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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
Stierle, Rolf; Fischer, Matthias; Braun, Thorsten; Gross, Joachim – Chemical Engineering Education, 2023
How is it possible to create and continuously improve a quality learning environment for our students? We present our one-year course on engineering thermodynamics as a case study in which we investigate the learning environment based on a competency model from the students' perspective. Based on the analysis of our course structure and exam…
Descriptors: Engineering Education, Thermodynamics, College Students, Student Attitudes
Elkhatat, Ahmed M.; Al-Muhtaseb, Shaheen A. – Chemical Engineering Education, 2022
A Computer-Aided Learning Package as Inquiry-Guided Learning (CALP/IGL) was implemented in a cooling tower experiment for 43 students enrolled in four sections of the Unit Operations Laboratory course in the chemical engineering program at Qatar University. The impact of this approach on the attainment of learning outcomes was evaluated. Results…
Descriptors: Inquiry, Active Learning, Engineering Education, Computer Assisted Instruction
Pramounmat, Nuttanit; Renner, Julie – Chemical Engineering Education, 2020
A hands-on polypeptide engineering experience that focuses on project management was developed and incorporated in a graduate-level course. The goal was to have doctoral students in chemical engineering learn about project planning tools, and experience what it might be like to plan and execute a project in industry or business. The motivation…
Descriptors: Career Readiness, Experiential Learning, Program Administration, Graduate Students
Bara, Jason Edward; McLemore, John Patrick – Chemical Engineering Education, 2020
There appears to be no published knowledge regarding how humans use unit conversions. Until very recently, acquiring such data would be essentially impossible, but mobile devices have now enabled many questions to be answered through passive "crowdsourcing" of big data sets. This work details the analysis of five years of anonymous user…
Descriptors: Telecommunications, Handheld Devices, Foreign Countries, Computation
Scholes, Colin A.; Hu, Guoping – Chemical Engineering Education, 2021
A practical for students to experience a process plant is presented, based on operating a solvent absorption plant for carbon dioxide capture. The student must operate the plant in assigned roles that closely identify with a chemical plant environment, to achieve specific performance targets. Students must overcome technical challenges that…
Descriptors: Chemical Engineering, Engineering Education, Facilities, Chemistry
Lewin, Daniel Roberto; Barzilai, Abigail – Chemical Engineering Education, 2021
The capstone design sequence provides chemical engineering students with the opportunity to demonstrate mastery in process engineering, acquired during their entire degree, and is the ultimate "reality check" in outcome verification. This paper describes the current status of the design sequence followed by chemical engineering students…
Descriptors: Capstone Experiences, Flipped Classroom, Chemical Engineering, Engineering Education
Lewin, Daniel R. – Chemical Engineering Education, 2022
This reflective practice contribution presents the lessons learned from teaching plant design using an online flipped format to a small cohort of students in the first COVID-19 semester. These lessons were applied to the online teaching of the capstone design course to a full-sized cohort. The impact of the implemented recommendations on the…
Descriptors: COVID-19, Pandemics, Online Courses, Flipped Classroom
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
Metzger, Matthew J.; Glasser, Benjamin J.; Patel, Bilal; Hildebrandt, Diane; Glasser, David – Chemical Engineering Education, 2012
The design course is an integral part of chemical engineering education. A novel approach to the design course was recently introduced at the University of the Witwatersrand, Johannesburg, South Africa. The course aimed to introduce students to systematic tools and techniques for setting and evaluating performance targets for processes, as well as…
Descriptors: Foreign Countries, Design, Engineering Education, Scientific Concepts
Engaging Undergraduates in an Interdisciplinary Program: Developing a Biomaterial Technology Program
Liang, Jia-chi; Kung, Shieh-shiuh; Sun, Yi-ming – Chemical Engineering Education, 2009
Yuan Ze University targeted Biomaterials Science and developed a curriculum related to Biotechnology, Biochemical Engineering, and Biomaterials for engineering students to cultivate talents for both engineering and biotechnology. After several years of operation, recruiting students has succeeded, and students are satisfied with the course design…
Descriptors: Engineering Education, Biotechnology, Chemical Engineering, Interdisciplinary Approach
Aucoin, Marc G.; Jolicoeur, Mario – Chemical Engineering Education, 2009
Undergraduate and graduate engineering training differ significantly. The former looks to established protocols and formulas to design and control processes while the latter often involves questioning established protocols and formulas to better suit and describe phenomena. Although we do not dispute the benefits of practical hands-on approaches,…
Descriptors: Engineering Education, Graduate Students, Research Problems, Research Design
Kontogeorgis, Georgios M.; Michelsen, Michael L.; Clement, Karsten H. – Chemical Engineering Education, 2009
According to so-called "Bologna model," many technical universities in Europe have divided their educations into separate 3-year Bachelor and 2-year Master programs (followed by an optional Ph.D. study). Following the "Bologna model," DTU has recently transformed its 5-year engineering education into a 3-year Bachelor (B.Sc.)…
Descriptors: Engineering Education, Textbooks, Thermodynamics, Graduates
Clarke, Matthew A.; Giraldo, Carlos – Chemical Engineering Education, 2009
Chemical process simulation is one of the most fundamental skills that is expected from chemical engineers, yet relatively few graduates have the opportunity to learn, in depth, how a process simulator works, from programming the unit operations to the sequencing. The University of Calgary offers a "hands-on" postgraduate course in…
Descriptors: Computer Simulation, Chemical Engineering, Programming, Foreign Countries
Harris, Andrew T. – Chemical Engineering Education, 2009
The University of Sydney has offered an undergraduate course in particle technology using a contemporary problem based learning (PBL) methodology since 2005. Student learning is developed through the solution of complex, open-ended problems drawn from modern chemical engineering practice. Two examples are presented; i) zero emission electricity…
Descriptors: Feedback (Response), Problem Based Learning, Course Evaluation, Foreign Countries
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