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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
Shiv Krishna Madi Reddy; Meng Guo; Long Cai; Ralph E. White – Chemical Engineering Education, 2024
A method is presented which can be used to obtain analytical solutions for boundary value problems (BVPs) using the matrix exponential and Maple. Systems of second order, linear differential equations are expressed as two or more first order equations in matrix form, and their solutions are obtained using the matrix exponential, matrix…
Descriptors: Chemical Engineering, Engineering Education, Computer Software, Mathematics Instruction
Sofie Ye; Maja Elmgren; Magnus Jacobsson; Felix M. Ho – Chemistry Education Research and Practice, 2024
Problem solving in chemical kinetics poses substantial challenges for university students since it often involves significant use of mathematics as a tool and language, with challenging translations and transitions between chemical phenomena and mathematical representations. In this paper, we present key findings from a study investigating…
Descriptors: Problem Solving, Chemistry, Kinetics, Mathematics
Timothy M. Shenk; Nian Liu – Chemical Engineering Education, 2024
While innovation commonly stems from the Entrepreneurial Mindset (EM), its integration within chemical engineering curricula has been notably limited. However, a shift is occurring as both private and public initiatives are now directing resources and attention toward equipping students for prosperous careers. This paper delineates the successful…
Descriptors: Chemical Engineering, Entrepreneurship, Science Instruction, Science Curriculum
Michael P. Howard; Symone L. M. Alexander – Chemical Engineering Education, 2024
Chemical engineers must learn to connect concepts across vastly different scales, spanning from molecular structures to industrial processes. Here, we explore the use of a virtual-reality simulation with a companion video of an experiment to help undergraduate students connect nanoscale fundamentals to macroscale engineering observations.
Descriptors: Chemical Engineering, Computer Simulation, Video Technology, Science Experiments
Paul Ashwin; Benjamin Goldschneider; Ashish Agrawal; Reneé Smit – Studies in Higher Education, 2024
There is widespread concern that students are increasingly becoming passive consumers of education who primarily attend university to obtain the credentials they need for the labour market. To interrogate this view, a longitudinal qualitative study examined what 47 students in three countries wanted to get out of studying for their degree (their…
Descriptors: Foreign Countries, Undergraduate Students, Chemistry, Chemical Engineering
Milo D. Koretsky; Allison Godwin; Donald P. Visco Jr. – Chemical Engineering Education, 2023
The article provides a resource to help faculty cultivate their education research ideas and place those ideas within a framework suitable for publication in a peer-reviewed journal such as "Chemical Engineering Education." The six-element publication framework is supported by two metaphors, a funnel and a house, to illustrate how to…
Descriptors: Educational Research, Publications, Peer Evaluation, Periodicals
Christopher W. Norfolk; Timothy Ellis – Chemical Engineering Education, 2024
The effect of digital tools (pre-lab videos and 3D models of experimental equipment) on student's performance of a typical lab assignment was studied quantitatively; for some students, these digital tools replaced physical access to the equipment. These students also participated in focus groups and gave good suggestions to make the digital tools…
Descriptors: Educational Technology, Electronic Learning, COVID-19, Pandemics
Justin F. Shaffer – Chemical Engineering Education, 2024
High structure course design involves scaffolding students' learning via pre-class content acquisition and assessment, in-class active learning exercises, after-class review and assessment, and frequent summative assessments. Research has demonstrated the efficacy of high structure courses including improved student performance, reduced…
Descriptors: Program Design, Chemical Engineering, Instructional Design, Scaffolding (Teaching Technique)
Esohe Fawole – ProQuest LLC, 2023
This dissertation is split into two objectives: (1) to better understand the effect of relative humidity (RH) on charge transfer between metal electrodes and water droplets and (2) to assess the impact of The Design of Coffee, a general education, introductory chemical engineering course, on non-STEM students' ability to understand fundamental…
Descriptors: STEM Education, Chemical Engineering, Food, Influences
Serkan Solmaz; Liesbeth Kester; Tom Van Gerven – Education and Information Technologies, 2024
Virtual reality has become a significant asset to diversify the existing toolkit supporting engineering education and training. The cognitive and behavioral advantages of virtual reality (VR) can help lecturers reduce entry barriers to concepts that students struggle with. Computational fluid dynamics (CFD) simulations are imperative tools…
Descriptors: Computer Simulation, Educational Environment, Engineering Education, Technology Uses in Education
Scholes, Colin A. – Chemical Engineering Education, 2023
A teaching module for HAZOPs is presented here that was included in the capstone subject. The module included a lecture, class exercise and an advisors' led workshop. Some students undertake HAZOPs individually, representing academic misconduct. A verification strategy, based on Zipf's law, is presented that analyses word frequency and key words…
Descriptors: Chemical Engineering, Capstone Experiences, Laboratory Safety, Learning Modules
Scholes, Colin A. – Chemical Engineering Education, 2023
Breadth subjects enable students to explore topics that are outside their core degree discipline and can be used to promote chemical engineering to non-engineering students. A breadth subject was created to be welcoming to all students, that presented energy issues through a chemical engineering context. Contact was through lectures, flipped…
Descriptors: Chemical Engineering, Engineering Education, Teaching Methods, Energy
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
Shaffer, Justin F.; Lopez, Jordan – Chemical Engineering Education, 2023
Chemical engineering students are typically required to take biology courses and many pursue biotechnology related careers. However, it is unknown what emotions students have toward biology that can influence curricular design. We surveyed 246 students and found that 74.6% have overall positive emotions toward biology because they find biology…
Descriptors: Chemical Engineering, Biology, Student Attitudes, Required Courses

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