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Note: This is the 2012–2013 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 2012–2013 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.
The program curriculum is designed to provide a rigorous foundation in physical sciences and the flexibility to create an individualized program in preparation for careers in industry, teaching, and research. It is intended to provide an excellent preparation for graduate work in the earth and planetary sciences.
Note: Honours students must maintain a CGPA equal to or greater than 3.20.
Earth & Planetary Sciences : Primary igneous and sedimentary structures, attitudes of planes and lines, stress and strain, fracturing of rocks, faulting, homogeneous strain, description and classification of folds, foliation and lineation, orthographic and stereographic projections.
Terms: Winter 2013
Instructors: Hynes, Andrew J (Winter)
Winter
2 hours lectures, 3 hours laboratory
Earth & Planetary Sciences : Crystal chemistry and identification of the principal rock-forming and ore minerals. Elementary crystallography. Optional 2-day field trip.
Terms: Fall 2012
Instructors: Paquette, Jeanne (Fall)
Earth & Planetary Sciences : A survey of igneous, sedimentary and metamorphic rocks and the processes responsible for their formation. The laboratory will emphasize the recognition of rocks in both hand-specimen and thin section using optical microscopes.
Terms: Winter 2013
Instructors: Francis, Donald M (Winter)
Winter
2 hours lectures, 3 hours laboratory
Prerequisite: EPSC 210
Earth & Planetary Sciences : Basic concepts in geochemistry and the application of geochemical principles of chemistry to geological subdisciplines. Particular emphasis on origin of elements, controls on their distribution in Earth and cosmos, isotopes, organic geochemistry and water chemistry. Application of phase diagrams to geology.
Terms: Fall 2012
Instructors: Baker, Don (Fall)
Fall
2 hours lecture, 3 hours laboratory
Earth & Planetary Sciences : Interpretation of stratified rocks; history of Earth with special emphasis on the regions of North America; outline of the history of life recorded in fossils.
Terms: Fall 2012
Instructors: Halverson, Galen (Fall)
Fall
3 hours lectures
Earth & Planetary Sciences : Interaction of minerals with electromagnetic radiation. Optical mineralogy on thin and polished sections. Demonstrations of other spectroscopic techniques applied to the identification of minerals and to the analysis of their composition and structure.
Terms: Winter 2013
Instructors: Francis, Donald M (Winter)
Winter
6 hours laboratory and relevant in-lab lectures
Prerequisite: EPSC 210
Mathematics & Statistics (Sci) : Taylor series, Taylor's theorem in one and several variables. Review of vector geometry. Partial differentiation, directional derivative. Extreme of functions of 2 or 3 variables. Parametric curves and arc length. Polar and spherical coordinates. Multiple integrals.
Terms: Fall 2012, Winter 2013, Summer 2013
Instructors: Jonsson, Wilbur; Rogers, Mathew (Fall) Jonsson, Wilbur; Canzani Garcia, Yaiza (Winter) Cormier, Eric (Summer)
Mathematics & Statistics (Sci) : Review of matrix algebra, determinants and systems of linear equations. Vector spaces, linear operators and their matrix representations, orthogonality. Eigenvalues and eigenvectors, diagonalization of Hermitian matrices. Applications.
Terms: Fall 2012, Winter 2013
Instructors: El Hajj, Layan; Jonsson, Wilbur (Fall) Jonsson, Wilbur; Wu, Hehui (Winter)
Earth & Planetary Sciences : Physical properties of Earth and the processes associated with its existence as inferred from astronomy, geodesy, seismology, geology, terrestrial magnetism and thermal evolution.
Terms: Fall 2012
Instructors: Liu, Yajing (Fall)
Fall
3 hours lectures
Prerequisite: MATH 222
Earth & Planetary Sciences : Seismic wave theory; body waves, surface waves and free oscillations; seismicity and earthquakes; seismology and Earth's internal structure.
Terms: Winter 2013
Instructors: Jensen, Olivia (Winter)
Earth & Planetary Sciences : Introduction to modern techniques for combining geological, geophysical, and geochemical measurements with theoretical knowledge about Earth and other planets. Use of tools from time series analysis and inverse methods to build models and test hypotheses within the Earth and Planetary Sciences.
Terms: Fall 2012
Instructors: Minarik, William (Fall)
Fall
2 hours lectures, 3 hours laboratory
Prerequisites: Completion of U1 year in Earth & Planetary Sciences or permission of instructor
Earth & Planetary Sciences : Rheology of the Earth, mechanics of the crust and mantle and core, convection in the mantle, evolution and kinematics and deformations of the oceanic and continental plates, thermal evolution of the Earth, the unifying theory of plate tectonics.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Winter
3 hours lectures
Prerequisites: EPSC 320, Calculus 3 or equivalent
Earth & Planetary Sciences : Physical properties, nucleation, crystallization, differentiation and emplacement of magmas. Integrated studies on various rock suites.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : A written proposal outlining the studies to be undertaken must be submitted to the undergraduate Student Adviser by May 1st of the U2 year. The proposal will be reviewed by a committee and a decision forwarded by mail. If approved the investigation will be supervised by a staff member, and the results must be presented in the form of an undergraduate thesis.
Terms: Fall 2012
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Fall
Restriction: For Honours students in 3rd year
Students must register for both EPSC 480D1 and EPSC 480D2
No credit will be given for this course unless both EPSC 480D1 and EPSC 480D2 are successfully completed in consecutive terms
Earth & Planetary Sciences : See EPSC 480D1 for course description.
Terms: Winter 2013
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Winter
Prerequisite: EPSC 480D1
No credit will be given for this course unless both EPSC 480D1 and EPSC 480D2 are successfully completed in consecutive terms
Earth & Planetary Sciences : The gravity field of the Earth and planets, body and orbital dynamics of the Earth, moon and planets, tidal interactions of the Earth-moon-sun system, deformation of the Earth under static and dynamic loads, the magnetic field of the Earth and planets: the magnetosphere, the external radiation belts, magnetohydrodynamic models of the core dynamo, geochemical convection in the core, fluid dynamic motions of the outer core, dynamics of the inner core.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : Examines the implications of phase equilibria and the compositions of meteorites and the solar system for the formation and internal differentiation of the terrestrial planets and the nature of chemical fractionation processes in both planetary interiors and the solar system as a whole.
Terms: Fall 2012
Instructors: Francis, Donald M (Fall)
Mathematics & Statistics (Sci) : Derivative as a matrix. Chain rule. Implicit functions. Constrained maxima and minima. Jacobians. Multiple integration. Line and surface integrals. Theorems of Green, Stokes and Gauss. Fourier series with applications.
Terms: Fall 2012, Winter 2013, Summer 2013
Instructors: Xu, Jian-Jun (Fall) Jonsson, Wilbur (Winter) Roth, Charles (Summer)
Mathematics & Statistics (Sci) : First order ordinary differential equations including elementary numerical methods. Linear differential equations. Laplace transforms. Series solutions.
Terms: Fall 2012, Winter 2013, Summer 2013
Instructors: Xu, Jian-Jun (Fall) Eremin, Alexey (Winter) Makhmali, Omid (Summer)
Mathematics & Statistics (Sci) : Error analysis. Numerical solutions of equations by iteration. Interpolation. Numerical differentiation and integration. Introduction to numerical solutions of differential equations.
Terms: Fall 2012
Instructors: Bartello, Peter (Fall)
Mathematics & Statistics (Sci) : First order equations, geometric theory; second order equations, classification; Laplace, wave and heat equations, Sturm-Liouville theory, Fourier series, boundary and initial value problems.
Terms: Winter 2013
Instructors: Feys, Jan (Winter)
Physics : The electrostatic field and scalar potential. Dielectric properties of matter. Energy in the electrostatic field. Methods for solving problems in electrostatics. The magnetic field. Induction and inductance. Energy in the magnetic field. Magnetic properties of matter. Maxwell's equations. The dipole approximation.
Terms: Fall 2012
Instructors: Dasgupta, Keshav (Fall)
3 credits, one of:
Physics : Translational motion under Newton's laws; forces, momentum, work/energy theorem. Special relativity; Lorentz transforms, relativistic mechanics, mass/energy equivalence. Topics in rotational dynamics. Noninertial frames.
Terms: Fall 2012
Instructors: Guo, Hong (Fall)
Physics : Newton's laws, work energy, angular momentum. Harmonic oscillator, forced oscillations. Inertial forces, rotating frames. Central forces, centre of mass, planetary orbits, Kepler's laws.
Terms: Fall 2012
Instructors: Brandenberger, Robert (Fall)
plus 9 credits (three courses) chosen from the following:
Note: Courses at the 300 level or higher in other departments in the Faculties of Science and Engineering may also be used as complementary credits, with the permission of the Director of undergraduate studies.
Earth & Planetary Sciences : Preservation of fossils; the fossil record of invertebrates; use of fossils in stratigraphy and paleoecology; fossils in evolutionary studies. Fossils of invertebrates are studied in the laboratory.
Terms: Winter 2013
Instructors: Paquette, Jeanne (Winter)
Earth & Planetary Sciences : Processes and products of modern and ancient carbonate and siliciclastic depositional environments. Sequence stratigraphy as a tool for studying the fundamental controls (sea level, tectonics, sediment supply, etc.) on stratigraphic architecture.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : Methods in geophysical surveying including gravity, magnetism, electromagnetism, resistivity and seismology; application to exploration and near surface environmental and hydrological targets are included, along with field applications of techniques.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : Discussion of crystal structures and compositions of important mineral groups, especially oxides, sulphides and silicates. Solid solution. Relation of structure to morphology and to chemical and physical properties of the rock-forming minerals.
Terms: Fall 2012
Instructors: Paquette, Jeanne (Fall)
Earth & Planetary Sciences : Geochronology, the fractionation of the stable isotopes, and applications to petrology and mineral deposits.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Fall
3 hours lectures
Prerequisites: equivalent of the U2 core program.
Earth & Planetary Sciences : The physical mechanisms which drive volcanoes and volcanic activity are presented. Descriptive, practical and theoretical approaches to the study of volcanoes are discussed.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : History of chemical oceanography. Seawater composition and definition of salinity/chlorinity. Minor and trace-element distribution in the ocean. Geochemical mass balance. Dissolved gases in sea water. CO2 and the carbonate system. Chemical speciation. Physical chemistry of seawater. Organic matter and the carbon cycle in the marine environment. Sediment geochemistry.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : Advanced thermodynamics and kinetics will be applied to construct models that quantitatively investigate geochemical processes. Topics include, but are not restricted to: activity-composition relationships in solids, liquids and fluids, crystallization and melting, precipitation and dissolution, rates of geochemical processes, interaction of geological liquids and fluids with rocks and minerals.
Terms: Winter 2013
Instructors: Baker, Don (Winter)
Earth & Planetary Sciences : Investigation of the primary mechanisms causing the diversity of igneous rock compositions on the Earth, other planets, asteroids, and meteorite parent bodies.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Winter
2 hours lectures, 1 hour seminar
Prerequisite: EPSC 423
Earth & Planetary Sciences : Introduction to groundwater flow through porous media. Notions of fluid potential and hydraulic head. Darcy flux and Darcy's Law. Physical properties of porous media and their measurement. Equation of groundwater flow. Flow systems. Hydraulics of pumping and recharging wells. Notions of hydrology. Groundwater quality and contamination. Physical processes of contaminant transport.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Winter
3 hours lectures, 1-2 hours laboratory
Prerequisite: permission of the instructor
Earth & Planetary Sciences : Research seminar and/or lecture with readings in topics concerning aspects of current interests in Earth & Planetary Sciences.
Terms: Fall 2012, Winter 2013
Instructors: Rowe, Christen Danielle; Liu, Yajing (Winter)
Fall or Winter
2 hours seminar, permission of department undergraduate advisor
Earth & Planetary Sciences : Research seminar and/or lecture with readings in topics concerning aspects of current interest in Earth & Planetary Sciences.
Terms: Fall 2012, Winter 2013
Instructors: Galbraith, Eric Douglas (Winter)
Fall or Winter
2 hours seminar, permission of department undergraduate advisor
Earth & Planetary Sciences : Research seminar and/or lecture with readings in topics concerning aspects of current interest in Earth & Planetary Sciences.
Terms: Fall 2012, Winter 2013
Instructors: van Hinsberg, Vincent Johan (Winter)
Fall or Winter
2 hours seminar, permission of department undergraduate advisor
Earth & Planetary Sciences : Physicochemical controls of hydrothermal mineral deposition. Discussion of fluid inclusion theory and application; stable isotope systematics, wall-rock alteration; ore mineral solubility and speciation; and mechanisms of mineral deposition.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : Genesis of hydrothermal mineral deposits. Discussion of geological setting, fluid and metal sources, method of metal transport, and factors controlling metal concentration for a selection of hydrothermal mineral deposit types.
Terms: This course is not scheduled for the 2012-2013 academic year.
Instructors: There are no professors associated with this course for the 2012-2013 academic year.
Earth & Planetary Sciences : An in-depth approach to physical and chemical processes associated with volcanic systems. Examination of magma chamber dynamics, magma behaviour in conduits, and eruption mechanisms. Study of eruptive products including pyroclastic deposits, lava flows and lava domes, and volcanic gases. Volcanic-tectonic and magma-hydrothermal interactions.
Terms: Winter 2013
Instructors: Stix, John (Winter)
Prerequisite: EPSC 530 or permission of instructor
Earth & Planetary Sciences : The use of chemical thermodynamics to study fluid-rock interactions with an emphasis on the aqueous phase. The course will introduce basic concepts and will discuss aqueous complexation, mineral surface adsorption, and other controls on crustal fluid compositions. Applications will range from considering contaminated groundwater systems to metamorphic reactions.
Terms: Fall 2012
Instructors: Mucci, Alfonso (Fall)
Earth & Planetary Sciences : Seminar course devoted to field case studies that illustrate the applications of geochemical principles to solving geologic problems. Each student will prepare and lead a class devoted to a geochemical subject of their own choosing.
Terms: Winter 2013
Instructors: Baker, Don; Mucci, Alfonso (Winter)
Winter
3 hours seminar
Prerequisite: permission of instructor