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Ghorashi, Bahman – Chemical Engineering Education, 2020
Studies have shown that students' positive experience during their first year in college plays a significant role in their success in terms of persistence and satisfaction. That premise has been the motivation for the development of a first-year connection course by the Department of Chemical Engineering at Tennessee Tech University. Recent…
Descriptors: Curriculum Design, Engineering Education, Chemical Engineering, College Freshmen
Kopelevich, Dmitry I.; Ziegler, Kirk J.; Lindner, Angela S.; Bonzongo, Jean-Claude J. – Chemical Engineering Education, 2012
Because rapid growth of nanotechnology is expected to lead to intentional and non-intentional releases, future engineers will need to minimize negative environmental and health impacts of nanomaterials. We developed two upper-level undergraduate courses centered on life-cycle assessment of nanomaterials. The first part of the course sequence…
Descriptors: Curriculum Design, Engineering Education, Higher Education, Science Education
Davis, Richard A.; Klein, James A. – Chemical Engineering Education, 2012
This paper presents our pedagogy for chemical process safety (CPS) education across the curriculum. Building on a unifying theme of "Conservation of Life" (COL), we have four goals: 1) Make students aware of CPS/COL principles, 2) Promote a culture of safety, 3) Assess student learning, 4) Require minimal resources. We discuss our experience and…
Descriptors: Safety, Chemical Engineering, Curriculum Development, Curriculum Implementation
Kundu, Sumit; Fowler, Michael W. – Chemical Engineering Education, 2009
There are many professional benefits to pursuing undergraduate design opportunities and capstone projects to both students and faculty advisors. Using a case study on a group of graduates and undergraduates who took part in the Hydrogen Ambassador Competition in 2005 this study will examine the benefits and challenges from the point of view of all…
Descriptors: Undergraduate Study, Competition, Case Studies, Educational Practices

Ng, Terry K-L.; And Others – Chemical Engineering Education, 1988
Describes a chemical engineering course for senior undergraduates and first year graduate students in biochemical engineering. Discusses five experiments used in the course: aseptic techniques, dissolved oxygen measurement, oxygen uptake by yeast, continuous sterilization, and cultivation of microorganisms. (MVL)
Descriptors: Biochemistry, Chemical Engineering, Chemistry, College Science

Coulman, George A. – Chemical Engineering Education, 1986
Reports on the results of a survey done in 1985 about chemical engineering undergraduate curricula. Compares the findings with similar surveys done in previous years, particuluarly 1981. Reveals that only minor changes have occurred since the 1981 survey, but projects greater changes by 1989. (TW)
Descriptors: Chemical Engineering, Chemistry, College Mathematics, College Science

Glandt, Eduardo D. – Chemical Engineering Education, 1988
Describes an engineering course for graduate study in random media. Summarizes random media as bulk properties of ordered and disordered two-phase materials. Gives course outline for one semester. Topics include: disordered systems, microstructure determination, survey of models, connectivity, and effective properties. (MVL)
Descriptors: College Science, Course Content, Course Descriptions, Course Objectives

Deshpande, Pradeep B. – Chemical Engineering Education, 1988
Describes an engineering course for graduate study in process control. Lists four major topics: interaction analysis, multiloop controller design, decoupling, and multivariable control strategies. Suggests a course outline and gives information about each topic. (MVL)
Descriptors: Automation, College Science, Course Content, Course Descriptions
Moghe, Prabhas V.; Roth, Charles M. – Chemical Engineering Education, 2006
A wide range of biotechnological and biomedical processes and products involves the design, synthesis, and analysis of biological interfaces. Such biointerfaces mediate interactions between living cells or intracellular species and designed materials or biologics. Incorporating the experiences of a NSF-sponsored IGERT (Integrative Graduate…
Descriptors: Graduate Students, Graduate Study, Interdisciplinary Approach, Science Curriculum
Wilcox, Jennifer – Chemical Engineering Education, 2006
A graduate-level computational chemistry course was designed and developed and carried out in the Department of Chemical Engineering at Worcester Polytechnic Institute in the Fall of 2005. The thrust of the course was a reaction assignment that led students through a series of steps, beginning with energetic predictions based upon fundamental…
Descriptors: Chemical Engineering, Computation, Science Curriculum, Curriculum Design

Lees, Frank P. – Chemical Engineering Education, 1980
Describes graduate and undergraduate program in Plant Engineering at Loughborough University of Technology, England. Central theme of program is that of failures which occur on plant. Almost all topics are related to deviation, maloperation, or failure in some way. (Author/JN)
Descriptors: Chemical Industry, Chemistry, Curriculum Design, Engineering Education

Biernacki, Joseph J.; Ayers, Jerry B. – Chemical Engineering Education, 2000
Reports on the experiences of 12 students--three senior undergraduates majoring in chemical engineering, five master-level, and four doctoral students--in a course titled "Interdisciplinary Studies in Multi-Scale Simulation of Concrete Materials". Course objectives focused on incorporating team-oriented interdisciplinary experiences into the…
Descriptors: Chemical Engineering, Cooperative Learning, Curriculum Design, Educational Strategies

Arkun, Yaman; And Others – Chemical Engineering Education, 1988
Describes a graduate engineering course which specializes in model predictive control. Lists course outline and scope. Discusses some specific topics and teaching methods. Suggests final projects for the students. (MVL)
Descriptors: Automation, Chemistry, College Science, Course Content

Briedis, Daina M. – Chemical Engineering Education, 1988
Describes a course which has been designed to develop oral and written communication skills appropriate for engineering graduate students and for the demands of their post-graduate careers. Provides course strategy and content. (MVL)
Descriptors: College Science, Communication Skills, Course Content, Course Descriptions