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Edwards, Robert V. – Chemical Engineering Education, 2010
An experiment is described that illustrates how chemical engineering correlations are created. Balls of different diameters and different specific gravities (all less than one) are dropped from several heights into a pool of water, and the maximum depth reached by the ball is measured. This data is used to estimate the coefficients for a…
Descriptors: Chemical Engineering, Laboratory Experiments, Science Experiments, Science Instruction
McWhorter, Rochell R.; Delello, Julie A.; Roberts, Paul B.; Raisor, Cindy M.; Fowler, Debra A. – Journal of Information Technology Education: Innovations in Practice, 2013
Higher education is mandated to document student learning outcomes and ePortfolios have been offered as a panacea for assessment, evaluation, and accreditation. However, the student voice regarding the value students construct from building and utilizing web-based electronic portfolios (ePortfolios) in higher education has been sparse or…
Descriptors: Portfolios (Background Materials), Electronic Publishing, Internet, Undergraduate Students
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
Komives, Claire; Prince, Michael; Fernandez, Erik; Balcarcel, Robert – Chemical Engineering Education, 2011
A web database of solved problems has been created to enable faculty to incorporate biological applications into core courses. Over 20% of US ChE departments utilized problems from the website, and 19 faculty attended a workshop to facilitate teaching the modules. Assessment of student learning showed some gains related to biological outcomes, as…
Descriptors: Undergraduate Study, Student Attitudes, Internet, Curriculum
Archer, Shivaun D. – Chemical Engineering Education, 2011
Microfluidics, the manipulation of fluids in channels with micron dimensions, has emerged as an exciting new field that impacts the broad area of nano/microtechnology. This is an important area to train the next generation of chemical engineers. This paper describes an experiment where students are given a problem to design a microfluidic mixer…
Descriptors: Chemical Engineering, Science Laboratories, College Science, Science Instruction
Monty, Chelsea Nicole – ProQuest LLC, 2009
The purpose of this thesis is to introduce a new idea: using biological mimics in the detection of toxic compounds. Biological mimics imitate the active site of a given enzyme or have catalytic chemistry similar to enzymes and can be used in place of biological molecules to provide longer stability and simpler operation. In the following text the…
Descriptors: Biochemistry, Scientific Methodology, Molecular Biology, Chemical Engineering
Kondratenko, Yevgeniy Vladimirovich – ProQuest LLC, 2009
Ion implantation is widely used in the microelectronics industry for fabrication of source and drain transistor regions. Unfortunately, implantation causes considerable damage to the substrate lattice rendering most of the implanted dopant electrically inactive. Rapid thermal annealing (RTA) heals the damage by rapidly heating the substrate with a…
Descriptors: Science Education, Chemical Engineering, Physics, Experiments
Simpson, Annie E.; Evans, Greg J.; Reeve, Doug – Journal of Leadership Education, 2012
The Engineering Leaders of Tomorrow Program (LOT) is a comprehensive curricular, co-curricular, extra-curricular leadership development initiative for engineering students. LOT envisions: "an engineering education that is a life-long foundation for transformational leaders and outstanding citizens." Academic courses, co-curricular certificate…
Descriptors: Engineering Education, Leadership, Chemical Engineering, Data Analysis
Carbo, Antonio Domenech; Adelantado, Jose Vicente Gimeno; Reig, Francisco Bosch – Online Submission, 2010
Misconceptions of chemistry and chemical engineering university students concerning instrumental analysis have been established from coordinated tests, tutorial interviews and laboratory lessons. Misconceptions can be divided into: (1) formal, involving specific concepts and formulations within the general frame of chemistry; (2)…
Descriptors: Chemistry, Chemical Engineering, Misconceptions, Science Instruction
Billet, Anne-Marie; Camy, Severine; Coufort-Saudejaud, Carole – Chemical Engineering Education, 2010
This paper presents an original approach for Chemical Engineering laboratory teaching that is currently applied at INP-ENSIACET (France). This approach, referred to as "pilot-unit leading group" is based on a partial management of the laboratories by the students themselves who become temporarily in charge of one specific laboratory. In…
Descriptors: Science Laboratories, Chemical Engineering, Foreign Countries, Teaching Methods
Kosmopoulou, Georgia; Jog, Chintamani; Freeman, Margaret; Papavassiliou, Dimitrios V. – Chemical Engineering Education, 2010
Chemical Engineering graduates will face challenges at the workplace that even their peers who graduated a few years ago were not expected to face. One such major challenge is the management and operation of companies and plants under conditions of uncertainty and the need to make decisions in competitive situations. Modern developments in…
Descriptors: Chemical Engineering, Decision Making, College Graduates, Economics
Wong, Kelvin W. W.; Barford, John P. – Chemical Engineering Education, 2010
Metstoich, a metabolic calculator developed for teaching, can provide a novel way to teach quantitative metabolism to biochemical engineering students. It can also introduce biochemistry/life science students to the quantitative aspects of life science subjects they have studied. Metstoich links traditional biochemistry-based metabolic approaches…
Descriptors: Metabolism, Biochemistry, Biological Sciences, Chemical Engineering
Norman, James J.; Andrews, Samantha N.; Prausnitz, Mark R. – Chemical Engineering Education, 2011
To introduce students to an application of chemical engineering directly related to human health, we developed an experiment for the unit operations laboratory at Georgia Tech examining diffusion across cadaver skin in the context of transdermal drug delivery. In this laboratory module, students prepare mouse skin samples, set up diffusion cells…
Descriptors: Science Laboratories, Chemical Engineering, Science Instruction, Undergraduate Study
Lucas Yagüe, Susana; Coca Sanz, Mónica; González Benito, Gerardo; Cartón López, Ángel; Urueña Alonso, Miguel Ángel; García Cubero, Mª Teresa – Journal of Technology and Science Education, 2011
The new reorganization of university education has involved relevant changes in teaching and learning methodologies in order to help students to learn more effectively and to develop important skills and competences demanded by the professional world. In this sense the new configuration of the degree in Chemical Engineering required the…
Descriptors: Questionnaires, Chemical Engineering, Science Instruction, Teaching Methods
Bullard, Lisa G.; Melvin, Adam T. – Advances in Engineering Education, 2011
We have developed an instructional video that uses role-play to illustrate the differences between acceptable behavior and cheating on assignments. Since we began showing it in an introductory chemical engineering course, the average number of confirmed instances of cheating decreased slightly, but the average percentage of students who were…
Descriptors: Role Playing, Video Technology, Expectation, Integrity

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