Laplace transforms, numerical solutions, systems of differential equations, series solutions, applications to biological, chemical and engineering systems, use of computer-based mathematical tools.
Terms: Winter 2011
Instructors: Knutt, Marcia E (Winter)
Bioresource Engineering : Role of the bioresource engineer in society; introduction to engineering analysis and design; kinds of engineering; role and duties of the engineer in the design, construction, and operation of bio-based facilities, industries and the environment. Regulation of the engineering profession; law and liability; engineering ethics; occupational health and safety.
Terms: Fall 2010
Instructors: Ngadi, Michael O (Fall)
Bioresource Engineering : Non-concurrent force systems; analysis of simple trusses and multiforce frames; friction, shearing forces and bending moments in beams and frames; centres of gravity; solution of problems by energy methods.
Terms: Fall 2010
Instructors: McKyes, Edward (Fall)
Bioresource Engineering : Introduction to the composition and mechanical constitution of materials used in bioresource engineering, including metals, plastics, concrete, wood, composite, plant and food materials. Crystal structure, alloys, phase diagrams, stresses and strains, elasticity, plasticity, yield, fracture, ductility, heat treatments, cold work, corrosion, composite materials, concrete chemistry, polymers.
Terms: Fall 2010
Instructors: Orsat, Valerie (Fall)
Bioresource Engineering : A user-level computer programming course. Fundamentals of how electronic computers and computer systems work, a disciplined general approach to the solution of engineering problems, and the implementation of these solutions using structured programming methods in a current computational environment.
Terms: Fall 2010
Instructors: Clark, Grant (Fall)
Bioresource Engineering : Classical thermodynamic analysis of pure and simple compressible systems. The course covers the first and second laws of thermodynamics. It deals with basic concepts of thermodynamics and thermochemistry in biological systems.
Terms: Winter 2011
Instructors: Orsat, Valerie (Winter)
Bioresource Engineering : Properties of fluids; fluid statics; principles of flow of incompressible and compressible fluids; dimensional analysis boundary layers; conduit and open channel systems; simple applications to turbo machinery.
Terms: Fall 2010
Instructors: Rajalakshmi Sivaramakrishnan, SatyanarayanDev (Fall)
Bioresource Engineering : General circuit laws and d.c. circuits; electromagnetic circuits; inductance and capacitance, natural and forced response of circuits; analysis of single phase and three phase networks; transformers, AC and DC motors/generators.
Terms: Fall 2010
Instructors: McKyes, Edward (Fall)
Bioresource Engineering : Advanced topics in engineering mathematics, including special functions, orthogonal functions and Fourier series, boundary value problems in various coordinate systems, integral transforms, partial differential equations and introduction to complex variable theory. The use of computer-based mathematical tools will be an integral part of the course.
Terms: Fall 2010
Instructors: Knutt, Marcia E (Fall)
Bioresource Engineering : Introduction to principles of bio-engineering in solving environmental problems related to the domains of water, soil and air; the capability of each domain to absorb, recycle or treat contaminants.
Terms: Fall 2010
Instructors: Lefsrud, Mark (Fall)
Bioresource Engineering : Stress, strain, resilience, elastic and plastic properties of materials; bending moment and shear force diagrams; bending and shear stress; deflections; simple, fixed and continuous beams, torsion and helical springs, reinforced concrete beams; columns, bending and direct stress; general case of plane stress; Mohr's circle.
Terms: Winter 2011
Instructors: Ngadi, Michael O (Winter)
Bioresource Engineering : Attendance and participation in departmental seminars.
Terms: Fall 2010, Winter 2011
Instructors: Orsat, Valerie (Fall) Orsat, Valerie (Winter)
Bioresource Engineering : Attendance and participation in departmental seminars.
Terms: Fall 2010, Winter 2011
Instructors: Orsat, Valerie (Fall) Orsat, Valerie (Winter)
Bioresource Engineering : Attendance and participation in departmental seminars.
Terms: Fall 2010, Winter 2011
Instructors: Orsat, Valerie (Fall) Orsat, Valerie (Winter)
Bioresource Engineering : Attendance and participation in departmental seminars.
Terms: Fall 2010, Winter 2011
Instructors: Orsat, Valerie (Fall) Orsat, Valerie (Winter)
Bioresource Engineering : Attendance and participation in departmental seminars, and a small written project report.
Terms: Fall 2010, Winter 2011
Instructors: Kok, Robert (Fall) Kok, Robert (Winter)
Bioresource Engineering : Attendance and participation in departmental seminars, and a small written project report.
Terms: Fall 2010, Winter 2011
Instructors: Kok, Robert (Fall) Kok, Robert (Winter)
Bioresource Engineering : The student is expected to develop a professional design project proposal with due considerations to executive summary, synthesis, methodology, milestones, budget, etc.
Terms: Fall 2010, Winter 2011
Instructors: Clark, Grant (Fall) Clark, Grant (Winter)
Bioresource Engineering : The student is expected to implement, physically or virtually, the project proposed in the Design 1 course. The student is expected to present project outcome, in both written and oral forms and learn to be critical about their own work and those of others.
Terms: Fall 2010, Winter 2011
Instructors: Clark, Grant (Fall) Clark, Grant (Winter)
Faculty Course : Laws, regulations and codes governing engineering professional practice. Responsibility and liability. Environmental legislation. Project and organization management. Relations between engineer and client. Technical practice - analysis, design, execution and operation.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Mechanical Engineering : Preliminary concepts of design, including free-hand sketching; fundamentals of geometry construction; and technology of object representation.
Terms: Fall 2010, Winter 2011
Instructors: Pasini, Damiano; Nadarajah, Sivakumaran (Fall) Angeles, Jorge; Hajzargarbashi, Seyedhossein (Winter)
Mining & Materials Engineering : Introduction to the basic concepts required for the economic assessment of engineering projects. Topics include: accounting methods, marginal analysis, cash flow and time value of money, taxation and depreciation, discounted cash flow analysis techniques, cost of capital, inflation, sensitivity and risk analysis, analysis of R and D, ongoing as well as new investment opportunities.
Terms: Fall 2010, Winter 2011, Summer 2011
Instructors: Jassim, Raad (Fall) Jassim, Raad (Winter) Jassim, Raad (Summer)
60 credits of the complementary courses selected as follow:
6 credits - Set A
9 credits - Set B (Natural Sciences and Mathematics)
9 credits - Set C (Social Sciences)
36 credits - Set D (Engineering)
One of the following:
Mathematics (Agric&Envir Sci) : Measures of central tendency and dispersion; binomial and Poisson distributions; normal, chi-square, Student's t and Fisher-Snedecor F distributions; estimation and hypothesis testing; simple linear regression and correlation; analysis of variance for simple experimental designs.
Terms: Fall 2010, Winter 2011
Instructors: Dutilleul, Pierre R L; Bona, Kelly Ann (Fall) Dutilleul, Pierre R L (Winter)
Civil Engineering : An introduction to probability and statistics with applications to Civil Engineering design. Descriptive statistics, common probability models, statistical estimation, regression and correlation, acceptance sampling.
Terms: Winter 2011
Instructors: Chouinard, Luc E (Winter)
Mathematics & Statistics (Sci) : Sample space, events, conditional probability, independence of events, Bayes' Theorem. Basic combinatorial probability, random variables, discrete and continuous univariate and multivariate distributions. Independence of random variables. Inequalities, weak law of large numbers, central limit theorem.
Terms: Fall 2010, Winter 2011, Summer 2011
Instructors: Anderson, William J (Fall) Partovi Nia, Vahid (Winter)
One of the following:
Chemical Engineering : Transport of heat and mass by diffusion and convection; transport of heat by radiation; diffusion; convective mass transfer; drying; absorption; mathematical formulation of problems and equipment design for heat and mass transfer; laboratory exercises.
Terms: Winter 2011
Instructors: Servio, Phillip (Winter)
Mechanical Engineering : Basic concepts and overview. Steady and unsteady heat conduction. Fin Theory. Convective heat transfer: governing equations; dimensionless parameters; analogy between momentum and heat transfer. Design correlations for forced, natural, and mixed convection. Heat exchangers. Radiative heat transfer: black- and gray-body radiation; shape factors; enclosure theory. Thermal engineering design project.
Terms: Fall 2010, Winter 2011
Instructors: Baliga, Bantwal (Fall) Mydlarski, Laurent B (Winter)
9 credits with a minimum of 3 credits chosen from the list below:
Biology (Agric & Envir Sc) : The biology of plants and plant-based systems in managed and natural terrestrial environments. The interactions between autotrophs and soil organisms and selected groups of animals with close ecological and evolutionary connections with plants (e.g., herbivores and pollinators) will be explored in lecture and laboratory.
Terms: Fall 2010
Instructors: Singh, Jaswinder (Fall)
Biology (Agric & Envir Sc) : Introduction to the biology, physiology, structure and function of heterotrophs and their interactions with other organisms. This course will focus on animals in terrestrial, freshwater and marine environments. Topics include bioenergetics and functional metabolism, adaptations to environments, animal-animal, animal-plant, and animal-pathogen interactions.
Terms: Winter 2011
Instructors: Lewis, David James (Winter)
Environmental Biology : Interactions between organisms and their environment; historical and current perspectives in applied and theoretical population and community ecology. Principles of population dynamics, feedback loops, and population regulation. Development and structure of communities; competition, predation and food web dynamics. Biodiversity science in theory and practice.
Terms: Winter 2011
Instructors: Buddle, Christopher (Winter)
Environmental Biology : Nature and history of limnology; divisions of inland waters; properties of fresh water; habitats; zones; nutrient cycles; biota; adaptations; seasonal variation; distributions; pollution; succession and evolution of fresh water environments. Includes field excursions.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Life Sciences : Organization and function of intracellular organelles in eukaryotic cells. Mechanisms of membrane transport. Protein sorting and vesicular transport. Cytoskeleton. DNA and chromosome structure. DNA replication. Mechanisms of RNA and protein synthesis. Control of gene expression. Cell cycle and the control of cell division. Mechanisms of cell communication and signal transduction. Apoptosis. Neuronal signaling.
Terms: Winter 2011
Instructors: Ribeiro, A Paula; Beech, Robin N (Winter)
Life Sciences : Biochemistry of carbohydrates, lipids, proteins, nucleic acids; enzymes and coenzymes. Introduction to intermediary metabolism.
Terms: Fall 2010, Winter 2011
Instructors: Salavati, Reza (Fall) Jardim, Armando (Winter)
Life Sciences : The occurrence and importance of microorganisms (especially bacteria) in the biosphere. Principles governing growth, death and metabolic activities of microorganisms. An introduction to the microbiology of soil, water, plants, food, man and animals.
Terms: Winter 2011
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Microbiology (Agric&Envir Sc) : The ecology of microorganisms, primarily bacteria and archaea, and their roles in biogeochemical cycles will be discussed. Microbial interactions with the environment, plants, animals and other microbes emphasizing the underlying genetics and physiology. Diversity, evolution (microbial phylogenetics) and the application of molecular biology in microbial ecology.
Terms: Winter 2011
Instructors: Driscoll, Brian T (Winter)
Plus 6 credits chosen in consultation with the academic adviser.
Minimum of 3 credits from the following list:
Chemical Engineering : The impact of urbanization and technology on the environment. Topics include urbanization: causes, effects, land use regulations; transportation technology and environmental implications; environmental impact of energy conversions; energy policy alternatives; formulation of energy and environmental policy; air pollution: sources, effects, control; water pollution: sources, effects, control.
Terms: Winter 2011
Instructors: Alexakis, Theodora (Winter)
Civil Engineering : Infrastructure systems, historical background and socio-economic impact; planning, organization, communication and decision support systems; budgeting and management; operations, maintenance, rehabilitation and replacement issues; public and private sectors, privatization and governments; infrastructure crisis and new technologies; legal, environmental, socio-economic and political aspects of infrastructure issues; professional ethics and responsibilities; case studies.
Terms: Winter 2011
Instructors: Mirza, M Saeed (Winter)
Environment : This course deals with how scientific-technological, socio-economic, political-institutional and behavioural factors mediate society-environment interactions. Issues discussed include population and resources; consumption, impacts and institutions; integrating environmental values in societal decision-making; and the challenges associated with, and strategies for, promoting sustainability. Case studies in various sectors and contexts are used.
Terms: Fall 2010
Instructors: Badami, Madhav Govind; Bennett, Elena; Purdon, Mark; Kosoy, Nicolas (Fall)
Mining & Materials Engineering : Critical examination of the socio-economic costs and benefits of technology, case studies of old engineering works and new technologies. The integration of applied ethics and engineering practice, analysis of basic concepts of technology assessment, the inter-connected processes of risk assessment, management, and communication.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Sociology (Arts) : An examination of the extent to which technological developments impose constraints on ways of arranging social relationships in bureaucratic organizations and in the wider society: the compatibility of current social structures with the effective utilization of technology.
Terms: Fall 2010
Instructors: Smith, Michael R (Fall)
Plus 6 credits of social sciences, management studies, humanities, or law courses at the U1 undergraduate level or higher with approval of the Academic Adviser.
Note: these 6 credits may include one 3-credit language course other than the student's normal spoken languages.
36 credits from the following list with the option (and approval of the Academic Adviser) of taking a maximum of 6 credits from other courses offered in the Faculty of Engineering:
Bioresource Engineering : The engineer's level and the theodolite are used to perform benchmark circuits, profile levelling, topographic maps and straight line extensions. A total station, computer programs and use of GPS are introduced.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Measurements and analysis of components of the water cycle. Precipitation, evaporation, infiltration and groundwater. Analysis of hydrologic data. Hydrograph theory. Hydrologic estimations for design of water control projects; flood control and reservoir routing. Integrated watershed management and water conservation. Water management systems for environmental protection.
Terms: Winter 2011
Instructors: Prasher, Shiv (Winter)
Bioresource Engineering : Analysis and design of structures to house animals and plants and to process and store animal and plant products. Introduction to environmental control systems and animal waste management.
Terms: Winter 2011
Instructors: Lefsrud, Mark (Winter)
Bioresource Engineering : Design of shafting, bearings, gear, belt and chain drives, clutches, brakes, vibrations, fasteners, welded joints, frames. Principles and practices of Engineering Drawing will be adhered to in laboratory submissions.
Terms: Winter 2011
Instructors: McKyes, Edward (Winter)
Bioresource Engineering : An introduction to engineering aspects of handling, storage and treatment of all biological and food industry wastes. Design criteria will be elaborated and related to characteristics of wastes. Physical, chemical and biological treatment systems.
Terms: Fall 2010
Instructors: King, Susan (Fall)
Bioresource Engineering : Heat and mass transfer, enthalpy and mass balances, sterilizing, freezing, fluid flow, pipes, steam, refrigeration, pumps and valves.
Terms: Fall 2010
Instructors: Ngadi, Michael O (Fall)
Bioresource Engineering : Study and analysis of machines for tillage, harvesting, crop processing and handling. Field tests, load studies, design requirements; design of machines and components for agricultural applications.
Terms: Fall 2010
Instructors: Sotocinal, Samson; Adamchuk, Viacheslav (Fall)
Bioresource Engineering : The engineering aspects of soil and water conservation, irrigation, water conveyance structures and canals, use of geosynthetics for soil protection, seepage and uplift. Students will produce an integrated development project.
Terms: Fall 2010
Instructors: King, Susan (Fall)
Bioresource Engineering : The exploration of subsoils, strength theories, granular and cohesive soils, foundation design, settlement calculation, consolidation, slope stability, Atterberg limits, triaxial testing, direct shear testing, compaction, soil freezing, frost heaving.
Terms: Winter 2011
Instructors: McKyes, Edward (Winter)
Bioresource Engineering : Structural Design in steel and timber; application of complete design procedures to working stress design; plastic design for ultimate loading.
Terms: Winter 2011
Instructors: Barrington, Suzelle (Winter)
Bioresource Engineering : Relationships between composition, structure and properties of biological materials. Measurement methods and use of mechanical, thermal, electromagnetic, chemical and functional properties in the design of new applications and product development.
Terms: Fall 2010
Instructors: Orsat, Valerie (Fall)
Bioresource Engineering : Applications of Geographic Information Systems (GIS) and spatial analysis techniques to the presentation and analysis of ecological information, including sources and capture of spatial data; characterizing, transforming, displaying spatial data; and spatial analysis to solve resource management problems.
Terms: Fall 2010
Instructors: Adamchuk, Viacheslav (Fall)
Bioresource Engineering : Independent study for design and experimental work on a bioresource engineering topic chosen in consultation between the student and departmental staff.
Terms: Fall 2010, Winter 2011, Summer 2011
Instructors: Prasher, Shiv (Fall) Prasher, Shiv (Winter) Prasher, Shiv (Summer)
Bioresource Engineering : Mathematical and computational modelling and simulation: linear, nonlinear, and chaotic; deterministic and stochastic; static and dynamic; steady and unsteady state. Verification, validation, sensitivity analysis. Examples emphasize bioengineering applications, e.g. machine design, population dynamics, food processing, biological control, farm management, ecological system design.
Terms: Winter 2011
Instructors: Clark, Grant (Winter)
Bioresource Engineering : Benefits and importance of drainage; types of drainage systems; design and construction of main, surface and subsurface drainage systems; drainage materials. Crop water requirements; evapotranspiration models; design and layout of surface, sprinkler and drip irrigation systems; pipe hydraulics; pumps.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Principles and operation of instrument systems used for measurement and control in agricultural processes and research.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Land drainage in relation to soils and crops. Design of regional drainage systems, stability of ditches, ice problems. Design of subsurface drainage systems. Theories of flow into drain tubes. Hydraulics of wells. Drainage of irrigated lands. Water table control.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Use of deterministic and stochastic models to analyze components of the hydrologic cycle on agricultural and forested watersheds, floods frequency analysis, hydrograph analysis, infiltration, runoff, overland flow, flood routing, erosion and sediment transport. Effects of land-use changes and farm and recreational water management systems on the hydrologic regime.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : A holistic examination and application of methods in water resources engineering and management at the watershed level with a specific focus on integrated water resources management (IWRM). Topics will include: integration, participatory management, water resources assessment, modeling, planning, adaptive management, transboundary management, and transition management.
Terms: Fall 2010
Instructors: Adamowski, Jan (Fall)
Bioresource Engineering : Soil mechanics applied to cutting, tillage and drain installation tools. Soil cutting forces for two and three dimensional implements. Soil loosening, inversion, sorting and manipulation. Selection of traction machines to match soil cutting and tillage requirements. Depth and grade control systems. Analysis of drainage machines, wheel trenchers, chain trenchers and trenchless plows.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : A review of computer simulation models for designing subsurface drainage systems. Use of CAD systems for designing and drafting drainage plans.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Special topics concerning control of pollution agents from the agricultural industry; odour control, agricultural waste treatment including biological digestion, flocculants, land disposal and sedimentation, pesticide transport.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Advanced topics in food engineering. Concepts of mathematical modelling and research methodologies in food engineering. Topics include heat and mass transfer in food systems, packaging and distribution of food products, thermal and non-thermal processing, rheology and kinetics of food transformations.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Analysis and design incorporating the four elements required by organisms and biomass for food, fibre and fuel production (air, earth, energy, and water). Special emphasis will be placed on the demands and requirements of engineering systems to control these elements and allow optimal growth in semi-controlled and completely controlled environments.
Terms: Winter 2011
Instructors: Lefsrud, Mark (Winter)
Bioresource Engineering : The analyses of heat and water vapour transfer through the structure of buildings are used to design heating, ventilation and refrigeration systems. Heat conduction and convection as well as radiation are included in the analysis of heat transfer. Ventilation systems are designed for livestock shelters, produce storages and greenhouses.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Advanced topics in food and fermentation engineering are covered, including brewing, bioreactor design and control and microbial kinetics.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Heat and moisture transfer with respect to drying of agricultural commodities; techniques of enhancement of heat and mass transfer; drying efficiency and scale-up problems.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Active, semi-passive and passive storage systems; environmental control systems; post-harvest physiology and pathogenicity; quality assessment and control methodology; economic aspects of long-term storage.
Terms: This course is not scheduled for the 2010-2011 academic year.
Instructors: There are no professors associated with this course for the 2010-2011 academic year.
Bioresource Engineering : Management of water quality for sustainability. Cause of soil degradation, surface and groundwater contamination by agricultural chemicals and toxic pollutants. Screening and mechanistic models. Human health and safety concerns. Water table management. Soil and water conservation techniques will be examined with an emphasis on methods of prediction and best management practices.
Terms: Fall 2010
Instructors: Clark, Grant (Fall)
Chemical Engineering : Bioreactor design for biotechnology and environmental applications; microbial growth kinetics; application of transport phenomena and selected chemical engineering unit operations. Bioreactor instrumentation and performance optimization. Air and media sterilization processes. Selected operations of downstream processing and product recovery.
Terms: Fall 2010
Instructors: Cooper, David G (Fall)
Civil Engineering : The design process; loads, sources, classifications, load factors, combinations; limit states design; structural systems and foundations; choice of materials; virtual work and energy methods; statical and kinematic indeterminacy; slope deflection method, introduction to matrix methods; analysis of indeterminate systems; force envelopes.
Terms: Fall 2010
Instructors: McClure, Ghyslaine (Fall)
Civil Engineering : Durability and service life; fire resistance and protection; steel, reinforced concrete and timber; behaviour and design of components in tension, compression, bending and shear; slenderness, global and local instability; axial load and moment interaction; curvature, deflection, ductility; connections; bond and anchorage of reinforcement; simple footings.
Terms: Winter 2011
Instructors: Rogers, Colin Andrew (Winter)