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Aaron G. Frye; Matthew E. Cooper; Lisa G. Bullard – Chemical Engineering Education, 2024
The outcomes of students who completed a ChE graduate bridging course sequence were compared against a group of students with ad hoc preparation. Bridging course students were found to have a modestly higher rate of graduate degree conferral and slightly lower graduate GPAs (though the GPA effect size was found to be small to medium) compared to…
Descriptors: Chemical Engineering, Engineering Education, Outcomes of Education, Graduate Students
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Medford, Andrew J.; Boukouvala, Fani; Grover, Martha A.; Sholl, David; Meredith, Carson; Cheng, Pengfei; Choi, Sihoon; Gusmão, Gabriel S.; Kilwein, Zachary; Ravutla, Suryateja; Wirth, Fatimah; Wooley, Jennifer; Sewer, Zaid – Chemical Engineering Education, 2022
The Graduate Certificate in Data Science for the Chemical Industries was designed to provide skills to working professionals, via a fully online and asynchronous format. The certificate may also be earned by undergraduate and graduate students at Georgia Tech. The certificate consists of four courses. The two core courses are Data Analytics for…
Descriptors: Chemistry, Science Instruction, Statistics Education, Chemical Engineering
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Mohammad Heshmati; W. David Purvis – Chemical Engineering Education, 2024
Three real-world datasets are introduced for a petroleum engineering capstone design course, providing detailed problem statements, assessment criteria, team-building practices, and required software packages. Two surveys reveal that students prefer real datasets over synthetic ones, and despite initial challenges, students feel proud of their…
Descriptors: Chemical Engineering, Engineering Education, Fuels, Capstone Experiences
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Hong, Moo Sun; Sun, Weike; Anthony, Brian W.; Braatz, Richard D. – Chemical Engineering Education, 2022
This article describes experiences with teaching process data analytics and machine learning, including in: (1) a joint undergraduate/graduate course for students in chemical and mechanical engineering and engineering management; and (2) an undergraduate chemical engineering concentration in process data analytics. The article also describes…
Descriptors: Teaching Methods, Graduate Students, Undergraduate Students, Chemical Engineering
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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
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Martín-Lara, M. A. – European Journal of Engineering Education, 2020
Solid waste management is considered to be one of the fastest growing industries in the world because of the environmental and health considerations, limitations on mining operations, product costs, increasing demands on the new materials, products and supply chains. Also, entrepreneurship has emerged as a critical aspect of engineering education…
Descriptors: Chemical Engineering, Wastes, Entrepreneurship, Universities
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Shaffer, Justin Franklin – Chemical Engineering Education, 2020
Two-stage exams, in which students first complete an exam individually and then again as a group, have been used successfully in many disciplines to promote collaboration, learning, and retention of learning. However, it is unknown what the impacts of two-stage exams would be with chemical engineering students. In this study, two-stage exams were…
Descriptors: Energy, Science Tests, Chemical Engineering, Engineering Education
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Orozco, Mariana; Boon, Mieke; Susarrey Arce, Arturo – European Journal of Engineering Education, 2023
This paper reports on the design of an innovative Electrochemistry course, part of a Chemical Science Engineering programme. Teachers have observed that their students' understanding of electrochemical concepts and phenomena is insufficient to attempt connections to further concepts, and to generate new knowledge in scientific problem-solving. A…
Descriptors: Engineering Education, Chemistry, Science Instruction, Teaching Methods
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Clay, John D.; Collins, Eric – Chemical Engineering Education, 2020
Generating a problem that addresses multiple course learning objectives can be a challenging, but worthwhile exercise for a professor. These types of problems are particularly useful late in a course to help students tie together seemingly disparate concepts to solve an integrated problem that requires them to review concepts mastered throughout…
Descriptors: Smoking, Electronic Equipment, Educational Objectives, Teaching Methods
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Shao, Michael; Shiflett, Mark B. – Chemical Engineering Education, 2021
Simulation software has experienced growing interest in chemical engineering curriculums for its usage in commercial engineering practices. This article describes the ASPEN Plus® version 10 (V10) simulations and a student teach students approach to integrate ASPEN in the chemical engineering curriculum at the University of Kansas (KU). Videos,…
Descriptors: Chemical Engineering, Teaching Methods, Computer Simulation, Computer Software
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Nogales-Delgado, Sergio; Román Suero, Silvia; Encinar Martín, José María – International Journal of Research in Education and Science, 2023
The implementation of educational programs that tackle specific contents and promote English skills is convenient, especially in areas where English skills are not properly developed at universities, such as Spain. Indeed, some subjects are currently presented in English for this purpose. CLIL (Content and Language Integrated Learning), where…
Descriptors: Educational Improvement, Content and Language Integrated Learning, Second Language Learning, Second Language Instruction
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Timko, Michael T. – Chemical Engineering Education, 2018
Integrating teaching and research can benefit both instructors and students by providing an enriching, stimulating experience that combines the instructors' interests with topics that are relevant and motivating to students. In keeping with National Science Foundation review criteria, the integrated course captures both intellectual merit, that is…
Descriptors: Undergraduate Students, Chemical Engineering, Energy, Fuels
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Gautam, Satyen; Nagarajan, Karthiga; Loh, Kai Chee; Zhou, Kang; Yung, Lanry Lin Y.; Tong, Yen Wah; Li, Zhi – Chemical Engineering Education, 2020
The paper explores the effectiveness of hands-on learning (HOL) as a student-centered model to train first year chemical engineering undergraduates. The pedagogical design of the course uses laboratory sessions, lectures, reflection sessions, projects, and assessments to achieve the course learning outcomes. The adopted assessment methodology…
Descriptors: Experiential Learning, Chemical Engineering, Engineering Education, Undergraduate Students
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Galan, Berta; Muñoz, Iciar; Viguri, Javier R. – European Journal of Engineering Education, 2016
This paper shows the planning, the teaching activities and the evaluation of the learning and teaching process implemented in the Chemical Process Design course at the University of Cantabria, Spain. Educational methods to address the knowledge, skills and attitudes that students who complete the course are expected to acquire are proposed and…
Descriptors: Foreign Countries, Instructional Innovation, Curriculum Implementation, Chemical Engineering
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Rende, Deniz; Rende, Sevinc; Baysal, Nihat – Chemical Engineering Education, 2012
We introduce the design of three consecutive unit operations laboratory (UOL) courses that retain the academic rigor of the course while incorporating skills essential for professional careers, such as ability to propose ideas, develop practical solutions, participate in teamwork, meet deadlines, establish communication between technical support…
Descriptors: Laboratories, Graduate Surveys, Job Skills, Science Careers
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