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Felse, P. Arthur – Chemical Engineering Education, 2018
Cross-disciplinary fields such as biotechnology require chemical engineers and non-engineers to routinely work together, thus creating a need for non-engineers to learn chemical engineering. But limited knowledge on non-engineers' learning preferences and the lack of pedagogical methods to teach non-engineers restricts the opportunities available…
Descriptors: Biotechnology, Mechanics (Physics), Teaching Methods, Engineering Education
Cerretani, Colin; Kelkile, Esayas; Landry, Alexandra – Chemical Engineering Education, 2017
We discuss the successful creation and implementation of a biotechnology track within the chemical engineering unit operations course. The track focuses on engineering principles relevant to brewing. Following laboratory modules investigating heat transfer processes and yeast fermentation kinetics, student groups design and implement a project to…
Descriptors: Chemical Engineering, Laboratory Experiments, Biotechnology, Kinetics
Rutter, Charles; Pancorbo, Jennifer – Chemical Engineering Education, 2020
Fermentation is responsible for the production of myriad products across a variety of industrial sectors. In particular, the biomanufacturing industry requires a labor force proficient in fermentation and its associated technologies to drive the production of recombinant protein therapeutics. This paper describes the development of a course that…
Descriptors: Biotechnology, Manufacturing Industry, Biochemistry, Scientific Concepts
Armstrong, Matthew; White, Joshua P.; Hudgins, Jesse W.; Bull, Geoffrey R.; James, Corey M.; Riegner, Dawn E.; Miller, April D.; Biaglow, Andrew – Chemical Engineering Education, 2019
The Kicking Mule Brewing Co. at West Point enables members of our chemical engineering club, students, and beer enthusiasts alike to acquire chemical engineering acumen, knowledge, and skills by developing a tangible product. Through a rigorous on-site brewing process with subject matter experts, our goal is enhancement of student chemical…
Descriptors: Chemical Engineering, Science Process Skills, Skill Development, Hands on Science
Riley, Erin; Felse, P. Arthur – Chemical Engineering Education, 2017
Centrifugation is a major unit operation in chemical and biotechnology industries. Here we present a simple, hands-on laboratory experiment to teach the basic principles of centrifugation and to explore the shear effects of centrifugation using bacterial cells as model particles. This experiment provides training in the use of a bench-top…
Descriptors: Laboratory Experiments, Microbiology, Scientific Concepts, Chemistry
Gilleskie, Gary L.; Reeves, Baley A. – Chemical Engineering Education, 2014
Most chemical engineering graduates work in industry, a fact that underscores the need for courses to provide experiences that prepare them for industry. The Biomanufacturing Training and Education Center (BTEC) at North Carolina State University has addressed this need by developing and delivering a comprehensive downstream bioprocessing program…
Descriptors: Science Instruction, Chemical Engineering, Employment Qualifications, Student Attitudes
Frey, Douglas D.; Guo, Hui; Karnik, Nikhila – Chemical Engineering Education, 2013
This article describes the assembly of a simple, low-cost, high-performance liquid chromatography (HPLC) system and its use in the undergraduate chemical engineering laboratory course to perform simple experiments. By interpreting the results from these experiments students are able to gain significant experience in the general method of…
Descriptors: Science Instruction, Chemistry, Chemical Engineering, Science Laboratories
Yang, Allen H. J.; Dimiduk, Kathryn; Daniel, Susan – Chemical Engineering Education, 2011
We present a simplified human alcohol metabolism model for a mass balance team project. Students explore aspects of engineering in biotechnology: designing/modeling biological systems, testing the design/model, evaluating new conditions, and exploring cutting-edge "lab-on-a-chip" research. This project highlights chemical engineering's impact on…
Descriptors: Feedback (Response), Metabolism, Biotechnology, Chemical Engineering
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
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
Lefebvre, Brian G.; Farrell, Stephanie; Dominiak, Richard S. – Chemical Engineering Education, 2007
Advances in biology are prompting new discoveries in the biotechnology, pharmaceutical, medical technology, and chemical industries. This paper presents a detailed description of an anion exchange chromatography experiment using a pair of colorful proteins and summarizes the effect of operating parameters on protein separation. This experiment…
Descriptors: Elective Courses, Biotechnology, Chemical Engineering, Chemistry
O'Connor, Kim C. – Chemical Engineering Education, 2007
Advances in the biological sciences necessitate the training of chemical engineers to translate these fundamental discoveries into applications that will benefit society. Accordingly, Tulane University revised its core chemical engineering curriculum in 2005 to include a new introductory course in bioengineering and biotechnology for sophomores.…
Descriptors: Introductory Courses, Biotechnology, Chemical Engineering, Science Instruction
Mosto, Patricia; Savelski, Mariano; Farrell, Stephanie H.; Hecht, Gregory B. – Chemical Engineering Education, 2007
Integrating biology in the chemical engineering curriculum seems to be the future for chemical engineering programs nation and worldwide. Rowan University's efforts to address this need include a unique chemical engineering curriculum with an intensive biology component integrated throughout from freshman to senior years. Freshman and Sophomore…
Descriptors: Elective Courses, Biotechnology, Biology, Chemical Engineering
Introducing Emerging Technologies in the Curriculum through a Multidisciplinary Research Experience.

Newell, James A.; Farrell, Stephanie H.; Hesketh, Robert P.; Slater, C. Stewart – Chemical Engineering Education, 2001
Describes the multidisciplinary teaching approach implemented at Rowan University's engineering department. Explains how emerging technologies are integrated into the curriculum. (Contains 19 references.) (YDS)
Descriptors: Biotechnology, Chemical Engineering, Higher Education, Interdisciplinary Approach