Les cours sont énumérés ci-dessous et sont regroupés par domaines / Graduate courses are listed below, grouped by areas of research.
Les cours inscrits entre parenthèses sont de Carleton University / Course codes in parentheses are for Carleton University.
Les cours suivants ne sont pas tous offerts chaque année / Not all of the following courses are necessarily given each year.
Génie géotechnique / Geotechnical Engineering
CVG5100 (CIVJ 5000) DEEP FOUNDATIONS (3cr.)
Deep foundation types in North American practice (driven or bored piles, and slurry trench techniques); axial and lateral capacity and settlement analysis for single piles and pile groups; field inspection methods; pile dynamics; performance and analysis of static test loading.
CVG5106 (CIVJ 5006) SITE IMPROVEMENTS (3cr.)
Description, design procedures and usage of current site improvement techniques, including preloading, earth reinforcement, dynamic consolidation, vibrocompaction, blasting densification, lime treatment, drains, and geotechnical fabrics.
CVG5161 (CIVJ 5106) MECHANICS OF UNSATURATED SOILS (3cr.)
Introduction to unsaturated soils, phases of an unsaturated soil, phase properties and relations, stress state variables for saturated and unsaturated soils. Measurement of soil suction: theory of soil suction, capillarity, measurements of total suction and matric suction. Flow Laws: flow of water and measurement of permeability, shear strength theory: history, failure envelope for unsaturated soils, triaxial and direct shear tests, typical results, simple testing procedures, volume change behavior including expansive soils behavior. Soil-water characteristic curve: its behavior and use in predicting the engineering properties of unsaturated soils, practical applications of the principles of unsaturated soils.
CVG5175 NUMERICAL METHODS FOR GEOTHECHNICAL ENGINEERS (3cr.)
Non-linear analysis of stresses and deformations using the effective stress concept; analysis of consolidation using the excess pore water pressure concept; flow through porous media; finite element, discrete element and finite difference methods; applications to foundations of structures, retaining walls, dams, tunnels, pipelines, human-made and natural slopes in rock and soil.
CVG5178 (CIVJ 5108) ICE MECHANICS (3cr.)
Ice conditions in the Arctic; ice physics; classification of ice; mechanical properties of ice; mathematical modelling of creep and fracture behaviour of ice; offshore structures in arctic environments; ice forces acting on structures; ice induced vibrations; iceberg impact loads; physical modelling of ice-structure interaction; ice as a construction material; case histories.
CVG7100 (CIVE 5209) CASE STUDIES IN GEOTHECHNICAL ENGINEERING (3cr.)
CVG7101 (CIVE 5300) ADVANCED SOIL MECHANICS I (3cr.)
CVG7102 ADVANCED SOIL MECHANICS II (3cr.)
CVG7103 (CIVE 5303) PAVEMENTS AND MATERIALS (3cr.)
CVG7104 (CIVE 5500) EARTH RETAINING STRUCTURES (3cr.)
CVG7105 (CIVE 5501) FOUNDATION ENGINEERING (3cr.)
CVG7106 (CIVE 5502) IN SITU METHODS IN GEOMECHANICS (3cr.)
CVG7107 (CIVE 5503) NUMERICAL METHODS IN GEOMECHANICS (3cr.)
CVG7108 (CIVE 5504) SEEPAGE AND WATER FLOW THROUGH SOILS (3cr.)
Génie des structures / Structural Engineering
CVG5142 (CIVJ 5201) ADVANCED STRUCTURAL DYNAMICS (3cr.)
Dynamic behaviour of civil engineering structures under excitations due to earthquakes, wind, waves, etc. Advanced methods in dynamic analysis of structures. Prediction of structural response. Design considerations.
CVG5143 (CIVJ 5202) ADVANCED STRUCTURAL STEEL DESIGN (3cr.)
Analysis of thin-walled beams, design applications including members under combined forces, analysis and design of beams under non-uniform torsion, limit state design methodology, comparative study of modern structural steel standards, formulating elastic and plastic interaction relations for members under combined forces, designing columns, beams, beam columns, for cross-sectional strengths, local buckling and global stability considerations, design of bracing systems.
CVG5144 (CIVJ 5300) ADVANCED REINFORCED CONCRETE (3cr.)
Study of the elastic and inelastic response of reinforced concrete structures under monotonic and cyclic loading. Methods for predicting structural behaviour of concrete elements. The relationship between recent research results and the building codes.
CVG5145 (CIVJ 5203) THEORY OF ELASTICITY (3cr.)
Stress-strain relations. Theories of plane stress and plane strain. Use of stress functions, energy and variational methods in the analysis of elastostatic problems.
CVG5146 (CIVJ 5302) NUMERICAL METHODS OF STRUCTURAL ANALYSIS (3cr.)
Numerical procedures and methods of successive approximations for the solution of structural problems. Virtual work, principles of minimum potential and complementary energy. Applications of variation and finite difference techniques to the solutions of complicated problems in beams, plates and shells.
CVG5147 (CIVJ 5204) THEORY OF PLATES AND SHELLS (3cr.)
Stress distribution in flat plates of various shapes. Large deflection theory, numerical methods. Membrane theory, bending theory for cylindrical shells, bending theory for shells of revolution.
CVG5148 (CIVJ 5304) PRESTRESSED CONCRETE DESIGN (3cr.)
Materials, methods of prestressing, prestress losses, and anchorage zone stresses. Elastic analysis, design and behaviour of simple and continuous prestressed concrete beams, frames and slabs. Discussion of current design specifications. Ultimate strength of members.
CVG5149 (CIVJ 5304) STRUCTURAL STABILITY (3cr.)
Elastic, inelastic, and torsional buckling of columns, beam column behaviour, plane and space frame stability, lateral torsional buckling of beams, global buckling of truss systems, plate and shell buckling, local buckling in tubulars, use of energy methods, matrix analysis, and finite element analysis in modeling stability problems, bracing requirements, standard provisions and design considerations in structural stability.
CVG5150 (CIVJ 5206) ADVANCED CONCRETE TECHNOLOGY (3cr.)
Cement: types, hydration, physical properties; aggregate: classification, grading, properties; fresh concrete: influence of basis constituents and admixtures on workability, mixing, placing; strength of hardened concrete; nature of strength, influence of constituents, curing methods; durability; chemical attack, frost action, thermal effects; elasticity, shrinkage and creep; special concrete; lightweight, high density; mix design; approaches, weigh batching, volume proportioning, special mixes; field and laboratory test methods.
CVG5153 (CIVJ 5209) WIND ENGINEERING (3cr.)
The structure and climate of wind; wind loading on structures; wind induced dynamic problems of structures; environmental aerodynamics; dispersion of pollutant; analysis of wind data; experimental investigations.
CVG5154 (CIVJ 5308) RANDOM VIBRATION (3cr.)
Descriptions of random data. Frequency domain analysis and time domain analysis. Stochastic response of structures; wind and earthquake excitation, etc. Data analysis techniques. Prediction for design purposes. Simulation of random processes. Special topics.
CVG5155 (CIVJ 5306) EARTHQUAKE ENGINEERING (3cr.)
Nature and characteristics of earthquake motions. Non-linear response of single and multi-degree-of-freedom structures to seismic excitations. Modal superposition technique. Simplified procedures for dynamic structural analysis. Principles of earthquake resistant design. Strength, stiffness, ductility and energy absorption requirements of structures for seismic forces. Response spectra analysis. Current design procedures for aseismic design. Recent research on earthquake engineering.
CVG5156 (CIVJ 5301) FINITE ELEMENT METHODS I (3cr.)
Review of basic matrix methods. Structural idealizations. The displacement versus the force method. Stiffness properties of structural elements. Finite elements in beam bending, plane stress and plate bending.
CVG5157 (CIVJ 5303) FINITE ELEMENT METHODS II (3cr.)
Application of finite elements to folded plates, shells and continua. Convergence criteria and order of accuracy. Inertial and initial stress properties. Dynamic and buckling problems. Non-linear deflections and plasticity.
CVG5158 (CIVJ 5307) ELEMENTS OF BRIDGE ENGINEERING (3cr.)
Introduction; limit state design; highway bridge design loads; analysis and design of concrete decks; impact and dynamics; load capacity rating of existing bridges and construction in cold climate.
CVG5159 (CIVJ 5309) LONG SPAN STRUCTURES (3cr.)
Mechanics of cables. Suspension bridges and cable-stayed bridges. Space structures. Design and construction of long span structures. Dynamics of long span bridges. Case studies. Future of long span structures.
CVG7109 (CIVE 5505) GEOTECHNICAL EARTHQUAKE ENGINEERING (3cr.)
CVG7120 (CIVE 5101) INTRODUCTORY ELASTICITY (3cr.)
CVG7121 (CIVE 5102) ADVANCED ELASTICITY (3cr.)
CVG7122 (CIVE 5103) FINITE ELEMENT METHODS IN STRESS ANALYSIS (3cr.)
CVG7123 (CIVE 5104) EARTHQUAKE ENGINEERING AND ANALYSES (3cr.)
CVG7124 (CIVE 5105) ADVANCED FINITE ELEMENT ANALYSIS IN STRUCTURAL MECHANICS (3cr.)
CVG7125 (CIVE 5203) THEORY OF STRUCTURAL STABILITY (3cr.)
CVG7126 (CIVE 5204) BEHAVIOUR AND DESIGN OF STRUCTURAL STEEL MEMBERS (3cr.)
CVG7127 (CIVE 5205) ANALYSIS OF ELASTIC STRUCTURES (3cr.)
CVG7128 (CIVE 5206) PRESTRESSED CONCRETE (3cr.)
CVG7129 ADVANCED STRUCTURAL DESIGN (3cr.)
CVG7130 (CIVE 5208) ADVANCED REINFORCED CONCRETE (3cr.)
CVG7131 (CIVE 5600) PROJECT MANAGEMENT (3cr.)
CVG7132 COMPUTER-AIDED DESIGN OF BUILDING STRUCTURES (3cr.)
CVG7137 DYNAMICS OF STRUCTURES (3cr.)
CVG7138 ENGINEERING MASONRY BEHAVIOUR AND DESIGN (3cr.)
CVG7139 BEHAVIOUR AND DESIGN OF STEEL STRUCTURES (3cr.)
CVG7140 (CIVE 5601) STATISTICS, PROBABILITIES AND DECISION-MAKING (3cr.)
CVG7141 (CIVE 5602) ADVANCED METHODS IN COMPUTER-AIDED DESIGN (3cr.)
CVG7142 ENGINEERING MANAGEMENT (3cr.)
CVG7143 (CIVE 5605) DESIGN OF STEEL BRIDGES (3cr.)
CVG7144 (CIVE 5606) DESIGN OF CONCRETE BRIDGES (3cr.)
CVG7145 (CIVE 5607) INTRODUCTION TO BRIDGE DESIGN (3cr.)
CVG7170 (CIVE 5609) FUNDAMENTALS OF FIRE SAFETY ENGINEERING (3cr.)
CVG7171 (CIVE 5610) FIRE DYNAMICS I (3cr.)
CVG7172 (CIVE 5613) FIRE DYNAMICS II (3cr.)
CVG7173 (CIVE 5611) PEOPLE IN FIRES (3cr.)
CVG7174 (CIVE 5612) FIRE MODELLING (3cr.)
CVG7175 (CIVE 5614) DESIGN FOR FIRE RESISTANCE (3cr.)
Génie des transports / Transportation Engineering
CVG7150 (CIVE 5304) INTERCITY TRANSPORTATION, PLANNING AND MANAGEMENT (3cr.)
CVG7151 (CIVE 5305) TRAFFIC ENGINEERING (3cr.)
CVG7152 (CIVE 5306) HIGHWAY MATERIALS (3cr.)
CVG7153 (CIVE 5307) URBAN TRANSPORTATION AND MANAGEMENT (3cr.)
CVG7154 (CIVE 5308) GEOMETRIC DESIGN (3cr.)
CVG7155 (CIVE 5309) TRANSPORTATION SUPPLY (3cr.)
CVG7156 (CIVE 5401) TRANSPORTATION ECONOMICS AND POLICY (3cr.)
CVG7158 (CIVE 5403) AIRPORT PLANNING (3cr.)
CVG7159 (CIVE 5402) TRANSPORTATION TERMINALS (3cr.)
Génie des ressources de l'eau / Water Resources Engineering
CVG5111 (CIVJ 5501) HYDRAULIC STRUCTURES (3cr.)
Classification and function of hydraulic structures; analysis and design of hydraulic works for gravity dams, arch dams, earth fill and rock-fill dams; ancillary works including water intakes, various types of spillways, control structures, energy dissipation and stilling basin, bottom outlets. Advanced topic in channel design including transitions; hydraulic transients, free surface and free surge analysis; water towers and compensation basins; penstocks. Navigation locks. Coastal protection works and maritime structures.
CVG5120 (CIVJ 5506) WATER RESOURCES SYSTEMS (3cr.)
Conservation of water resources. Multi-purpose project planning: study of domestic and foreign water development projects. Techniques for simulation, optimization, linear and dynamic programming.
CVG5123 (CIVJ 5509) ADVANCED TOPICS IN HYDROLOGY (3cr.)
Selected topics of current interest in surface and groundwater hydrology.
CVG5124 (CIVJ 5605) COASTAL ENGINEERING (3cr.)
Key concepts in coastal engineering. Wave mechanics and coastal hydrodynamics, (2) sediment transport and coastal morphodynamics and (3) coastal structures and coastal zone management. Wave mechanics and coastal hydrodynamics to include small-amplitude wave theory, finite amplitude wave theories (Stokes, Cnoidal and solitary wave), wave generation, wave transformations, development and prediction, hydrodynamics of coastal circulation. Sediment transport and coastal morphodynamics to include: wave and current-induced sediment transport, coastal sediment processes, longshore and cross-shore beach morphologic transformations, etc. Coastal structures and coastal zone management to include: beach erosion control, coastal structures (dikes, breakwaters, groins, seawalls), beach nourishment, coastal pollution and control, nearshore area development.
CVG5125 (CIVJ 5601) STATISTICAL METHODS IN HYDROLOGY (3cr.)
Concepts of probability and random variables applied to hydrology. Statistical distributions, their approximation and analysis. Statistical inference, including tests of significance and estimation theory. Linear and multivariate correlation and regression techniques. Data generation and simulation techniques for design of water-resource systems. Introduction to hydrologic and meteorologic time series.
CVG5160 (CIVJ 5503) SEDIMENT TRANSPORT (3cr.)
An introduction to particle transport, with special emphasis on river engineering applications, including natural channel design. Sediment properties, initiation of motion, bed load, suspended load, fluvial dunes, alluvial channels, bank erosion and protection, natural channel design. Special topics include contaminated sediments, local scour, morphodynamic modelling, fluvial habitat.
CVG5162 (CIVJ 5504) RIVER HYDRAULICS (3cr.)
Advanced concepts of river hydraulics, with an emphasis on field measurement techniques and application of numerical models. Navier-Stokes equations, turbulence, flow resistance, numerical modelling of simplified momentum and continuity equations, field-based measurement and statistical analysis of velocity fields. Special topics include contaminant transport, morphodynamic modelling.
Génie de l'environnement / Environmental Engineering
CVG5130 (ENVJ 5900) WASTEWATER TREATMENT PROCESS DESIGN (3cr.)
The physical, chemical and biological processes involved in the treatment of domestic and industrial wastes. Waste characteristics, stream assimilation, biological oxidation, aeration, sedimentation, anaerobic digestion, sludge disposal.
CVG5132 (ENVJ 5901) UNIT OPERATIONS OF WATER TREATMENT (3cr.)
Unit operations and unit processes involved in the treatment of a water supply for various uses. Topics included are: water quality, water microbiology, sedimentation, chemical treatment, disinfection, water chemistry, flocculation.
CVG5133 (ENVJ 5906) SOLID WASTE DISPOSAL (3cr.)
Collection and disposal of solid wastes. Sanitary landfill, composting, incineration and other methods of disposal. Material and energy recovery.
CVG5134 (ENVJ 5907) CHEMICAL ANALYSIS FOR ENVIRONMENTAL ENGINEERING (3cr.)
Dilute aqueous solution chemistry of water and wastewater treatment. Chemical kinetics and equilibrium. Carbonate, phosphate and chlorine chemistry. Precipitation and complex formation. Corrosion. Analytical techniques and applications.
CVG5137 (ENVJ 5905) WATER AND WASTEWATER TREATMENT PROCESS ANALYSIS (3cr.)
Mass balancing in complex systems. Reaction kinetics and kinetic data analysis: classical and computer based methods. Reactor design: ideal reactors and real reactors. Analysis of tracer tests. Interfacial mass transfer: common theories. Mass transfer models. Prerequisite: CVG 3132 or equivalent. Students with a Chemical Engineering background may not take this course for credit.
CVG5138 (ENVJ 5902) ADVANCED WATER TREATMENT (3cr.)
Scope, limitations and design procedures for water treatment processes for the removal of toxic and non-standard contaminants. Current water treatment problems and regulations, activated carbon treatment, ion exchange, disinfection practices and oxidation via advanced oxidation processes (ozonation and UV oxidation), iron and manganese removal, recent developments in coagulation, membranes, air stripping. Prerequisite: CVG 3132 or equivalent.
CVG5139 (ENVJ 5700) ENVIRONMENTAL ASSESSMENT OF CIVIL ENGINEERING PROJECTS (3cr.)
Procedures and methods for systematic evaluation of the environmental impact of civil engineering projects including wastewater disposal systems, solid waste disposal systems, and water resource development systems.
CVG5179 (ENVJ 5908) ANAEROBIC DIGESTION (3cr.)
Advanced theoretical, biological, and practical aspects of anaerobic digestion processes. Principles to be applied to the design and application of conventional and advanced anaerobic processes used for treatment of municipal and industrial wastewaters. Topics to include microbiology and biochemistry fundamentals, techniques for monitoring anaerobic digestion performance, municipal sludge stabilization, anaerobic composting, anoxic/anaerobic bioremediation, Andrew's dynamic model. Design of the following: two-phase digestion; Downflow Stationary Fixed Film (DSFF) reactors; Upflow Anaerobic Sludge Blanket (UASB); Upflow Blanket Filter (UBF) reactors; and Anaerobic Sequencing Batch Reactors (ASBR).
CVG5180 (ENVJ 5909) BIOLOGICAL NUTRIENT REMOVAL (3cr.)
Advanced theoretical, biological, and practical aspects of biological nutrient removal (BNR) (nitrification, denitrification and excess biological phosphorus) processes. Principles to be applied to the design and application of conventional and advanced BNR processes used for treatment of municipal and industrial wastewaters. Topics as follows: microbiology and biochemistry fundamentals of BNR, nitrification process design of suspended growth and fixed film growth systems, denitrification process design of suspended growth and fixed film growth systems, excess biological phosphorus removal design including prefermentation. Design of 2,3,4 and 5 stage BNR systems. General activated sludge model and Simworks for BNR systems. Retrofit of exiting plants and pilot plant testing for BNR.
CVG5232 (ENVJ 5911) UNIT OPERATIONS OF WATER TREATMENT LAB (1,5cr.)
Bench-scale and pilot-scale experiments required to: a) assess the suitability of different physicochemical processes for particular applications, and b) design a full-scale facility. Conventional analytical techniques used in water treatment (pH, alkalinity, hardness, turbidity, color, spectrophotometric analysis). Process analysis techniques for process evaluation and scale-up including: zone sedimentation, batch flux settling tests, coagulation with iron and aluminum salts, flocculent sedimentation, filtration and fluidization, flotation. Prerequisite: CVG 3132 or equivalent. Co-requisite: CVG 5132.
CVG5238 (ENVJ 5912) ADVANCED WATER TREATMENT PROCESSES LAB (1,5cr.)
Bench-scale and pilot-scale experiments required to: a) assess the suitability of different physicochemical processes for the removal of toxic and non-standard contaminants, and b) design a full-scale facility. Tracer tests and none-ideal reactor behaviour, activated carbon adsorption equilibria and kinetics, aeration. Total organic carbon analysis, spectrophotometry. Process analysis, techniques for process evaluation and scale-up including: aeration, analysis of non-ideal flow conditions. Tracer study of three basins, adsorption isotherm tests, activated carbon mini-column tests, oxidation kinetic tests. Prerequisite: CVG 3132 or equivalent. Co-requisite: CVG 5138.
CVG7160 (ENVE 5001) BIOFILM PROCESSES IN WASTEWATER TREATMENT (3cr.)
CVG7161 (ENVE 5102) TRAFFIC RELATED AIR POLLUTION (3cr.)
CVG7162 (ENVE 5103) AMBIENT AIR QUALITY AND POLLUTION MODELLING (3cr.)
CVG7163 (ENVE 5302) CASE STUDIES IN HYDROGEOLOGY (3cr.)
CVG7164 (ENVE 5203) MULTIPHASE FLOW AND CONTAMINANT TRANSPORT MODELLING (3cr.)
Cours additionnels / Additionnal courses
CVG5112 (CIVJ 5502) COMPUTATIONAL HYDRODYNAMICS (3cr.)
Finite volume methods for advection, diffusion and shallow water equations using structured and unstructured grids, finite volume methods for incompressible Navier-Stokes equations (SIMPLE, SIMPLEC, PISO), error analysis: numerical diffusion and dispersion, truncation errors and Fourier analysis, introduction to turbulence modeling, introduction to methods for tracking free surfaces and moving beds introduction to other methods in hydrodynamics: finite element, finite difference, Chebyshev and Fourier spectra, semi Lagrangian and vortex methods inhydrodynamics.
CVG5311 BRIDGE DESIGN (3cr.)
Design of highway bridges according to the Canadian Highway Bridge Design Code (CHBDC). Comparisons with other bridge codes (e.g., the American Code - AASHTO, the European, the New Zealand, and the British bridge codes). The topics covered include the following: main structural components of highway bridges; types of highway bridges; serviceability and ultimate limit state design requirements; design loads (dead loads, traffic loads, seismic loads, and wind loads); load combinations; code specifications for loading due to traffic (design lane, characteristics of design truck, positions of design truck on bridge, etc.); dynamic effects due to traffic loads; practical approaches specified in CHBDC for determining forces and deflections in structural embers; principles of capacity design in highway bridges.
CVG5312 DURABILITY OF CONCRETE STRUCTURES (3cr.)
Properties of cementitious materials (constituents of concrete; hydration of cement; structure of hardened concrete; transport processes in concrete); deterioration of concrete (built-in problems; construction defects; cracking; dimensional stability; alkali-aggregate reaction; sulphate attack; corrosion of reinforcing steel; freezing-thawing cycles); (iii) evaluation of concrete structures (inspection; in-situ testing; laboratory testing); (iv) repair and maintenance of concrete (repair materials; repair procedures and techniques; prevention, protection and maintenance); and, (v) durability design (philosophy; modelling of deterioration processes; service life prediction; life-cycle cost analysis.)
CVG5313 SEISMIC ANALYSIS AND DESIGN OF CONCRETE STRUCTURES (3cr.)
Review of seismic hazards in Canada, building code provisions for earthquake loads, uniform hazard spectra, linear elastic modal response spectrum analysis, linear elastic time history analysis, equivalent static force procedure, advanced state-of-the-art nonlinear modeling techniques including the finite element method and fiber modeling, emerging methods such as performance-based earthquake engineering and displacement-based design, ductility concepts, plastic hinge formulations, capacity design philosophy for seismic resistance, seismic analysis and design of common seismic force resisting systems including slender and squat shear walls, moment resisting frames, coupled shear walls, and coupling beams, shear wallmoment resisting frame interaction, and lessons learned from recent earthquakes.
CVG5314 GEOTECHNICAL HAZARDS (3cr.)
Understanding of assessment, prevention, and mitigation of geotechnical hazards, overview of natural and man-made geo-hazards; concepts of hazards, disasters, vulnerability and risks; geotechnical hazards induced by problem soils: fundamentals, assessment, and mitigation; landslide hazards and risk assessment: fundamentals, solutions (prevention, stabilization) for landslides and slope instability; monitoring of landslides and slope; mining geotechnical hazards: hazards related to surface mining geotechnical facilities; hazards related to underground mining geotechnical facilities.
CVG5320 FIRE BEHAVIOUR OF MATERIALS (3cr.)
Fundamentals and scientific aspects of the behaviour of materials during fires and the fire hazards of materials. Topics to be covered include material specifications, thermal and mechanical properties, structural fire response, residual strength, failure criteria, mechanisms of flame retardancy, and standards and testing protocols.
CVG5321 FINITE ELEMENTS IN FIELD PROBLEMS (3cr.)
Use of Galerkin and Ritz finite element formulation to solve one and two dimensional field problems, steady state and timedependent phenomena involving potentials, heat transfer, fluid flow, diffusion, and dispersion with emphasis on practical applications.
Prerequisite: Basic knowledge of third year-level undergraduate engineering mathematics. Exclusion: EVG7402 (ENVE 5402).
CVG5331 (ENVJ 5902) SLUDGE UTILIZATION AND DISPOSAL (3cr.)
Introduction to sludge processing technology and procedures to be used in the planning and design of sludge treatment processes. Evaluate the economics and performance of sludge unit process operations. Selection of methods for final disposition of sludge
CVG5366 MASTER'S SEMINAR IN CIVIL ENGINEERING
Attendance and participation in the monthly seminar. All students must make one presentation and continue to attend throughout the program. Graded S/NS
CVG6000 RAPPORT EN GÉNIE CIVIL / CIVIL ENGINEERING REPORT (1cr.)
CVG6108 (CIVE 5906) DIRECTED STUDIES I (3cr.)
Special courses set up for one student on an exceptional basis. Limited to one in the Master's level and to two total Master's plus PhD.
CVG6109 (CIVE 5907) DIRECTED STUDIES II (3cr.)
Special courses set up for one student on an exceptional basis. Limited to one in the Master's level and to two total Master's plus PhD.
CVG 6301 to 6320 SPECIAL TOPICS IN CIVIL ENGINEERING (3 cr.)
CVG6508 ÉTUDES DIRIGÉES I (3cr.)
Cours individuels créés seulement pour les cas exceptionnels. Un étudiant peut en suivre un au niveau de la maîtrise ou un total de deux pour les études de maîtrise et de doctorat.
CVG6509 ÉTUDES DIRIGÉES II (3cr.)
Cours individuels créés seulement pour les cas exceptionnels. Un étudiant peut en suivre un au niveau de la maîtrise ou un total de deux pour les études de maîtrise et de doctorat.
CVG7999 THÈSE DE M.Sc.A. / MASc THESIS
Pour les étudiants qui écrivent leur thèse de maîtrise après avoir fait leur travail de recherche en laboratoire. / For students writing the Master's thesis after completion of laboratory research.
CVG8366 DOCTORAL SEMINAR IN CIVIL ENGINEERING
Attendance and participation in the monthly seminar. All students must make one presentation and continue to attend throughout the program. Graded S/NS
CVG9998 EXAMEN GÉNÉRAL DE DOCTORAT / COMPREHENSIVE EXAMINATION (PhD)
CVG9999 THÈSE DE DOCTORAT / PhD THESIS
Pour les étudiants qui rédigent leur thèse de doctorat après avoir fait leur travail de recherche en laboratoire. / For students writing their PhD thesis after completion of laboratory research.