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Chemical Engineering Education | 5 |
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Butt, John B. | 1 |
Carbonell, R. G. | 1 |
Frankel, D. S. | 1 |
Johnson, Ernest F. | 1 |
Perlmutter, D. D. | 1 |
Petersen, E. E. | 1 |
Russell, T. W. F. | 1 |
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Johnson, Ernest F. – Chemical Engineering Education, 1976
Describes a chemical engineering course in nuclear fusion reactor systems; includes plasma problems, fuel cycles, materials, blanket problems, reactor control, environmental problems. (MLH)
Descriptors: Course Descriptions, Curriculum, Energy, Engineering

Butt, John B.; Petersen, E. E. – Chemical Engineering Education, 1978
Compares the content of some undergraduate and graduate courses in chemical kinetics and chemical reactor engineering. (BB)
Descriptors: Course Content, Energy, Engineering Education, Graduate Study

Russell, T. W. F.; Frankel, D. S. – Chemical Engineering Education, 1978
Describes a technique for illustrating basic chemical engineering skills in reactor design and process analysis. (SL)
Descriptors: Chemistry, College Science, Engineering, Engineering Education

Perlmutter, D. D. – Chemical Engineering Education, 1978
This course uses stability as a central theme around which to organize a wide range of reactor concerns. This approach brings together the subject matter of catalyst particles with that of well-stirred vessels and tubular reactor geometry. (Author/BB)
Descriptors: Chemistry, College Science, Course Content, Curriculum

Carbonell, R. G.; Whitaker, S. – Chemical Engineering Education, 1978
This course concentrates on a rigorous development of the multicomponent transport equations, boundary conditions at phase interfaces, and volume-averaged transport equations for multiphase reacting systems. (BB)
Descriptors: Chemistry, College Science, Course Content, Curriculum