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Prausnitz, J. M. – Chemical Engineering Education, 1985
Provides a definition for creativity and illustrates it with examples from the history of science. Also indicates how the definition suggests some possibly useful procedures for educating creative scientists and engineers. (JN)
Descriptors: Chemical Engineering, Creativity, Definitions, Engineering Education

Brown, Lee F.; Falconer, John L. – Chemical Engineering Education, 1987
Explains the advantages of using molar quantities in chemical reactor design. Advocates the use of differential versions of reactor mass balances rather than the integrated forms. Provides specific examples and cases to illustrate the principles. (ML)
Descriptors: Chemical Engineering, Chemical Reactions, College Science, Engineering Education

Klusacek, K.; And Others – Chemical Engineering Education, 1989
Illustrates how triangular diagrams can aid in presenting some of the rather complex transient interactions that occur among gas and surface species during heterogeneous catalytic reactions. The basic equations and numerical examples are described. Classroom use of the triangular diagram is discussed. Several diagrams and graphs are provided. (YP)
Descriptors: Chemical Engineering, Chemical Equilibrium, Chemical Reactions, College Science

Kwon, K. C.; And Others – Chemical Engineering Education, 1987
Provides an overview of an experiment on reaction kinetics of the anthracene-hydrogen system. Includes a description of the laboratory equipment, procedures, and data analysis requirements. Points out the advantages of the recommended technique. (ML)
Descriptors: Chemical Engineering, Chemical Reactions, College Science, Engineering Education

Mathras, Michael S. – Science Teacher, 1993
Presents an activity that models the work of chemical engineers. Students design, fabricate, and perform mechanical tests on plaster matrix composites and compare the strength to mass ratios of several products. (PR)
Descriptors: Chemical Engineering, Chemistry, Engineering Education, High Schools

Roat, S. D.; Melsheimer, S. S. – Chemical Engineering Education, 1987
Describes a single input/single output feedback control system design program for IBM PC and compatible microcomputers. Uses a heat exchanger temperature control loop to illustrate the various applications of the program. (ML)
Descriptors: Chemical Engineering, College Science, Computer Assisted Instruction, Computer Uses in Education
Burnett, J. N. – Science, Technology & Society, 1986
Presents a description of the course "From Petroleum to Penicillin" which examines chemical engineering and the chemical industry from a scientific, social and symbolic view. Explains the goals, organization, and requirements of the course. Lists case study and lecture topics. (ML)
Descriptors: Chemical Engineering, Chemical Industry, College Science, Course Descriptions

Riggs, James B. – Chemical Engineering Education, 1988
Presents a framework for model development that, when used, will help the student (or professor) avoid the major pitfalls associated with modeling. Includes not properly identifying the controlling factors, lack of model validation and developing a model that is incompatible with its end use. (CW)
Descriptors: Chemical Engineering, Chemistry, College Science, Engineering Education

Skaates, J. Michael – Chemical Engineering Education, 1987
Describes a polymerization reactor engineering course offered at Michigan Technological University which focuses on the design and operation of industrial polymerization reactors to achieve a desired degree of polymerization and molecular weight distribution. Provides a list of the course topics and assigned readings. (TW)
Descriptors: Chemical Engineering, Chemical Reactions, College Science, Course Content

Helfferich, Friedrich G. – Chemical Engineering Education, 1989
Points out a different and much simpler approach for the study of equilibria of multiple and heterogeneous chemical reactions. A simulation on coal methanation is used to teach the technique. An example and the methodology used are provided. (MVL)
Descriptors: Chemical Engineering, Chemical Equilibrium, Chemical Reactions, Coal

McCready, Mark J. – Chemical Engineering Education, 1989
A course where students were required to choose projects and provide studies of the feasibility, consumer need, and process design is discussed. Other projects such as advertising campaigns used to encourage student creativity are discussed. The need to keep second semester seniors interested is stressed. (MVL)
Descriptors: Chemical Engineering, Chemical Industry, Chemical Reactions, College Science

Punzi, Vito L. – Chemical Engineering Education, 1987
Describes a simple thermodynamics experiment recommended for use in beginning chemical engineering laboratory courses. Outlines the theory behind the experiment, which determines the specific heat of a liquid. Discusses the construction, operation, and maintenance of the apparatus involved, along with the experimental procedure. (TW)
Descriptors: Chemical Engineering, College Science, Engineering Education, Heat

Takoudis, Christos G. – Chemical Engineering Education, 1987
Describes a 15-week course in the fundamentals of microelectronics processing in chemical engineering, which emphasizes the use of very large scale integration (VLSI). Provides a listing of the topics covered in the course outline, along with a sample of some of the final projects done by students. (TW)
Descriptors: Chemical Engineering, College Science, Computer Uses in Education, Course Content

Joye, Donald D.; Koko, F. William Jr. – Chemical Engineering Education, 1988
Presents a new method to teach the subject of evaporators which is both simple enough to use in the classroom and accurate and flexible enough to be used as a design tool in practice. Gives an example using a triple evaporator series. Analyzes the effect of this method. (CW)
Descriptors: Algorithms, Chemical Engineering, Chemistry, College Science

Chemical and Engineering News, 1986
Recounts an interview with chemist, educator, and executive Mary Good. Opinions are expressed about the status of basic research in chemistry, the relationship of chemical research to several federal agencies, the value of education in chemistry, and the perceptions of the public regarding the chemical community, particularly the health risks. (TW)
Descriptors: Chemical Engineering, Chemical Industry, Chemistry, Interviews