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Aaron G. Frye; Matthew E. Cooper; Lisa G. Bullard – Chemical Engineering Education, 2024
The outcomes of students who completed a ChE graduate bridging course sequence were compared against a group of students with ad hoc preparation. Bridging course students were found to have a modestly higher rate of graduate degree conferral and slightly lower graduate GPAs (though the GPA effect size was found to be small to medium) compared to…
Descriptors: Chemical Engineering, Engineering Education, Outcomes of Education, Graduate Students
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Medford, Andrew J.; Boukouvala, Fani; Grover, Martha A.; Sholl, David; Meredith, Carson; Cheng, Pengfei; Choi, Sihoon; Gusmão, Gabriel S.; Kilwein, Zachary; Ravutla, Suryateja; Wirth, Fatimah; Wooley, Jennifer; Sewer, Zaid – Chemical Engineering Education, 2022
The Graduate Certificate in Data Science for the Chemical Industries was designed to provide skills to working professionals, via a fully online and asynchronous format. The certificate may also be earned by undergraduate and graduate students at Georgia Tech. The certificate consists of four courses. The two core courses are Data Analytics for…
Descriptors: Chemistry, Science Instruction, Statistics Education, Chemical Engineering
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Pramounmat, Nuttanit; Renner, Julie – Chemical Engineering Education, 2020
A hands-on polypeptide engineering experience that focuses on project management was developed and incorporated in a graduate-level course. The goal was to have doctoral students in chemical engineering learn about project planning tools, and experience what it might be like to plan and execute a project in industry or business. The motivation…
Descriptors: Career Readiness, Experiential Learning, Program Administration, Graduate Students
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Hong, Moo Sun; Sun, Weike; Anthony, Brian W.; Braatz, Richard D. – Chemical Engineering Education, 2022
This article describes experiences with teaching process data analytics and machine learning, including in: (1) a joint undergraduate/graduate course for students in chemical and mechanical engineering and engineering management; and (2) an undergraduate chemical engineering concentration in process data analytics. The article also describes…
Descriptors: Teaching Methods, Graduate Students, Undergraduate Students, Chemical Engineering
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Aucoin, Marc G.; Jolicoeur, Mario – Chemical Engineering Education, 2009
Undergraduate and graduate engineering training differ significantly. The former looks to established protocols and formulas to design and control processes while the latter often involves questioning established protocols and formulas to better suit and describe phenomena. Although we do not dispute the benefits of practical hands-on approaches,…
Descriptors: Engineering Education, Graduate Students, Research Problems, Research Design
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Maase, Eric L.; High, Karen A. – Chemical Engineering Education, 2008
"Chemical Engineering Modeling" is a first-semester graduate course traditionally taught in a lecture format at Oklahoma State University. The course as taught by the author for the past seven years focuses on numerical and mathematical methods as necessary skills for incoming graduate students. Recent changes to the course have included Visual…
Descriptors: Graduate Students, Mathematical Models, Chemical Engineering, Programming
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Holles, Joseph H. – Chemical Engineering Education, 2007
The increasingly diverse backgrounds of today's graduate students have resulted in a wide range of ideas about what graduate school actually entails and what is expected of the students. Therefore, a graduate course titled "Theory and Methods of Research" was developed and is required for all chemical engineering graduate students at…
Descriptors: Graduate Students, Graduate Study, Chemical Engineering, Educational Experience
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Eric Favre; Laurent Marchal-Heussler; Alain Durand; Noël Midoux; Christine Roizard – Chemical Engineering Education, 2005
Generally speaking, chemical engineering teaching programs at the undergraduate level focus on the continuous production of a single molecule, for which selectivity, yield, purity, as well as safety and environmental aspects are essential. Nevertheless, an increasing number of chemical engineers in Chemical Process Industries (CPI) have to face…
Descriptors: Chemical Engineering, Engineering Education, Undergraduate Students, Industry