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Carlos J. Landaverde-Alvarado – Chemical Engineering Education, 2024
We redesigned our undergraduate laboratories to create a structured sequence that continuously improves the learning experience of students. We utilized a PBL and PjBL approach in which students are progressively introduced to ill-structured open-ended problems, the development of projects, and the creation of research products. We dynamically…
Descriptors: Student Projects, Active Learning, Problem Based Learning, Undergraduate Students
Moore, Mark; Counce, Robert M.; Watson, Jack S.; Zawodzinski, Thomas A.; Kamath, Haresh – Chemical Engineering Education, 2012
The purpose of this work is to develop an evolutionary procedure to be used by Chemical Engineering students for the base-case design of a Vanadium Redox-Flow Battery. The design methodology is based on the work of Douglas (1985) and provides a profitability analysis at each decision level so that more profitable alternatives and directions can be…
Descriptors: Methods, Chemical Engineering, Design, Costs
DeschĂȘnes, Jean-Sebastien; Barka, Noureddine; Michaud, Mario; Paradis, Denis; Brousseau, Jean – Chemical Engineering Education, 2013
A joint learning activity in process control is presented, in the context of a distance collaboration between engineering and technical-level students, in a similar fashion as current practices in the industry involving distance coordination and troubleshooting. The necessary infrastructure and the setup used are first detailed, followed by a…
Descriptors: Learning Activities, Distance Education, Technical Occupations, Engineering
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
Le Roux, G. A. C.; Reis, G. B.; de Jesus, C. D. F.; Giordano, R. C.; Cruz, A. J. G.; Moreira, P. F., Jr.; Nascimento, C. A. O.; Loureiro, L. V. – Chemical Engineering Education, 2010
This paper describes the use of weblabs--web based experiments--for cooperative learning by students working together from two different locations to conduct experiments and write reports.
Descriptors: Cooperative Learning, Chemical Engineering, Teaching Methods, Educational Technology
Kontogeorgis, Georgios M.; Michelsen, Michael L.; Clement, Karsten H. – Chemical Engineering Education, 2009
According to so-called "Bologna model," many technical universities in Europe have divided their educations into separate 3-year Bachelor and 2-year Master programs (followed by an optional Ph.D. study). Following the "Bologna model," DTU has recently transformed its 5-year engineering education into a 3-year Bachelor (B.Sc.)…
Descriptors: Engineering Education, Textbooks, Thermodynamics, Graduates
Peer reviewedAngus, John C. – Chemical Engineering Education, 1977
Gives a brief history of the chemical engineering department at Case Institute of Technology and discusses its present curriculum, goals, and faculty. (MLH)
Descriptors: Curriculum, Engineering, Engineering Education, Higher Education
Peer reviewedWestwater, J. W. – Chemical Engineering Education, 1976
Describes the chemical engineering department and programs at the University of Illinois-Urbana. (MLH)
Descriptors: Engineering, Engineering Education, Graduate Study, Higher Education
Peer reviewedShah, Dhananjai B.; Hayhurst, David T. – Chemical Engineering Education, 1985
The zeolite synthesis and modification research program at Cleveland State University (Ohio) is described, including program philosophy and objectives, and research facilities. Also considers zeolite synthesis, adsorption on zeolites, kinetics of adsorption, and zeolite catalysis research. (JN)
Descriptors: Chemical Engineering, Engineering Education, Higher Education, Program Descriptions
Peer reviewedDavidson, Burton – Chemical Engineering Education, 1977
Discusses the chemical engineering department at Rutgers University, emphasizing the traditional graduate program and a bio-chemical engineering program. (MLH)
Descriptors: Educational Programs, Engineering, Engineering Education, Higher Education
Peer reviewedCosgrove, Stanley, Ed.; And Others – Chemical Engineering Education, 1982
Describes the Department of Chemical Engineering at the University of Cincinnati, including departmental history and facilities, graduate and undergraduate programs, and current faculty and their research interests. (JN)
Descriptors: Chemistry, College Science, Departments, Engineering Education
Peer reviewedKranich, W. L.; Zwiebel, I. – Chemical Engineering Education, 1976
Describes the innovative chemical engineering program at Worcester Polytechnic Institute which stresses project work, individualized programs and instruction, and increased faculty involvement. (MLH)
Descriptors: Curriculum, Educational Innovation, Educational Programs, Engineering
Peer reviewedCase, Jennifer M.; Fraser, Duncan M. – Chemical Engineering Education, 2002
Concerns a second-year chemical engineering course in which recommendations such as reducing content coverage, promoting active learning in the classroom, and using assessment methods that require students to demonstrate a high level of understanding and ability were adopted. Presents an in-depth investigation into the influence of the course…
Descriptors: Chemical Engineering, Chemistry, Foreign Countries, Higher Education
Peer reviewedLarson, Maurice; Seagrave, Richard – Chemical Engineering Education, 1976
Discusses the evolution of the chemical engineering department at Iowa State. Describes the undergraduate and graduate programs, the department facilities, and faculty activities. (MLH)
Descriptors: Chemistry, Curriculum, Departments, Educational Programs
Peer reviewedBailie, Richard C.; And Others – Chemical Engineering Education, 1985
West Virginia University was designated by the National Science Foundation (NSF) as the NSF University/Industry Fluidization and Fluid Particle Cooperative Research Center. Background information about the center, its research program (focusing on fundamental problems of reacting systems at elevated temperatures), and future prospects are…
Descriptors: Chemical Engineering, Engineering Education, Higher Education, Industry

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