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Laura P. Ford; Kevin D. Dahm; Daniel A. Crowl; Christopher J. Barr; Janie Brennan; Tracy Carter; Luke Landherr; David L. Silverstein; Stephen W. Thiel; Bruce K. Vaughen; Troy Vogel – Chemical Engineering Education, 2025
This paper presents a history of process safety education and the results of a Spring 2023 survey of US and Canadian departments. The number of departments with process safety education throughout the curriculum and those with a required process safety course both continue to increase. Lower-level learning outcomes are expected in departments…
Descriptors: Safety Education, Educational History, Cross Cultural Studies, Required Courses
Paul Ashwin – Higher Education: The International Journal of Higher Education Research, 2025
There are strong concerns about students perceiving their undergraduate education in instrumental, rather than transformational, ways. However, it is not clear whether seeing education instrumentally undermines students' capacity to see their education as transformational. Based on data from a 7-year longitudinal study of chemical engineering…
Descriptors: Undergraduate Students, Undergraduate Study, Student Attitudes, Transformative Learning
Christopher V. H.-H. Chen; Lisa G. Bullard; Adam Melvin; Sandra L. Pettit – Chemical Engineering Education, 2025
In 2024 the AIChE Education Division surveyed departments over how they prepared graduate student instructors (GSIs) and the roles these GSIs have. This survey was completed by 70 departments, reaching departments big and small; with and without graduate teaching requirements; and a wide range GSI training programs. This first-of-its-kind survey…
Descriptors: Graduate Students, Teaching Assistants, College Faculty, Chemical Engineering
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
Goldberg, Deborah S.; Sriram, Ganesh – Chemical Engineering Education, 2022
We report the short- and longer-term impacts of offering a 1-credit introductory seminar to first-year chemical engineering students. Students who completed the seminar demonstrated a better awareness of the major, career opportunities, and academic success strategies than students who did not enroll in the seminar. A longer-term comparison showed…
Descriptors: Instructional Effectiveness, College Credits, Chemical Engineering, First Year Seminars
Elif Eda Miskioglu; Cheryl A. Bodnar; Brittany Butler; Jeffrey Stransky; Cayla Ritz – Chemical Engineering Education, 2024
Process safety remains an area of importance in chemical engineering education. Process safety incidents are tied to individuals' choices that require exercising judgement in weighing competing criteria. While safety is paramount, we need to acknowledge the competing criteria practitioners need to consider (budget, leadership, personal…
Descriptors: Teacher Attitudes, Safety Education, Chemical Engineering, Engineering Education
Rodel Mar V. Guban – Online Submission, 2024
As noted by Heydenrych and Case (2017), tracing graduates using traditional survey method is known for its low response rate. In his study on the graduate destinations of chemical engineering in South Africa, he proposed the use of alternative methodology for similar research. To this date, only two studies have been confirmed to have used…
Descriptors: Chemical Engineering, Social Media, Foreign Countries, College Graduates
Keisha C. A. Antoine; Lealon L. Martin; Jorge F. Gabitto – Chemical Engineering Education, 2024
In this paper we demonstrate that using mixed reality (MR) technology can innovate our chemical engineering laboratory curriculum at Prairie View A&M University, a Historically Black College/University (HBCU). Particularly, we describe the development of a MR proof of concept to carry out a traditional fluid mechanics lab -- pressure drop as a…
Descriptors: Science Instruction, Black Colleges, Chemical Engineering, Science Laboratories
Ye Jiang; Xin Sun; Guomeng Zhang; Da Han; Zhengda Yang – Journal of Chemical Education, 2024
The flue gas from waste incineration power plants contains high-level zinc species that may deactivate the catalyst for selective catalytic reduction (SCR) of nitrogen oxides (NO[subscript x]) with NH[subscript 3]. A comparison experiment was designed to investigate the effect of different types and Zn/Ce molar ratios on the performance of…
Descriptors: Science Education, Scientific Concepts, Science Laboratories, Science Experiments
Samantha Yanosko; Grant Valentine; Matthew W. Liberatore – Chemical Engineering Education, 2025
An interactive textbook for a material and energy balances course measured over 1,300 reading interactions and hundreds of auto-graded problems per student each term. Specifically, seven cohorts and 601 students completed over 700,000 reading interactions and 150,000 auto-graded problems. Median reading participation was over 93%. Median correct…
Descriptors: Chemical Engineering, Textbooks, Computer Uses in Education, Grading
Miller, April D.; Schieve, Bailey C.; Zammit, Alexa S.; Kim, Tae Y.; Mitchell, Christian N.; Boylston, Payton A.; Armstrong, Matthew J. – Chemical Engineering Education, 2021
The United States Military Academy's Chemical Engineering Chocolate Club increases the interest in the sciences by combining chemical engineering knowledge with the production of a consumable product, chocolate. Cadets design the chocolate process by identifying the product (such as 70% dark chocolate), ingredients, and specific process details…
Descriptors: Chemical Engineering, Foods Instruction, Student Organizations, Military Schools
Madalyn Wilson-Fetrow; Vanessa Svihla; Brandon Burnside; Abhaya Datye – Journal of Chemical Education, 2023
While students can learn both chemistry content and inquiry practices by participating in course-based undergraduate research experiences (CUREs), it is well documented that prior experiences shape perception. We conducted a case study to investigate students' first experiences with a CURE in an upper-division chemical engineering laboratory…
Descriptors: Undergraduate Students, Student Research, Student Experience, Chemical Engineering
Gómez Siurana, Amparo; Font Escamilla, Alicia – Chemical Engineering Education, 2022
Examples of applications of equilibrium-based methods for multicomponent separations usually require the use of simulation packages, which do not allow students to follow the involved algorithms step by step. Excel spreadsheets with examples of six such rigorous methods have been used with MSc students of Chemical Engineering of the University of…
Descriptors: Spreadsheets, Chemical Engineering, Graduate Students, Teaching Methods
Marcin Dudek; Karthik Raghunathan; Samuel K. Regli; Jens Norrman; Gisle Øye – Journal of Chemical Education, 2022
This communication describes our initial experience modifying traditional (written and calculation-based) assignments in the surface and colloid chemistry course given as a part of the chemical engineering program. The new exercises contain a more relatable context that is easier to understand and remember in terms of future challenges in…
Descriptors: Video Technology, Laboratory Experiments, Chemistry, Science Instruction

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