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Paul Scovazzo – Chemical Engineering Education, 2025
Simplifying equations via assumptions is integral to the "engineering method." Algebraic scaling helps in teaching the engineering skill of making good assumptions. Algebraic scaling is more than a pedagogical tool. It can create a solution where one was not possible before scaling. Scaling helps in engineering proper design…
Descriptors: Algebra, Scaling, Engineering Education, Mathematics Skills
Lance M. Simpson; Matthew S. VanDyke; Amanda S. Koh – Chemical Engineering Education, 2025
STEM-to-public science communication is recognized as an important skill, but a pedagogical framework for teaching these skills is lacking. Collaborating with safety and science communication experts, an intervention was developed in a health and safety course for chemical engineering students. Students attended three science communication…
Descriptors: STEM Education, Chemical Engineering, Undergraduate Study, Intervention
Steve Sternberg; Lyndon Ramrattan; Richard Davis; Moe Benda; Victor Lai; Michael Rother; Guy Sander; Tsutomu Shimotori; Sam Toan; Zhihua Xu; Weiguo Xie – Chemical Engineering Education, 2024
CACAO (Chocolate Across the Curriculum and Outreach) is a vertical curriculum augmentation designed to help students across the ChE undergraduate program. The students use a chocolate-based food engineering lab to make connections between core chemical engineering topics using hands-on and project-based learning. Costs to create this component are…
Descriptors: Food, Industry, Integrated Curriculum, Chemistry
O'Connell, John P. – Chemical Engineering Education, 2019
Thermodynamics challenges teachers and learners. Its pervasiveness about nature, mathematical abstractness, nonnumerical relations, and complexity in applications can inhibit understanding and usage, especially by undergraduates. Perspectives are given about these obstacles, and some suggestions are made to enhance comprehension of the discipline.
Descriptors: Thermodynamics, Science Instruction, Teaching Methods, Barriers
Finberg, Ethan Abraham; Griffin, David Michael; Shiflett, Mark Brandon – Chemical Engineering Education, 2020
A Unit Operations Laboratory (UOL) is fundamental to undergraduate chemical engineering education. This article discusses a new course structure for the University of Kansas UOL and details for three new experiments covering the fundamentals of vapor-liquid equilibrium, fluid mechanics, and kinetics. Students apply knowledge from these courses as…
Descriptors: Chemical Engineering, Science Laboratories, College Science, Science Instruction
Follmer, D. Jake; Gomez, Esther; Zappe, Sarah; Kumar, Manish – Chemical Engineering Education, 2017
This study examined how a collaborative research environment in a structured research experience impacts undergraduate student outcomes. Students demonstrated significant gains in research skills and provided positive appraisals of their collaborative experiences. Emphasis on collaboration among students in an undergraduate research program…
Descriptors: Undergraduate Study, Undergraduate Students, Research Skills, Chemistry
Han, Duanduan; Ugaz, Victor – Chemical Engineering Education, 2017
Three self-contained mini-labs were integrated into a core undergraduate fluid mechanics course, with the goal of delivering hands-on content in a manner scalable to large class sizes. These mini-labs supported learning objectives involving friction loss in pipes, flow measurement, and centrifugal pump analysis. The hands-on experiments were…
Descriptors: Mechanics (Physics), Data Analysis, Pilot Projects, Undergraduate Study
Clark, William; Lei, Melinda; Kirichenko, Erika; Dickerson, Kellie; Prytko, Robert – Chemical Engineering Education, 2017
Exothermic reactions can present safety hazards and there is a recognized need for reaction safety education at the undergraduate level. We present an experiment that illustrates the pitfall of direct scale-up of an exothermic reaction that can lead to thermal runaway. The iodide-catalyzed hydrogen peroxide decomposition reaction yields…
Descriptors: Undergraduate Study, Hazardous Materials, Laboratory Safety, Safety Education
Orbey, Nese; De Jesús Vega, Marisel; Zalluhoglu, Fulya Sudur – Chemical Engineering Education, 2017
A general tank-draining problem was used as an experimental project in two undergraduate-level chemical engineering courses. The project aimed to illustrate the critical nature of experimentation in addition to use of mass and energy conservation principles in developing mathematical models that correctly describes a system. The students designed…
Descriptors: Science Instruction, Scientific Concepts, Chemistry, College Science
Mandavgane, Sachin A. – Chemical Engineering Education, 2016
Fluid mechanics (FM) is a core course of the chemical, mechanical, civil, and aerospace engineering programs. Students have both theory and practical classes in FM. The general expectation is that students should be able to demonstrate the fundamentals learnt in theory and get hands-on experience during the lab course. In this regard, students…
Descriptors: Chemistry, Science Instruction, Mechanics (Physics), Social Media
Rothe, Erhard W.; Zygmunt, William E. – Chemical Engineering Education, 2016
We inserted a self-taught molecular modeling project into an otherwise conventional undergraduate chemical-reaction-engineering course. Our objectives were that students should (a) learn with minimal instructor intervention, (b) gain an appreciation for the relationship between molecular structure and, first, macroscopic state functions in…
Descriptors: Undergraduate Study, Molecular Structure, Chemical Engineering, Thermodynamics
Biernacki, J. J. – Chemical Engineering Education, 2016
The degrees of freedom (DOF) concept is a powerful tool that has been taught since at least the '70s in undergraduate curriculum, typically introduced in the context of a first course on material and energy balances. The concept, however, has not been widely applied beyond the material balance domain and in general is not taught as a unified…
Descriptors: Concept Teaching, Scientific Concepts, Teaching Methods, Instructional Effectiveness
Lo, Roger C.; Bhatia, Hina; Venkatraman, Rahul; Jang, Larry K. – Chemical Engineering Education, 2015
Microfluidics involves the study of the behavior of fluids at microscale, fluid manipulations, and the design of the devices that can effectively perform such manipulations. We are developing two new elective courses to include microfluidics in our curriculum at CSULB. Herein, we present the results of the first course, Microfabrication and…
Descriptors: Chemical Engineering, Science Instruction, College Science, Science Curriculum
Koretsky, Milo D. – Chemical Engineering Education, 2015
This article reports implementation of a program-level innovation in 10 core undergraduate courses in which larger lecture courses are punctuated by smaller studios. Studios provide an intimate, "flipped" classroom environment where students interactively engage in the content presented in the previous lecture through guided worksheets…
Descriptors: Curriculum Development, Teaching Methods, Undergraduate Study, Program Implementation
Gomez, Elaine; Paul, Melissa; Como, Charles; Barat, Robert – Chemical Engineering Education, 2014
This experiment and analysis offer an effective experience in greenhouse gas reduction. Ammoniated water is flowed counter-current to a simulated flue gas of air and CO2 in a packed column. The gaseous CO2 concentrations are measured with an on-line, non- dispersive, infrared analyzer. Column operating parameters include total gas flux, dissolved…
Descriptors: Science Experiments, College Science, Science Laboratories, Undergraduate Study