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McIver, Keith; Merrill, Thomas; Farrell, Stephanie – Chemical Engineering Education, 2017
A commercial hollow fiber blood oxygenation laboratory experiment was used to introduce lower level engineering students to mass balances in a two-phase system. Using measured values of concentration and flow rate, students calculated the rate of mass transfer from the gas phase and into the liquid phase, and compared the two values to determine…
Descriptors: Scientific Concepts, Scientific Methodology, Scientific Principles, Laboratory Experiments
Heldt, Caryn L.; Bank, Alex; Turpeinen, Dylan; King, Julia A. – Chemical Engineering Education, 2016
The need to increase science, technology, engineering, and mathematics (STEM) graduates is great. To interest more students into STEM degrees, we made our graphene biosensor research portable, inexpensive, and safe to demonstrate technology development to high school students. The students increased their knowledge of biosensors and proteins, and…
Descriptors: High Schools, Secondary School Science, Laboratory Experiments, STEM Education
Dewan, Alim; Van Wie, Bernard; Beyenal, Haluk; Lewandowski, Zbigniew – Chemical Engineering Education, 2010
Many chemical engineering programs offer courses from a variety of disciplines to teach their students multidisciplinary concepts, but often these courses lack appropriate tools for linking newly learned concepts to principles learned in the core courses. This paper describes our experience of incorporating a microbial fuel cell education module…
Descriptors: Science Instruction, College Science, Scientific Concepts, Scientific Principles
Singh, Abhay; Jayaraman, Arul; Hahn, Juergen – Chemical Engineering Education, 2007
Cell signaling pathways often contain feedback loops where proteins are produced that regulate signaling. While feedback regulatory mechanisms are commonly found in signaling pathways, there is no example available in the literature that is simple enough to be presented in an undergraduate control class. This paper presents a simulation study of…
Descriptors: Cytology, Molecular Biology, Feedback (Response), Human Body
Gray, Jeffrey J. – Chemical Engineering Education, 2006
I present modifications to the traditional course entitled, "Process dynamics and control," which I renamed "Modeling, dynamics, and control of chemical and biological processes." Additions include the central dogma of biology, pharmacokinetic systems, population balances, control of gene transcription, and large-scale…
Descriptors: Molecular Biology, Engineering Education, Mathematical Models, Chemical Engineering
Moghe, Prabhas V.; Roth, Charles M. – Chemical Engineering Education, 2006
A wide range of biotechnological and biomedical processes and products involves the design, synthesis, and analysis of biological interfaces. Such biointerfaces mediate interactions between living cells or intracellular species and designed materials or biologics. Incorporating the experiences of a NSF-sponsored IGERT (Integrative Graduate…
Descriptors: Graduate Students, Graduate Study, Interdisciplinary Approach, Science Curriculum

Oerther, Daniel B. – Chemical Engineering Education, 2002
Introduces a molecular biology course designed for environmental engineering majors using 16S ribosomal ribonucleic acid-targeted technology that allows students to identify and study microorganisms in bioreactor environments. (Contains 17 references.) (YDS)
Descriptors: Course Descriptions, Curriculum Development, Higher Education, Molecular Biology
O'Connor, Kim C. – Chemical Engineering Education, 2005
There is a growing need for a workforce that can apply engineering principles to molecular based discovery and product development in the biological sciences. To this end, Tulane University established a degree program that incorporates molecular and cellular biology into the chemical engineering curriculum. In celebration of the tenth anniversary…
Descriptors: Chemical Engineering, Molecular Biology, Molecular Structure, Cytology