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Showing 1 to 15 of 176 results
Alnaizy, Raafat; Abdel-Jabbar, Nabil; Ibrahim, Taleb H.; Husseini, Ghaleb A. – Chemical Engineering Education, 2014
Introductions of computer-aided software and simulators are implemented during the sophomore-year of the chemical engineering (ChE) curriculum at the American University of Sharjah (AUS). Our faculty concurs that software integration within the curriculum is beneficial to our students, as evidenced by the positive feedback received from industry…
Descriptors: Computer Software, Computer Simulation, College Science, Chemical Engineering
Young, Colin; Butterfield, Anthony E. – Chemical Engineering Education, 2014
The rising need for engineers has led to increased interest in community outreach in engineering departments nationwide. We present a sustainable outreach model involving trained undergraduate mentors to build ties with K-12 teachers and students. An associated online module database of chemical engineering demonstrations, available to educators…
Descriptors: Science Instruction, Undergraduate Students, Mentors, Teamwork
Jaubert, Jean-Noël; Privat, Romain – Chemical Engineering Education, 2014
The double-tangent construction of coexisting phases is an elegant approach to visualize all the multiphase binary systems that satisfy the equality of chemical potentials and to select the stable state. In this paper, we show how to perform the double-tangent construction of coexisting phases for binary systems modeled with the gamma-phi…
Descriptors: Science Instruction, Chemical Engineering, Energy, Equations (Mathematics)
Falconer, John L.; Nicodemus, Garret D. – Chemical Engineering Education, 2014
Interactive Mathematica simulations with graphical displays of system behavior are an excellent addition to chemical engineering courses. The Manipulate command in Mathematica creates on-screen controls that allow users to change system variables and see the graphical output almost instantaneously. They can be used both in and outside class. More…
Descriptors: Computer Simulation, Mathematics, Engineering Education, Chemical Engineering
Brooks, Bill J.; Gilbuena, Debra M.; Krause, Stephen J.; Koretsky, Milo D. – Chemical Engineering Education, 2014
Active learning in class helps students develop deeper understanding of chemical engineering principles. While the use of multiple-choice ConcepTests is clearly effective, we advocate for including student writing in learning activities as well. In this article, we demonstrate that word clouds can provide a quick analytical technique to assess…
Descriptors: Active Learning, Chemical Engineering, Engineering Education, Science Education
Orbey, Nese; Clay, Molly; Russell, T.W. Fraser – Chemical Engineering Education, 2014
An approach to explain chemical engineering through a Web-based interactive game design was developed and used with college freshman and junior/senior high school students. The goal of this approach was to demonstrate how to model a lab-scale experiment, and use the results to design and operate a chemical reactor. The game incorporates both…
Descriptors: Chemical Engineering, Engineering Education, Science Education, Web Based Instruction
Deschênes, 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
Prince, Michael; Borrego, Maura; Henderson, Charles; Cutler, Stephanie; Froyd, Jeff – Chemical Engineering Education, 2013
Traditional lecturing remains the most prevalent mode of instruction despite overwhelming research showing the increased effectiveness of many alternate instructional strategies. This study examines chemical engineering instructors' awareness and use of 12 such instructional strategies. The study also examines how chemical engineering…
Descriptors: Chemical Engineering, Core Curriculum, Educational Strategies, Instructional Effectiveness
Heath, Daniel E.; Hoy, Mary; Rathman, James F.; Rohdieck, Stephanie – Chemical Engineering Education, 2013
The Chemical and Biomolecular Engineering Department at The Ohio State University in collaboration with the University Center for the Advancement of Teaching developed the Chemical Engineering Mentored Teaching Experience. The Mentored Teaching Experience is an elective for Ph.D. students interested in pursuing faculty careers. Participants are…
Descriptors: Chemical Engineering, Technical Occupations, Teaching Experience, Mentors
Liberatore, Matthew W. – Chemical Engineering Education, 2013
The delivery of a material and energy balances course is enhanced through a series of in-class and out-of-class exercises. An active learning classroom is achieved, even at class sizes over 150 students, using multiple instructors in a single classroom, problem solving in teams, problems based on YouTube videos, and just-in-time teaching. To avoid…
Descriptors: Active Learning, Energy, Team Teaching, Teaching Methods
Kim, Sun Hyung; Kang, Jeong Won; Kroenlein, Kenneth; Magee, Joseph W.; Diky, Vladimir; Muzny, Chris D.; Kazakov, Andrei F.; Chirico, Robert D.; Frenkel, Michael – Chemical Engineering Education, 2013
We review the concept of uncertainty for thermophysical properties and its critical impact for engineering applications in the core courses of chemical engineering education. To facilitate the translation of developments to engineering education, we employ NIST Web Thermo Tables to furnish properties data with their associated expanded…
Descriptors: Chemical Engineering, Engineering Education, Educational Resources, Information Sources
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
Benson, Tracy J.; Richmond, Peyton C.; LeBlanc, Weldon – Chemical Engineering Education, 2013
An industrial-type distillation column, including appropriate pumps, heat exchangers, and automation, was used as a unit operations experiment to provide a link between classroom teaching and real-world applications. Students were presented with an open-ended experiment where they defined the testing parameters to solve a generalized problem. The…
Descriptors: Science Instruction, College Science, Chemical Engineering, Industry
Zualkernan, Imran A.; Husseini, Ghaleb A.; Loughlin, Kevin F.; Mohebzada, Jamshaid G.; El Gaml, Moataz – Chemical Engineering Education, 2013
Social networking platforms and computer games represent a natural informal learning environment for the current generation of learners in higher education. This paper explores the use of game-based learning in the context of an undergraduate chemical engineering remote laboratory. Specifically, students are allowed to manipulate chemical…
Descriptors: Social Networks, Chemical Engineering, Computer Games, Teaching Methods
Cicciarelli, Bradley A. – Chemical Engineering Education, 2013
Pre-recorded video demonstrations of laboratory experiments are used to introduce students to various experiments in a lab course instead of an in-class tutorial. In addition to saving time for both the students and the instructor, this allows students to watch the videos in an "on-demand" setting at their convenience, which is helpful…
Descriptors: Video Technology, Science Laboratories, Laboratory Experiments, Science Experiments

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