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Kiya Lasater; Natalie J. McDonald; Thang Tran; David Pershing – Chemical Engineering Education, 2025
This paper describes an innovative, new, laboratory experiment conceived as a Senior Capstone Project by the student authors to provide experience with heat pipes for students in our junior-year Process Laboratory course at the University of Utah. Heat pipes can transport energy over long distances with minimal temperature gradients and no moving…
Descriptors: Laboratory Experiments, Science Experiments, Heat, Energy
Sarah A. Wilson; Bradley J. Berron; Anastasia Hauser – Chemical Engineering Education, 2025
The bourbon production engineering course offers a comprehensive overview of chemical engineering to non-engineers. It emphasizes chemical engineering concepts such as material balances and mass transfer, making these concepts accessible and engaging. Students learn through targeted lessons on each unit operation and practical examples from grain…
Descriptors: Chemical Engineering, Agricultural Production, Engineering Education, Courses
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
Robert J. Fisher – Chemical Engineering Education, 2025
Strategies are proposed that promote use of an Integrated Applied Mathematics (IAM) approach to enhance teaching of advanced problem-solving and analysis skills. Three scenarios of 1-dimensional transport processes are presented that support using Error Function analyses when considering short time/small penetration depths in finite geometries.…
Descriptors: Chemical Engineering, Mathematics, Problem Solving, Skill Development
Natacha Souto-Melgar – Chemical Engineering Education, 2025
This paper describes the combination of problem-based learning (PBL) and simulation tools in the chemical engineering unit operation laboratory course, focusing on heat transfer concepts using a shell-and-tube heat exchanger experiment. This approach has significantly enhanced student learning outcomes by bridging theory with practice, fostering a…
Descriptors: Chemical Engineering, Heat, Problem Based Learning, Critical Thinking
Fereshteh Zeynivandnezhad; Ramón Emilio Fernández; Yudariah binti Mohammad Yusof; Zaleha binti Ismail – International Electronic Journal of Mathematics Education, 2025
This study explores the effects of a computer algebra system on students' mathematical thinking. Mathematical thinking is identified with mathematical thinking powers and structures. We define mathematical thinking as students' capacity to specialize and generalize their previous knowledge to solve new mathematical problems. The study was…
Descriptors: Algebra, Computer Uses in Education, Mathematical Logic, Thinking Skills
Paul Ashwin – Policy Reviews in Higher Education, 2025
Debates about the employability of graduates in policy and research have increasingly focused on graduates' employment outcomes and the development of generic employability skills. This suggests that the knowledge that students engage with in their degrees is far less important than the generic attributes they develop, which promotes a…
Descriptors: College Graduates, Chemistry, Chemical Engineering, Employment Potential
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
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
Bradley A. Cicciarelli; Eric A. Sherer; Timothy C. Reeves; Steven R. Toaddy; Marisa K. Orr – Chemical Engineering Education, 2025
To address attrition early in the chemical engineering curriculum, we provided students the opportunity to attend a two-day workshop focused on the major. Workshop attendees received information about upcoming courses and career paths and interacted with upper-level students and faculty in the major. Surveys were administered to assess student's…
Descriptors: Chemical Engineering, Workshops, College Students, Majors (Students)
Pedro Santos Bartolomé; Tom Van Gerven – European Journal of Engineering Education, 2025
The authors develop an educational simulation game for basic vapour-liquid equilibrium (VLE) to use in chemical engineering education, basing the design on educational guidelines from the active learning literature. The game is tested in three cohorts totalling 84 students, showing significant increase in a knowledge test of VLE, and positive…
Descriptors: Foreign Countries, Undergraduate Students, Chemical Engineering, Computer Simulation
Marisol Osorio; José R. Álvarez Múnera – History of Education, 2025
This paper seeks to deepen our understanding of how the emergence of industrial engineering degrees in a Colombian region related with industrial, economic and societal dynamics in the first decades of the twentieth century. To this end, it explores the insertion of the graduates of the first cohorts of the Chemical Engineering programme of the…
Descriptors: Chemistry, College Faculty, Science Teachers, Science Education
Ophélie Allyssa Desmet; Tarun Tejasvi Mutukuri – Gifted Child Quarterly, 2025
This study explores talent-development trajectories of early-career chemical engineers to identify key components for success in the field using the talent development megamodel as a theoretical framework. Interviews with 12 recent PhD graduates reveal a trajectory across four developmental stages: (a) math ability and science ability, (b)…
Descriptors: Talent Development, Academically Gifted, Chemical Engineering, Graduate Students
Andrea L. Schuman; Alaa Abdalla; Jennifer Case; David B. Knight – Chemical Engineering Education, 2025
Study abroad attempts to prepare students to effectively work in a multi-national environment. This study compares students' experiences in a unit operations laboratory course offered in multiple modalities: at students' home university, and four- and eight-week study abroad. The results examine the impact of support on students' learning and…
Descriptors: Study Abroad, Program Length, Comparative Analysis, Educational Experience