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Falconer, John L.; Hendren, Neil – Chemical Engineering Education, 2021
A virtual catalytic reactor laboratory (VCRL) experiment, which can be used in most browsers, is described. Students select feed conditions and use the VCRL to take data for a gas-phase catalytic reaction and fit kinetic parameters to a Langmuir-Hinshelwood rate expression. The VCRL contains instructions, equipment descriptions, an animated…
Descriptors: Science Instruction, Computer Simulation, Laboratory Experiments, Laboratory Equipment
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Wang, Shuo; Wang, Jing; Gao, Yanjing – Journal of Chemical Education, 2017
An open-source electrochemistry simulation package has been developed that simulates the electrode processes of four reaction mechanisms and two typical electroanalysis techniques: cyclic voltammetry and chronoamperometry. Unlike other open-source simulation software, this package balances the features with ease of learning and implementation and…
Descriptors: Open Source Technology, Computer Simulation, Chemistry, Graduate Students
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Crandall, Philip G.; Engler, Robert K.; Beck, Dennis E.; Killian, Susan A.; O'Bryan, Corliss A.; Jarvis, Nathan; Clausen, Ed – Journal of Food Science Education, 2015
One of the most pressing issues for many land grant institutions is the ever increasing cost to build and operate wet chemistry laboratories. A partial solution is to develop computer-based teaching modules that take advantage of animation, web-based or off-campus learning experiences directed at engaging students' creative experiences. We…
Descriptors: Foods Instruction, Chemistry, Computer Assisted Instruction, Computer Simulation
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Knoll, K. Richard; And Others – American Journal of Pharmaceutical Education, 1988
A study of the effectiveness of two teaching methods, correspondence study and computer-assisted instruction, for professional continuing education in pharmacokinetics found that both were effective methods. (AUTHOR/MSE)
Descriptors: Comparative Analysis, Computer Assisted Instruction, Correspondence Study, Drug Therapy
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Zielinski, Theresa Julia – Journal of Chemical Education, 1995
Explains how the Mathcad computer program can promote the development of higher-order chemical thinking skills of students taking junior-level physical chemistry courses. The kinetics of first-order series and reversible reactions is used as an example of how this can be implemented within an interactive laboratory or lecture format. (PVD)
Descriptors: Computer Assisted Instruction, Computer Literacy, Computer Software, Computer Uses in Education