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Courtney A. Pfluger; Jennifer R. Weiser; Kristine Horvat – Chemical Engineering Education, 2024
As understanding of STEM education pedagogy deepens, traditional lecture-based courses evolve to include new philosophies, such as active learning, project-based learning, and inquiry-based learning (IBL). Additionally, hands-on educational experiences at the early stages of an undergraduate program are seminal in propelling students into the…
Descriptors: Experiential Learning, Active Learning, Inquiry, Teaching Methods
Komp, Evan A.; Pelkie, Brenden; Janulaitis, Nida; Abel, Michael; Castillo, Ivan; Chiang, Leo H.; Peng, You; Beck, David C.; Valleau, Stéphanie – Chemical Engineering Education, 2023
We present a two-week active learning chemical engineering hackathon event specifically designed to teach undergraduate chemical engineering students of any skill level data science through Python and directly apply this knowledge to a real problem provided by industry. The event is free and optional to the students. We use self-evaluation surveys…
Descriptors: Data Science, Undergraduate Students, Learning Activities, Chemical Engineering
Max Chen; Yichen Li; Hilson Shrestha; Noe¨lle Rakotondravony; Andrew Teixeira; Lane Harrison; Robert E. Dempski – Journal of Chemical Education, 2024
Industrial and academic laboratories are undergoing a paradigm shift in process technology from batch to modular flow. Implementation of modular flow processes can enable more efficient operation with superior throughput, scalability, and safety factors owing to superior transport and reaction kinetics. However, both fine chemical and…
Descriptors: Chemical Engineering, Chemistry, Undergraduate Students, Science Instruction
Xie, Weiguo; Davis, Richard A. – Chemical Engineering Education, 2022
A chemical engineering analysis course was modified to include analytics with advanced numerical methods. The course uses the MATLAB computational environment to develop student programming, modeling, analytics, and optimization skills. Case studies reinforce MATLAB, numerical methods, and advanced optimization skills. Students reported confidence…
Descriptors: Chemical Engineering, Computation, Programming, Mathematical Models
Li, Yunhua; Chen, Cuixue; Ye, Meiling; Imbault, Alexander Luis – Journal of Chemical Education, 2022
Organizing undergraduates in chemistry, energy engineering, and chemical engineering specialties to participate in an energy transformation experiment can encourage them to think about the impact of human activities on nature and stimulate them to learn more about the topic. This laboratory experiment demonstrates a general approach to the…
Descriptors: Hands on Science, Fuels, Energy, Chemical Engineering
Chenette, Heather C. S.; Neumann, Gregory T.; Anastasio, Daniel D. – Chemical Engineering Education, 2021
Unit operations laboratory courses culminate many topics from the curriculum and are often the first time students apply their knowledge in hands-on settings. However, many instructors do not directly assess key learning objectives, creating a disparity between desired and actual learning. Using multiple assessment tools, we analyzed student…
Descriptors: Chemical Engineering, Student Experience, Student Attitudes, Laboratories
Lisa G. Bullard; Jason M. Keith; David L. Silverstein; Donald P. Visco Jr.; Charles Henderson – Chemical Engineering Education, 2023
In this paper we summarize the work of Henderson et al. who suggest a foursquare diagram that looks at change on two different dimensions so that an appropriate change strategy can be selected. Operationalizing such changes can be facilitated through the Accelerating Systematic Change Network (ASCN) Change Dashboard. We briefly introduce this…
Descriptors: Change Agents, College Faculty, Visual Aids, Beginning Teachers
Roman, Claudia; Delgado, Miguel A.; Garcia-Morales, Moises – Chemical Engineering Education, 2021
The benefits of using Microsoft Excel built-in functions in an undergraduate Multistage Separations course are analyzed based on 15 years of experience teaching mass transfer in Chemical Engineering programs at both the Bachelor's and Master's levels. Eight reasons for using spreadsheets in a Mass Transfer virtual course are given. Through the…
Descriptors: Computation, Spreadsheets, Undergraduate Students, Engineering Education
Bayes, Taryn Melkus – Chemical Engineering Education, 2020
The number of PhDs awarded in chemical engineering is disproportionate with the number of tenure track positions available; an overview of the contributions that can be made by teaching-focused faculty is presented. Statistics are provided for the number of chemical engineering faculty in the US by rank, position and gender. Based on literature…
Descriptors: College Faculty, Tenure, Engineering Education, Chemical Engineering
Mentzer, Nathan; Deck, Anita; Lavender, Holly; Handy, Douglas; Wellman, Bruce; Gurganus, Jamie; Strimel, Greg J. – Technology and Engineering Teacher, 2019
This article presents an investigation into the environmental impacts of plastic waste and discusses the importance of cradle-to-cradle design thinking. An example lesson is provided that aims to focus students' attention on the influences of design decisions and conceptualizes design as an iterative process, whereas previous solutions may address…
Descriptors: Conservation (Environment), Ecology, Design, Plastics
Davis, Robert H.; deGrazia, Janet – Chemical Engineering Education, 2021
An intensive course in heat transfer was created for the winter break between semesters to provide students with a "second chance" to learn the material and receive a grade of C- or better required to take the subsequent courses in the chemical engineering curriculum. It includes on-line and in-person instruction. Over the three years…
Descriptors: Chemical Engineering, Heat, STEM Education, Grades (Scholastic)
Bara, Jason Edward; McLemore, John Patrick – Chemical Engineering Education, 2020
There appears to be no published knowledge regarding how humans use unit conversions. Until very recently, acquiring such data would be essentially impossible, but mobile devices have now enabled many questions to be answered through passive "crowdsourcing" of big data sets. This work details the analysis of five years of anonymous user…
Descriptors: Telecommunications, Handheld Devices, Foreign Countries, Computation
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
Christiaan H. L. Tempelman; Annemiek Rijgersberg; Michel van der Eijk – Journal of Chemical Education, 2023
The redesign of the first year basic chemistry course is described at the Rotterdam University of Applied Sciences Chemical Engineer educational course. This was done with the aim to reduce student drop-out during the first year of the educational program. On one hand, it was chosen to teach the basic chemistry course in the laboratory where…
Descriptors: Science Instruction, Chemistry, Science Laboratories, College Freshmen
Melvin, Adam T.; Bullard, Lisa G. – Chemical Engineering Education, 2021
Scenario-based academic integrity videos previously developed by the authors have been updated to address changes in technology and on-line resources, expand the application to more general STEM courses, and include new scenarios. Student understanding of academic integrity expectations before and after watching the video was assessed, and initial…
Descriptors: Chemical Engineering, Vignettes, Video Technology, Teaching Methods