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Lo, Roger C.; Bhatia, Hina; Venkatraman, Rahul; Jang, Larry K. – Chemical Engineering Education, 2015
Microfluidics involves the study of the behavior of fluids at microscale, fluid manipulations, and the design of the devices that can effectively perform such manipulations. We are developing two new elective courses to include microfluidics in our curriculum at CSULB. Herein, we present the results of the first course, Microfabrication and…
Descriptors: Chemical Engineering, Science Instruction, College Science, Science Curriculum
Mack Shelley, Editor; Ozkan Akman, Editor; Sabri Turgut, Editor – International Society for Technology, Education, and Science, 2024
"Proceedings of International Conference on Humanities, Social and Education Sciences" includes full papers presented at the International Conference on Humanities, Social and Education Sciences (iHSES) which took place on April 16-19, 2024, in San Francisco, California, United States of America. The aim of the conference is to offer…
Descriptors: Computer Uses in Education, Artificial Intelligence, Lifelong Learning, Community College Students
Lee, Kilho; Comolli, Noelle K.; Kelly, William J.; Huang, Zuyi – Chemical Engineering Education, 2015
Mathematical models play an important role in biochemical engineering. For example, the models developed in the field of systems biology have been used to identify drug targets to treat pathogens such as Pseudomonas aeruginosa in biofilms. In addition, competitive binding models for chromatography processes have been developed to predict expanded…
Descriptors: Chemical Engineering, Biochemistry, College Science, Science Instruction
Brittle, Seth W.; Baker, Joshua D.; Dorney, Kevin M.; Dagher, Jessica M.; Ebrahimian, Tala; Higgins, Steven R.; Pavel Sizemore, Ioana E. – Journal of Chemical Education, 2015
The increased worldwide exploitation of nanomaterials has reinforced the importance of introducing nanoscale aspects into the undergraduate and graduate curriculum. To meet this need, a novel nano-laboratory module was developed and successfully performed by science and engineering students. The main goal of the experiment was to accurately…
Descriptors: Science Instruction, College Science, Spectroscopy, Science Laboratories
Lin, Yii-Nii – College Student Journal, 2012
The purpose of this study was to describe the life experiences of science/engineering students who had been dissatisfied with their lives during graduate school in Taiwan. This study adopted a qualitative method of phenomenology utilizing in-depth interviews for data collection. Thirteen male and five female students with an average age of 24.85…
Descriptors: Motivation, Engineering, Foreign Countries, Phenomenology
Paluri, Sesha L. A.; Edwards, Michelle L.; Lam, Nhi H.; Williams, Elizabeth M.; Meyerhoefer, Allie; Pavel Sizemore, Ioana E. – Journal of Chemical Education, 2015
In recent years, nanoscience and nanotechnology have been drawing enormous attention due to the numerous applications of nanomaterials. In an attempt to nurture interest towards these areas in young minds and to develop the next generation of environmentally conscious scientists and engineers, this new laboratory module focuses on the green and…
Descriptors: Molecular Structure, Technology, Science Instruction, Chemistry
Saatadjian, Esteban; Lesage, Francois; Mota, Jose Paulo B. – Chemical Engineering Education, 2013
A project that involves the numerical simulation of transport phenomena is an excellent method to teach this subject to senior/graduate chemical engineering students. The subject presented here has been used in our senior/graduate course, it concerns the study of natural convection heat transfer between two concentric, horizontal, saturated porous…
Descriptors: Science Instruction, Chemical Engineering, College Science, College Students
Wilkes, Garth L. – Chemical Engineering Education, 2012
This article addresses the importance of oral communication and many of its fundamental underlying principles. Emphasis is placed on oral presentations, particularly those used in science and engineering. Following this, the author provides a brief outline of an elective graduate level oral communications course that was developed and utilized to…
Descriptors: Graduate Study, College Instruction, Course Descriptions, College Science
Zheng, Kai Liang; Bean, Doyle P., Jr.; Lou, Helen H.; Ho, Thomas C.; Huang, Yinlun – Chemical Engineering Education, 2011
In this article we report on the use of a graduate "Special Topics" course to provide vital research and practical laboratory experience, within the context of developing a chemical process to manufacture biodiesel from algal sources. This course contained several key components that we believe are necessary skills in graduate research: 1) a…
Descriptors: Technical Writing, Laboratory Procedures, Literature Reviews, Graduate Study
Madihally, Sundararajan V. – Chemical Engineering Education, 2011
Most chemical engineering programs that offer M.S. and Ph.D. degrees have a common seminar series for all the graduate students. Many would agree that seminars lack student interest, leading to ineffectiveness. We questioned the possibility of adding value to the seminar series by incorporating non-technical topics that may be more important to…
Descriptors: Feedback (Response), Graduate Students, Technical Writing, Public Speaking
Jollands, Margaret; Jolly, Lesley; Molyneaux, Tom – European Journal of Engineering Education, 2012
This paper explores what work readiness means for two cohorts of graduate engineers, one from a traditional curriculum, the second from a largely project-based curriculum. Professional bodies and employers have defined a set of attributes for engineering graduates so that graduates will be "work ready". Problem-based learning (PBL) is…
Descriptors: Student Projects, Problem Based Learning, Graduates, Active Learning

Kummler, Ralph H.; And Others – Chemical Engineering Education, 1989
Provides an overview of the "Hazardous Waste Management Graduate Certificate" program at Wayne State University. Describes four required courses and nine optional courses. Discusses the development of a Master program and the curriculum of the Master program. (YP)
Descriptors: Chemical Engineering, College Science, Course Descriptions, Engineering

Floyd, Sigmund – Chemical Engineering Education, 1988
Compares graduate chemical engineering education practices of the U.S. and Japan. States that Japanese universities have set time limits on degrees due to industrial hiring practices. Concludes that Japanese graduates are highly trained and uniform. They tend to stay in the same job throughout their career. (MVL)
Descriptors: Chemical Engineering, Chemistry, College Science, Comparative Education
Alden, John D. – 1971
Statistics for 33,902 of 1971 engineering graduates were used to describe job prospects of the graduates. Findings include: (1) engineering graduates were largely successful in finding jobs or carrying out other plans; (2) about one out of every five engineering graduates at the bachelor's and master's degree levels had plans to continue full-time…
Descriptors: College Science, Employment, Engineering, Engineering Education

Chartoff, Richard P. – Chemical Engineering Education, 1977
Addresses the interrelationships between polymer science and education and describes a series of graduate courses to instruct the topics. (CP)
Descriptors: Chemistry, College Science, Course Descriptions, Curriculum