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Wilson, Sarah A.; Goldberg, Deborah S. – Chemical Engineering Education, 2023
Engineering students face significant stressors such as high academic expectations and extreme time demands that have the potential to impact their mental health. Due to the mentoring responsibilities of chemical engineering faculty, faculty are often positioned to provide support for these students. Through this article, we aim to help prepare…
Descriptors: Engineering Education, Mental Health, Stress Variables, Health Services

Newell, R. B.; And Others – Chemical Engineering Education, 1985
Discusses current problems in chemical engineering education at the University of Queensland (including those related to the laboratory, student/staff ration, literacy, motivation, course content, and structural changes). Also describes a proposed plan of the Queensland department to implement a scheme for resource-based education in chemical…
Descriptors: Chemical Engineering, College Instruction, Curriculum Development, Engineering Education

Snyder, William J., Hanyak, Michael E. – Chemical Engineering Education, 1985
Describes the advantages and features of computer-assisted laboratory stations for use in a chemical engineering program. Also describes a typical experiment at such a station: determining the response times of a solid state humidity sensor at various humidity conditions and developing an empirical model for the sensor. (JN)
Descriptors: Chemical Engineering, Computer Oriented Programs, Engineering Education, Higher Education

Rawls, Rebecca L. – Chemical and Engineering News, 1989
Illustrates statistical data on spending money for research and development in chemistry and chemical engineering. The data is presented by overview, federal government, industry, universities and colleges, and international. Provides many tables and graphs. (YP)
Descriptors: Chemical Engineering, Chemistry, Colleges, Expenditures

Fleischman, Marvin – Chemical Engineering Education, 1991
Explores the inclusion of risk reduction, as it relates to the handling of hazardous materials, within the chemical engineering curriculum and current teaching efforts on this topic at the University of Louisville. Includes common course outlines, selected textbooks and other required materials, guest lecture list by topic, and examples of…
Descriptors: Chemical Engineering, Course Content, Course Descriptions, Course Objectives

Ramkrishna, D.; And Others – Chemical Engineering Education, 1989
This is a summary of a seminar for changing the undergraduate chemical engineering curriculum in India. Identifies and describes biotechnology, materials for structural and microelectronic catalysis, and new separation processes as emerging areas. Evaluates the current curriculum, including basic science, engineering lore, chemical engineering,…
Descriptors: Chemical Engineering, College Science, Curriculum Development, Curriculum Guides

Lee, William E., III – Chemical Engineering Education, 1991
Describes an undergraduate course in chemical engineering that details the technology of immobilized enzymes and cells. Includes the course rationale and purpose; the course outline when offered as an engineering elective in the biotechnology area; and discussion of appropriate text, selected real-world applications, and laboratory presentations.…
Descriptors: Chemical Engineering, Course Content, Course Descriptions, Curriculum Development

Watters, James C.; Zoeller, Dominic A. – Chemical Engineering Education, 1991
Discusses several options for the incorporation of minimal coursework involving engineering ethics into an already tightly packed curriculum. Topics include integration versus the stand-alone approach; timeliness of course addition; outline of course content and instructional format; students' reflections and instructor's musings; and an annotated…
Descriptors: Chemical Engineering, Course Content, Course Descriptions, Curriculum Development

Chemical and Engineering News, 1989
Notes that bachelor's degrees under ACS approved programs decreased 6.8 percent while master's degrees decreased 3.3 percent. Ph.D. degrees showed an increase of only 1 percent. Provides a summary of degrees received between 1984-88. Includes a listing of chemistry and chemical engineering degrees awarded by ACS-approved schools for 1987-88. (MVL)
Descriptors: Bachelors Degrees, Chemical Engineering, Chemistry, College Science

Miranda, R. – Chemical Engineering Education, 1989
Described is a heterogeneous catalysis course which has elements of materials processing embedded in the classical format of catalytic mechanisms and surface chemistry. A course outline and list of examples of recent review papers written by students are provided. (MVL)
Descriptors: Chemical Analysis, Chemical Engineering, Chemical Industry, Chemical Reactions

Laukhuf, Walden L. S.; And Others – Chemical Engineering Education, 1989
Discussed is the idea of increasing the humanities requirements for chemical engineers. Reported are the results of a survey to determine what other universities are doing about increased general education requirements. A copy of the survey is included. (MVL)
Descriptors: Bachelors Degrees, Chemical Engineering, College Science, Curriculum Development

Lane, Alan M. – Chemical Engineering Education, 1989
Reported are the results of a 1987 survey of U.S. chemical engineering departments on health and safety. Some details of what is being done at the University of Alabama are provided. A syllabus and reading resources for a survey course on safety, health, environmental, and ethical issues are included. (MVL)
Descriptors: Chemical Engineering, College Science, Course Content, Curriculum Development
Jones, Lyle V., Ed.; And Others – 1982
The quality of doctoral-level chemical engineering (N=79), civil engineering (N=74), electrical engineering (N=91), and mechanical engineering (N=82) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: (1) program size; (2) characteristics of graduates; (3) reputational factors…
Descriptors: Academic Libraries, Chemical Engineering, Civil Engineering, College Faculty