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3.93
Spring 2026
This course will cover the fundamentals of Process Safety. We will apply chemical engineering fundamentals to identify various hazards within chemical processes and will assess the risks associated with these hazards. This course will also cover the process design approaches and other commonly adopted industry practices used to mitigate, control and/or manage risks associated with chemical processes. Coreq: CHE 3322 or MAE 3140; Prereq: CHE 3321 or MAE 3210
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3.94
Spring 2026
Factors underlying interfacial phenomena, with emphasis on thermodynamics of surfaces, structural aspects, and electrical phenomena; applications such as emulsification, foaming, detergency, sedimentation, flow through porous media, fluidization, nucleation, wetting, adhesion, flotation, electrocapillarity. Prerequisite: Instructor permission.
4.67
3.00
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Spring 2026
Chemical Engineering special topics vary by section.
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Fall 2025
This course will cover the fundamentals of Physical Chemistry with an emphasis on engineering-relevant topics and applications. This course will connect molecular properties to macroscopic observables via the fundamentals of thermodynamics, quantum theory, statistical mechanics, and chemical kinetics. Prerequisites: APMA 2130 and CHEM 1420 or equivalent
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Spring 2026
Weekly meetings of graduate students and faculty for presentations and discussion of research in academic and industrial organizations. May be repeated.
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Fall 2025
Detailed study of graduate course material on an independent basis under the guidance of a faculty member.
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Spring 2026
Formal record of student commitment to project research for Master of Engineering degree under the guidance of a faculty advisor. May be repeated as necessary.
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Spring 2026
For master's students.
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Spring 2026
Formal record of student commitment to master's thesis research under the guidance of a faculty advisor. Registration may be repeated as necessary.
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Spring 2026
For doctoral students.
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