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Burns, Neal M. – J Eng Educ, 1970
Engineering educators do not utilize to full capacity the advanced computer techniques which information processing industries and utilities have developed to further educational services and data communication. (IR)
Descriptors: Computer Assisted Instruction, Electronics Industry, Engineering Education, Federal Aid
Burchinal, L. G. – J Eng Educ, 1970
Article focuses on government information systsms and resources, alternatives to computer storage retrieval and large scale information systems, and techniques to improve the utilization of existing information systems in colleges and universities. (Editor)
Descriptors: Data Collection, Engineering Education, Federal Programs, Information Centers
Thorn, Donald C.; Bundy, E. Wayne – Eng Educ, 1969
Descriptors: Audiovisual Aids, Course Evaluation, Educational Television, Engineering Education
Draper, C. S. – Eng Educ, 1970
Article discusses systems engineering, a method of handling theoretical technology in its adaptation to environment. (Author/IR)
Descriptors: Discriminant Analysis, Engineering Education, Engineering Technology, Environmental Technicians
Peer reviewedConger, William L. – Chemical Engineering Education, 1983
Graduate, undergraduate, and research programs in chemical engineering at the University of Kentucky are described. Includes a brief history of the university and development of the chemical engineering department, comments of department faculty, and a list of graduate offerings. (JN)
Descriptors: Chemical Engineering, Doctoral Programs, Engineering Education, Graduate Study
Peer reviewedSchuermann, Allen C.; Hommertzheim, Donald L. – Simulation and Games, 1983
Describes five statistical simulation programs developed at Wichita State University--Coin Flip and Raindrop, which demonstrate the binomial, Poisson, and other related distributions; Optimal Search; QSIM; and RANDEV, a random deviate generation program. Advantages of microcomputers over mainframes and the educational uses of models are noted.…
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Programs, Engineering Education
Peer reviewedAburdene, Maurice F. – CoED, 1983
Describes a Fortran program used in a computer-assisted-laboratory course. Program utilizes computer-controlled frequency sweeping to measure response (amplitude/phase) of a series RLC circuit, modeling the circuit and comparing experimental/theoretical results for system gain with computer gain using least squares analysis. Plots of both gain…
Descriptors: Computer Assisted Instruction, Computer Programs, Electric Circuits, Engineering
Dixon, John R. – Engineering Education, 1983
Discusses use of undergraduate student teaching assistants (UTAs) as a cost-effective solution to problems created by large enrollments at the University of Massachusetts (Mechanical Engineering Department). UTAs' responsibilities/duties, benefits (including savings of faculty salary/time), and educational quality in large classes (with UTAs)…
Descriptors: Classroom Techniques, Costs, Educational Quality, Engineering
Selfe, Cynthia L.; Arbabi, Freydoon – Engineering Education, 1983
An experiment in which students were required to keep journals during a civil engineering course is described. Student benefits (journals as problem-solving tools and forums for personal comments), faculty benefits (sources of background information and use as evaluation/recordkeeping tools), and five major conclusions are discussed. (JN)
Descriptors: Civil Engineering, Engineering Education, Higher Education, Learning Activities
Brillhart, L. V.; Debs, M. B. – Engineering Education, 1983
Surveyed 187 engineering colleges on composition/rhetoric courses required of engineering students, required and/or elective technical writing courses, and attitudes toward writing/writing instruction. Results from 108 responding institutions indicate that, although administrators support such courses, course implementation does not always reflect…
Descriptors: Administrator Attitudes, College Curriculum, Degree Requirements, Engineering Education
Peer reviewedWesterberg, 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
Peer reviewedDebelak, 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
Peer reviewedAlkire, Richard C. – Journal of Chemical Education, 1983
Discusses engineering ramifications of electrochemistry, focusing on current/potential distribution, evaluation of trade-offs between influences of different phenomena, use of dimensionless numbers to assist in scale-over to new operating conditions, and economics. Also provides examples of electrochemical engineering education content related to…
Descriptors: Chemical Engineering, Chemical Industry, Chemical Reactions, Chemistry
Peer reviewedLittle, Julia E. – Chemical Engineering Education, 1983
Discusses the chemistry and chemical engineering curriculum, programs, and activities at Delft University of Technology (Netherlands). Chemistry and chemical engineering are combined into a single department (subdivided into 10 workgroups) at the state-supported university. An outline of the four-year study program (which includes research/design…
Descriptors: Chemical Engineering, Chemistry, College Curriculum, College Science
Peer reviewedYing, Dao-ning – CoED, 1982
Presents computer programs (Applesoft Basic) for: (1) 2-D rotation about any point through any angle; (2) matrix transformation for 2-D rotation; (3) 3-D translation; (4) 3-D rotation; and (5) hyperboloid rotated in 2-D space. Includes background information and sample output for the matrix transformation subroutines. (JN)
Descriptors: College Mathematics, Computer Graphics, Computer Oriented Programs, Computer Programs


