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Jamieson, Marnie V. – Journal of Chemical Education, 2020
The COVID-19 pandemic public health measures caused a shift to fully online teaching and learning with minimal lead time two-thirds of the way through a 13 week term. Students and instructors pivoted from blended with face-to-face instruction to fully online learning over a weekend. Our team- and project-based chemical engineering design courses…
Descriptors: Electronic Learning, Chemical Engineering, Engineering Education, COVID-19
Trenshaw, Kathryn F.; Henderson, Jerrod A.; Miletic, Marina; Seebauer, Edmund G.; Tillman, Ayesha S.; Vogel, Troy J. – Chemical Engineering Education, 2014
Despite high enrollments and budget cutbacks affecting many programs, students still need design experience which prepares them for a globally competitive workforce. We demonstrate that team design projects can be threaded across the curriculum even at large institutions with high departmental student to faculty ratios (~50:1). We assessed student…
Descriptors: Chemical Engineering, College Science, Teamwork, Design
Saatdjian, Esteban; Lesage, François; Mota, José Paulo B. – Chemical Engineering Education, 2014
In Saatdjian, E., Lesage, F., and Mota, J.P.B, "Transport Phenomena Projects: A Method to Learn and to Innovate, Natural Convection Between Porous, Horizontal Cylinders," "Chemical Engineering Education," 47(1), 59-64, (2013), the numerical solution of natural convection between two porous, concentric, impermeable cylinders was…
Descriptors: Science Instruction, College Science, Chemistry, Chemical Engineering
Senra, Michael; Fogler, H. Scott – Chemical Engineering Education, 2014
In their collegiate studies, students are given a wide range of concepts, theories, and equations to assist them in their future endeavors. However, students have not been sufficiently exposed to practical critical thinking methodologies that will benefit them as they encounter open-ended problems. A course developed at the University of Michigan…
Descriptors: Science Instruction, College Science, Creative Thinking, Chemical Engineering
Liberatore, Matthew W.; Marr, David W. M.; Herring, Andrew M.; Way, J. Douglas – Chemical Engineering Education, 2013
Inspired by YouTube videos, students created homework problems as part of a class project. The project has been successful at different parts of the semester and demonstrated learning of course concepts. These new problems were implemented both in class and as part of homework assignments without significant changes. Examples from a material and…
Descriptors: Homework, Science Instruction, Social Networks, Educational Technology
Yang, Allen H. J.; Dimiduk, Kathryn; Daniel, Susan – Chemical Engineering Education, 2011
We present a simplified human alcohol metabolism model for a mass balance team project. Students explore aspects of engineering in biotechnology: designing/modeling biological systems, testing the design/model, evaluating new conditions, and exploring cutting-edge "lab-on-a-chip" research. This project highlights chemical engineering's impact on…
Descriptors: Feedback (Response), Metabolism, Biotechnology, Chemical Engineering
Heys, Jeffrey J. – Chemical Engineering Education, 2008
Group projects are common in undergraduate chemical engineering course. Wikis are a new medium for group projects because they are Webpages that are edited using the same software used to view the Webpage. Advantages include the ability to record changes made by each individual (helpful for grading), ability to continuously monitor progress, and a…
Descriptors: Chemical Engineering, Science Instruction, College Science, Student Projects
Edgar, Thomas F. – Chemical Engineering Education, 2007
The emerging energy situation in the United States puts chemical engineering at the forefront of the large research and education effort that will need to be undertaken during the next 20 years. Chemical engineering undergraduates and graduate students will need to be literate on energy alternatives and the interconnection of technology,…
Descriptors: Nuclear Energy, Chemistry, Energy, Science Instruction
Mosto, Patricia; Savelski, Mariano; Farrell, Stephanie H.; Hecht, Gregory B. – Chemical Engineering Education, 2007
Integrating biology in the chemical engineering curriculum seems to be the future for chemical engineering programs nation and worldwide. Rowan University's efforts to address this need include a unique chemical engineering curriculum with an intensive biology component integrated throughout from freshman to senior years. Freshman and Sophomore…
Descriptors: Elective Courses, Biotechnology, Biology, Chemical Engineering

Macias-Machin, Agustin; And Others – Chemical Engineering Education, 1990
Discusses the use of an individually designed experiment for a chemical engineering laboratory course. Lists main ideas of the method. Provides an example of the experiment including ways to answer the questions and extensions. (YP)
Descriptors: Chemical Engineering, College Science, Course Organization, Engineering Education

Mendoza-Bustos, S. A.; And Others – Chemical Engineering Education, 1991
Described is a project where students gain experience in handling large volumes of hazardous materials, process start up and shut down, equipment failures, operational variations, scaling up, equipment cleaning, and run-time scheduling while working in a modern pilot plant. Included are the system design, experimental procedures, and results. (KR)
Descriptors: Chemical Engineering, Chemistry, College Science, Experiential Learning

Hanzevack, E. L.; McKean, R. A. – Chemical Engineering Education, 1991
Discussed is the importance of engineering students having effective communication skills so they will be able to discuss their work, present their findings, and propose a course of action. Suggestions for organizing and delivering presentations are included. (KR)
Descriptors: Chemical Engineering, Chemistry, College Science, Communication Skills

Pritchard, Colin – Chemical Engineering Education, 1986
Discusses the need to design distillation columns that are more energy efficient. Describes a "design and build" project completed by two college students aimed at demonstrating the principles of vapour compression distillation in a more energy efficient way. General design specifications are given, along with suggestions for teaching…
Descriptors: Chemical Engineering, Chemistry, College Science, Computer Assisted Instruction

Venkatasubramanian, V. – Chemical Engineering Education, 1986
Describes a course on artificial intelligence (AI) in process engineering taught at Columbia University to chemical engineering students, using an AI methodology known as Knowledge-Based Expert Systems (KBES). Provides a description of the course, the lecture topics, and a synopsis of some of the student projects. (TW)
Descriptors: Artificial Intelligence, Chemical Engineering, College Science, Computer Uses in Education

Miller, William M.; Petrich, Mark A. – Chemical Engineering Education, 1991
A class in which students learn about the roles that chemical engineers play in a variety of industries is described. Outlines from the first two class offerings and discussions of the use of guest speakers, videos, plant visits, student projects, and grading are included. (KR)
Descriptors: Career Awareness, Chemical Engineering, Chemistry, College Science