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Note: This is the 2014–2015 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 2014–2015 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.
Chemical Engineering : Independent work under the supervision of the thesis advisor(s) leading to a thesis proposal.
Terms: Fall 2014, Winter 2015, Summer 2015
Instructors: Kietzig, Anne-Marie (Fall) Kietzig, Anne-Marie (Winter) Kietzig, Anne-Marie (Summer)
Chemical Engineering : Ongoing research pertaining to thesis.
Terms: Fall 2014, Winter 2015, Summer 2015
Instructors: Kietzig, Anne-Marie (Fall) Kietzig, Anne-Marie (Winter) Kietzig, Anne-Marie (Summer)
Chemical Engineering : Ongoing research pertaining to thesis.
Terms: Fall 2014, Winter 2015, Summer 2015
Instructors: Kietzig, Anne-Marie (Fall) Kietzig, Anne-Marie (Winter) Kietzig, Anne-Marie (Summer)
Prerequisite: CHEE 698
Chemical Engineering : The basics of laboratory safety in a chemical engineering laboratory. Mandatory safety orientation (administration, contacts, fire, waste, emergency procedures) and official WHIMIS training.
Terms: Fall 2014, Winter 2015, Summer 2015
Instructors: Maric, Milan (Fall) Maric, Milan (Winter) Maric, Milan (Summer)
The course must be completed by the end of the first semester in which the course is offered during the student's program.
Restriction: Restricted to Chemical Engineering students.
Chemical Engineering : Demonstration of the safety of students' thesis experiments to the departmental safety committee.
Terms: Fall 2014, Winter 2015, Summer 2015
Instructors: Maric, Milan (Fall) Maric, Milan (Winter) Maric, Milan (Summer)
M.Eng. students must complete the course by the end of the first year of their degree. Ph.D. students must complete the course by the end of the third term of their degree.
Corequisite: CHEE 681
Restriction: Restricted to Chemical Engineering students.
3-4 credits of Chemical Engineering courses at the 500, 600, or 700 level.
4 credits from the following:
Chemical Engineering : General conservation equations for volumes and interfaces; scaling analysis and approximate solutions to diffusion problems; reaction-diffusion processes; phase changes; convective heat and mass transfer; selected advanced topics.
Terms: Fall 2014
Instructors: Hill, Reghan James (Fall)
Chemical Engineering : Theory and application of phase and chemical equilibria in multicomponent systems.
Terms: This course is not scheduled for the 2014-2015 academic year.
Instructors: There are no professors associated with this course for the 2014-2015 academic year.
Chemical Engineering : Rigorous derivation of equations of motion; creeping flow inviscid flow; boundary layer theory; hydrodynamic stability; turbulent flow, separated flows, drag on submerged bodies.
Terms: Fall 2014
Instructors: Leask, Richard L (Fall)
Chemical Engineering : Interpretation of chemical reaction data, especially for heterogeneous systems. Residence time, complete segregation, maximum mixedness, other advanced concepts. Reactor design.
Terms: Winter 2015
Instructors: Berk, Dimitrios (Winter)
Chemical Engineering : The use of chemical engineering and biological principles in the study, design, use and creation of biologically-based processes and products. Topics: biochemical thermodynamics, protein engineering, manipulation of gene expression, transport phenomena and bioreactor design.
Terms: Winter 2015
Instructors: Hoesli, Corinne (Winter)
Restriction: Restricted to graduate students
Chemical Engineering : Methods of weighted residuals; solution to non-linear algebraic equations; stability in nonlinear equations; bifurcations; mesh refinement strategies; convection dominated transport; hyperbolic equations, particle simulation methods.
Terms: This course is not scheduled for the 2014-2015 academic year.
Instructors: There are no professors associated with this course for the 2014-2015 academic year.
Chemical Engineering : Process representation and identification and simulation; sensor stability; sensitivity of feedback control systems; feedward control; discrete representation of continuous systems; controller tuning; adaptive control.
Terms: Fall 2014
Instructors: Perrier, Michel (Fall)
Prerequisite: CHEE 455
4-5 credits of Chemical Engineering or other Engineering or Science courses at the 500, 600, or 700 level.