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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
English, Niall J. – Chemical Engineering Education, 2022
Molecular-, fluid- and field-dynamics simulation are becoming more mainstream tools for practicing process engineers; here, the academic community needs to pay close attention to "upskilling" demands from industry, where remote working/training emphasizes the need for sophisticated computational-engineering design tools with molecular…
Descriptors: Engineering Education, Skill Development, Computation, Design
Carlos J. Landaverde-Alvarado – Chemical Engineering Education, 2024
We redesigned our undergraduate laboratories to create a structured sequence that continuously improves the learning experience of students. We utilized a PBL and PjBL approach in which students are progressively introduced to ill-structured open-ended problems, the development of projects, and the creation of research products. We dynamically…
Descriptors: Student Projects, Active Learning, Problem Based Learning, Undergraduate Students
Woods, Donald R. – Chemical Engineering Education, 2012
Many different versions of Problem-based Learning (PBL) are used today. To be consistent in evaluating the effectiveness of PBL, the focus in this paper is on what Howard Barrows called authentic PBL (aPBL). In aPBL students are empowered with the learning process; key distinguishing features are that the students teach each other the new…
Descriptors: Evidence, Graduation Rate, Dropouts, Problem Based Learning
Heldt, Caryn L. – Chemical Engineering Education, 2012
Inter-group peer evaluation through wikis was implemented as a method for senior capstone design teams to improve writing and the critical evaluation of data. Each group was evaluated by peers using a qualitative discussion and evaluated quantitatively by instructors. Students had an increased interest in contributing to online knowledge centers,…
Descriptors: Lifelong Learning, Curriculum, Chemical Engineering, Peer Evaluation
Koretsky, Milo D.; Kelly, Christine; Gummer, Edith – Chemical Engineering Education, 2011
The instructional design and the corresponding research on student learning of two virtual laboratories that provide an engineering task situated in an industrial context are described. In this problem-based learning environment, data are generated dynamically based on each student team's distinct choices of reactor parameters and measurements.…
Descriptors: Engineering Education, Research Design, Instructional Design, Problem Based Learning
Evans, Steven T.; Huang, Xinqun; Cramer, Steven M. – Chemical Engineering Education, 2010
The commercial simulator Aspen Chromatography was employed to study and optimize an important new industrial separation process, weak partitioning chromatography. This case study on antibody purification was implemented in a chromatographic separations course. Parametric simulations were performed to investigate the effect of operating parameters…
Descriptors: Computer Simulation, Biotechnology, Problem Based Learning, Courses
Wankat, Phillip C. – Chemical Engineering Education, 2009
The Massachusetts Institute of Technology started the first US chemical engineering program six score years ago. Since that time, the chemical engineering curriculum has evolved. The latest versions of the curriculum are attempts to broaden chemical engineering to add product engineering, biology and nanotechnology to the traditional process…
Descriptors: Chemical Engineering, Engineering Education, Curriculum Development, Interdisciplinary Approach
Rossiter, Diane; Petrulis, Robert; Biggs, Catherine A. – Chemical Engineering Education, 2010
This paper describes the development of a first-year chemical engineering course over 5 years through action research based on evidence from student feedback. As a result of this research, the course has evolved into a blended approach which incorporates problem based learning (PBL) and online learning tools. Through the use of PBL, the students…
Descriptors: Electronic Learning, Feedback (Response), Action Research, Problem Based Learning
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