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Showing 46 to 60 of 84 results Save | Export
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Whitney, Roy P.; Cullinan, Harry T., Jr. – Chemical Engineering Education, 1978
The aim of this program is to integrate a broad spectrum of disciplines and apply the integrated whole to the solution of the problems of the pulp and paper industry. (BB)
Descriptors: Chemical Industry, Chemistry, Doctoral Programs, Engineering Education
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Russell, T. W. F.; And Others – Chemical Engineering Education, 1982
Describes an advanced simulation illustrating how basic engineering skills can be combined with economic considerations and risk-taking judgments to effectively design and operate a chemical processing unit in a competitive environment. The simulation is used as one of five projects in a technical management course. (SK)
Descriptors: Chemical Industry, Chemistry, College Science, Computer Oriented Programs
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Hanley, Thomas R.; Henry, James M. – Chemical Engineering Education, 1979
This program at Tulane University gives second-semester seniors the opportunity to perform in an industrial environment under the guidance of both an industrial and an academic advisor. (BB)
Descriptors: Chemistry, College Science, Engineering Education, Field Experience Programs
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Russell, T. W. F.; Turner, H. E. – Chemical Engineering Education, 1977
Discusses an experimental program to test the concept of training students at the Master's level in chemical engineering. Described is a combination of formal university graduate courses and an on-the-job, industrial internship in lieu of a formal research program. (MLH)
Descriptors: Curriculum, Engineering, Engineering Education, Experimental Programs
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Shaheen, E. I.; Kniebes, D. V. – Chemical Engineering Education, 1978
The three major objectives of the Algerian Institute of Petroleum are to provide technician training, engineering education, and scientific and technical research. (BB)
Descriptors: Chemistry, College Programs, Engineering Education, Graduate Study
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Martinez, Enrico N.; Gomez, Roman – Chemical Engineering Education, 1982
The needs, deficiencies, and possible solutions for undergraduate education of chemical engineers in Mexico were discussed in Volume XVI (Number 3) of this journal. In this paper, the authors extend their comments to the status of graduate education of chemical engineers in Mexico, focusing on the masters program. (Author/JN)
Descriptors: Chemical Engineering, College Curriculum, Engineering, Engineering Education
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Lees, Frank P. – Chemical Engineering Education, 1980
Describes graduate and undergraduate program in Plant Engineering at Loughborough University of Technology, England. Central theme of program is that of failures which occur on plant. Almost all topics are related to deviation, maloperation, or failure in some way. (Author/JN)
Descriptors: Chemical Industry, Chemistry, Curriculum Design, Engineering Education
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Hallman, John R.; Neumann, Paul D. – Chemical Engineering Education, 1978
The set-up and checking-out of a simulated chemical pilot plant as part of a chemical engineering technology lab is described. (BB)
Descriptors: Chemical Industry, Chemical Technicians, Chemistry, College Science
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Schrader, G. L.; And Others – Chemical Engineering Education, 1983
Describes an industrial and engineering chemistry course organized on a case-study approach. The course theme is process conceptualization (creation of chemical processing routes). Flowcharts/flowcharting, quantitative aspects of industrial chemistry, teaching the course, use of patents, student evaluation, and useful references are discussed. A…
Descriptors: Chemical Engineering, Chemistry, Course Descriptions, Engineering Education
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Peppas, Nicholas A. – Chemical Engineering Education, 1980
Presents a description, course outline, review articles and rationale for a course on Polymerization Reaction Engineering at Purdue University, Indiana. (JN)
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, Course Content
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Deshpande, Pradeep B.; Plank, Charles A. – Chemical Engineering Education, 1979
Describes the undergraduate chemical engineering curriculum at the Speed Scientific School of the University of Louisville. The history of the department, a description of the chemical engineering courses, and the strengths and weaknesses of the program are also included. (HM)
Descriptors: Chemical Industry, Chemistry, College Science, Course Descriptions
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Westerberg, Arthur W. – Chemical Engineering Education, 1982
Guidelines to use when solving complex design problems and two illustrative examples were presented in Volume 16 (No. 1), page 12 of this journal. Two additional examples are presented, focusing on ASCEND-II, a flowsheeting system to help "design" a computer model for a process. (SK)
Descriptors: Chemical Industry, College Science, Computer Oriented Programs, Engineering Education
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Debelak, Kenneth A.; Roth, John A. – Chemical Engineering Education, 1982
Reviews a one-semester senior plant design/laboratory course, focusing on course structure, student projects, laboratory assignments, and course evaluation. Includes discussion of laboratory exercises related to process waste water and sludge. (SK)
Descriptors: Chemical Industry, College Science, Course Descriptions, Engineering Education
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Martinez, Enrico N.; Gomez, Roman – Chemical Engineering Education, 1982
Presents a brief history of the chemical industry in Mexico and discusses various aspects of curriculum development in chemical engineering in the past. Offers guidelines for current curriculum development and describes the program (including objectives and curriculum) in chemical engineering at UAM-I (Universidad Autonoma…
Descriptors: Chemical Engineering, Chemical Industry, College Curriculum, Curriculum Development
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Kershenbaum, L. S.; And Others – Chemical Engineering Education, 1980
Describes aims, objectives content, and instructional strategies of a course in systems modelling and control at Imperial College, England. Major problem areas include multivariable control system design, estimation and filtering, and the design and use of adaptive "self-tuning" regulators. (Author/JN)
Descriptors: Chemical Industry, Chemistry, Computer Oriented Programs, Computers
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