Publication Date
| In 2026 | 0 |
| Since 2025 | 27 |
| Since 2022 (last 5 years) | 124 |
| Since 2017 (last 10 years) | 286 |
| Since 2007 (last 20 years) | 597 |
Descriptor
Source
Author
Publication Type
Education Level
Audience
| Practitioners | 218 |
| Teachers | 159 |
| Students | 27 |
| Researchers | 26 |
| Administrators | 13 |
| Policymakers | 10 |
| Counselors | 1 |
Location
| South Africa | 24 |
| Spain | 19 |
| Australia | 14 |
| Canada | 12 |
| New Jersey | 8 |
| United States | 8 |
| Michigan | 7 |
| North Carolina | 7 |
| Pennsylvania | 7 |
| United Kingdom | 7 |
| Finland | 6 |
| More ▼ | |
Laws, Policies, & Programs
| Morrill Act 1862 | 1 |
| Smith Hughes Act | 1 |
Assessments and Surveys
| Approaches to Studying… | 1 |
| Inventory of Learning… | 1 |
| Learning Style Inventory | 1 |
| Myers Briggs Type Indicator | 1 |
| Study Process Questionnaire | 1 |
What Works Clearinghouse Rating
Kabel, Robert L. – Engineering Education, 1983
Describes management strategies used in a large kinetics/industrial chemistry course. Strategies are designed to make instruction in such classes more efficient and effective. Areas addressed include homework assignment, quizzes, final examination, grading and feedback, and rewards for conducting the class in the manner described. (JN)
Descriptors: Chemical Engineering, Classroom Techniques, Engineering Education, Higher Education
Peer reviewedNoble, R. D.; And Others – Chemical Engineering Education, 1983
Provides background information, apparatus needed, and procedures for an experiment to measure transient response of a stirred vessel. The inexpensive apparatus can be used for two different experiments, reducing cost per experiment. Both experiments use salt dilution as the method of demonstration. (Author/JN)
Descriptors: Chemical Engineering, Engineering Education, Higher Education, Laboratory Equipment
Peer reviewedNoble, Richard D. – Chemical Engineering Education, 1983
Presents an undergraduate laboratory experiment in which a solar collector is used to heat water for domestic use. The working fluid is moved by natural convection so no pumps are required. Experimental apparatus is simple in design and operation so that data can be collected quickly and easily. (Author/JN)
Descriptors: Chemical Engineering, Engineering Education, Heating, Higher Education
Peer reviewedWoods, Donald R.; And Others – Chemical Engineering Education (CEE), 1997
Describes a Job Club for still-unemployed students after graduation. Informal monthly meetings allow students to network; obtain moral support and encouragement; and get ideas, suggestions, and leads. Department faculty serve as informal brokers in bringing employers and graduates together and provide a support system for students during their job…
Descriptors: Career Counseling, Chemical Engineering, Employment Services, Graduates
Peer reviewedDranoff, Joshua S. – Chemical Engineering Education (CEE), 1995
Details the chemical engineering program at Northwestern University and factors that contribute most to its success. Also considers whether the quality of public and private education in this field differ significantly. Discusses BS degree production, measures of program quality, trends, and challenges to maintenance of faculty effectiveness.…
Descriptors: Academic Achievement, Chemical Engineering, Higher Education, Private Colleges
Peer reviewedSquires, R. G.; And Others – Computer Applications in Engineering Education, 1996
Purdue University (Indiana) is developing a series of computer modules of state-of-the-art chemical engineering processes to serve as the basis for computer-simulated experiments. One, sponsored by Procter and Gamble, models the extraction step in the decaffeination process and allows students to determine the optimal extraction conditions for…
Descriptors: Chemical Engineering, Computer Simulation, Experiments, Food
Peer reviewedWinter, H. Henning – Chemical Engineering Education, 2002
Introduces an evaluation method for the assessment of a single exam which also generates feedback for teachers. Provides a grade and identifies weaknesses in a student's knowledge and teaching. (YDS)
Descriptors: Academic Achievement, Chemical Engineering, Curriculum Development, Evaluation Methods
Peer reviewedSeymour, Raymond B. – Journal of Chemical Education, 1989
Discusses the product of alkenes, including isopropyl alcohol, ethylene, propylene, thermoplastics, and synthetic rubber. The developments and chemical formulas of the products are described. (YP)
Descriptors: Chemical Engineering, Chemical Reactions, Chemistry, Organic Chemistry
Peer reviewedSandler, Stanley I. – Chemical Engineering Education, 1990
Presents a framework identifying the molecular level assumptions underlying many thermodynamic models. Tests the assumptions using theory and computer simulation to develop better assumptions. (YP)
Descriptors: Chemical Engineering, College Science, Computer Simulation, Engineering
Peer reviewedSundberg, Donald C.; Someshwar, Arun V. – Chemical Engineering Education, 1989
Describes the structure of an in-depth laboratory project chemical engineering. Provides modeling work to guide experimentation and experimental work on heat transfer analysis. Discusses the experimental results and evaluation of the project. (YP)
Descriptors: Chemical Engineering, College Science, Engineering Education, Laboratory Experiments
Peer reviewedO'Connor, Andrea J.; Kandas, Angelo W.; Natori, Yukikazu; Hatton, T. Alan – Chemical Engineering Education (CEE), 1999
Describes the establishment, benefits, and difficulties of an overseas branch of the Massachusetts Institute of Technology's (MIT) chemical engineering Practice School for student internship study at the Mitsubishi Chemical Corporation's Mizushima Plant in Kurashiki, Japan. (WRM)
Descriptors: Chemical Engineering, Educational Change, Educational Innovation, Higher Education
Peer reviewedRyan, Michael E. – Journal of College Science Teaching, 2001
Discusses nuclear power and the consequences of a nuclear accident. Covers issues ranging from chemical process safety to risk management of chemical industries to the ethical responsibilities of the chemical engineer. (Author/ASK)
Descriptors: Chemical Engineering, College Science, Higher Education, Nuclear Power Plants
Case, Jennifer; Marshall, Delia – Studies in Higher Education, 2004
This article describes two approaches to learning (in addition to the classic deep and surface approaches) identified in studies of student learning in engineering contexts. The first study identified the 'procedural deep' approach in a group of engineering foundation programme students in the UK, while the second study identified the 'procedural…
Descriptors: Problem Solving, Learning Strategies, Higher Education, Engineering Education
Manimala, Mathew J. – Industry and Higher Education, 2006
In about twenty years, starting in 1984, Bangalore has become the fourth best "Global Hub of Technological Innovation", according to Business Week. This article reviews the major milestones in Bangalore's development and the interactive roles of government, universities and private entrepreneurs. The author offers a new model: innovation…
Descriptors: Information Technology, Models, Innovation, Corporations
Vullo, Diana L.; Wachsman, Monica B. – Journal of Food Science Education, 2005
This laboratory experiment was designed for Chemistry, Food Technology, Biology, and Chemical Engineering undergraduate students. This laboratory experience shows the advantages of immobilized bakery yeasts in ethanol production by alcoholic fermentation. The students were able to compare the ethanol production yields by free or calcium alginate…
Descriptors: Undergraduate Students, Laboratory Procedures, Laboratory Experiments, Science Activities

Direct link
