Publication Date
In 2025 | 0 |
Since 2024 | 1 |
Since 2021 (last 5 years) | 3 |
Since 2016 (last 10 years) | 6 |
Since 2006 (last 20 years) | 8 |
Descriptor
Lecture Method | 8 |
Chemical Engineering | 7 |
Teaching Methods | 5 |
Undergraduate Students | 5 |
Engineering Education | 3 |
Science Instruction | 3 |
Student Attitudes | 3 |
Teamwork | 3 |
Active Learning | 2 |
Chemistry | 2 |
College Faculty | 2 |
More ▼ |
Source
Chemical Engineering Education | 8 |
Author
Baah, David | 1 |
Blowers, Paul | 1 |
Bradley, James | 1 |
Brennan, Janie | 1 |
Butrus, Salwan | 1 |
Carta, Jungbauer | 1 |
Curtis, Christine | 1 |
Daughtrey, Terrell | 1 |
Dray, Kate E. | 1 |
Dreyer, Kathleen S. | 1 |
Greenman, Kevin | 1 |
More ▼ |
Publication Type
Journal Articles | 8 |
Reports - Descriptive | 4 |
Reports - Research | 4 |
Education Level
Higher Education | 8 |
Postsecondary Education | 8 |
Adult Education | 1 |
Audience
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Dray, Kate E.; Dreyer, Kathleen S.; Lucks, Julius B.; Leonard, Joshua N. – Chemical Engineering Education, 2023
We present an educational unit to teach computational modeling, a vital part of chemical engineering curricula, through the lens of synthetic biology. Lectures, code, and homework questions provide conceptual and practical introductions to each computational method involved in the model development process, along with perspectives on how methods…
Descriptors: Engineering Education, Chemical Engineering, Teaching Methods, Units of Study
Nagma Zerin – Chemical Engineering Education, 2024
Project-Enhanced learning is an excellent way to facilitate student-centered learning along with traditional lecture-based learning. In this Class and Home problem, an example of Project-Enhanced learning is provided that can be used in the Mass and Energy Balances (MEB) course. The students solve this problem as part of a group while receiving…
Descriptors: Student Projects, Active Learning, Student Centered Learning, Teaching Methods
Butrus, Salwan; Greenman, Kevin; Khera, Eshita; Kopyeva, Irina; Nishii, Akira – Chemical Engineering Education, 2020
The interdisciplinary roots of chemical engineering have shaped its history and fostered its rapidly evolving nature. Through ongoing research, graduate students in chemical engineering departments remain abreast of the field's evolution. Yet core undergraduate curricula often fall short of introducing students to the breadth of current research…
Descriptors: Chemical Engineering, Student Research, Research Skills, Lecture Method
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 PlusĀ® 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
Brennan, Janie; Solomon, Erin D. – Chemical Engineering Education, 2019
A unit operations laboratory course was significantly modified to be an open-ended problem-based experience with an emphasis on teamwork and communication skills. Students were surveyed to assess gains in engineering self-efficacy as well as to indicate which course structure components were most beneficial to learning. Students showed significant…
Descriptors: Science Instruction, Science Laboratories, Self Efficacy, Chemistry
Hempel, Byron R.; Kiehlbugh, Kasi; Blowers, Paul – Chemical Engineering Education, 2019
A sophomore core chemical engineering course was co-taught by two different 4 instructors in Spring 2016 and Spring 2017 with approximately 90 students both semesters via an 5 active learning environment in a collaborative learning space. Both instructors were present for 6 almost all lectures and each instructor delivered approximately 50% of the…
Descriptors: Gender Differences, Active Learning, Science Instruction, Chemical Engineering
Carta, Jungbauer – Chemical Engineering Education, 2011
We describe an intensive course that integrates graduate and continuing education focused on the development and scale-up of chromatography processes used for the recovery and purification of proteins with special emphasis on biotherapeutics. The course includes lectures, laboratories, teamwork, and a design exercise and offers a complete view of…
Descriptors: Chemistry, Chemical Engineering, Engineering Education, Graduate Study
Smith, Tamara Floyd; Baah, David; Bradley, James; Sidler, Michelle; Hall, Rosine; Daughtrey, Terrell; Curtis, Christine – Chemical Engineering Education, 2010
A Synchronous Distance Education (SDE) course, jointly offered by Auburn University, Tuskegee University and Auburn University at Montgomery, introduced non-science majors to the concepts of nanoscience. Lectures originated from each of the three campuses during the semester, and video conferencing equipment allowed students at all three campuses…
Descriptors: Distance Education, Synchronous Communication, Course Descriptions, Lecture Method