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Peer reviewedRoat, 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
Leuba, Richard J. – Engineering Education, 1986
Explains how multiple choice test items can be devised to measure higher-order learning, including engineering problem solving. Discusses the value and information provided in item analysis procedures with machine-scored tests. Suggests elements to consider in test design. (ML)
Descriptors: College Science, Creative Thinking, Engineering Education, Evaluation Methods
Peer reviewedSherwood, Robert D.; And Others – Journal of Research in Science Teaching, 1987
Presents data indicating that learning can be enhanced when information is presented that illustrates how science information can be used to solve problems. The experiments showed positive results through use of video-based macro-contexts. (ML)
Descriptors: Audiovisual Communications, College Science, Computer Assisted Instruction, Educational Technology
Peer reviewedNewey, Charles – European Journal of Engineering Education, 1987
Explains the three major types of case studies and reviews their advantages and disadvantages as instructional tools. Presents two examples which were employed in the area of technology at the Open University of the United Kingdom. (ML)
Descriptors: Case Studies, College Science, Foreign Countries, Higher Education
Peer reviewedIngen-Housz, A. J. – European Journal of Engineering Education, 1987
Presents an overview of the teaching of plastics at various levels of technological education in the Netherlands focusing on mechanical engineering. Highlights the design process and discusses the Dutch perspective of the role of materials engineering in engineering curricula. (ML)
Descriptors: College Science, Course Descriptions, Engineering Education, Engineering Technology
Koen, Billy Vaughn – Engineering Education, 1987
Proposes that there is a universal method for all realms of knowledge. Reviews Descartes's definition of the universal method, the engineering definition, and the philosophical basis for the universal method. Contends that the engineering method best represents the universal method. (ML)
Descriptors: Cognitive Structures, College Science, Engineering, Engineering Education
Peer reviewedHowe, Robert Crombie – Journal of Geological Education, 1987
Reports on an investigation of 31 introductory geology textbooks indicating that the concept of contact between bodies of rock is only rarely discussed. Data collected pertaining to 15 related terms demonstrated that many are either omitted or inadequately covered. (TW)
Descriptors: College Science, Content Analysis, Geology, Higher Education
Peer reviewedBarker, Gary Keith – Journal of Geological Education, 1987
Provides directions for interfacing the Lehman seismograph through an analog/digital converter. Discusses potential modifications and applications of this approach. (ML)
Descriptors: College Science, Computer Assisted Instruction, Computer Uses in Education, Geology
Peer reviewedChesner, Craig A.; Rose, William I. – Journal of Geological Education, 1987
Reviews the objectives, themes, and content of a series of five color videotapes on volcanic rock textures. Explains how the tapes, which integrate petrographic observations of textures with computer graphics, can be used in undergraduate and graduate level courses. (ML)
Descriptors: Audiovisual Aids, College Science, Course Descriptions, Educational Technology
Peer reviewedFrank, David V.; And Others – Journal of Chemical Education, 1987
Discusses the differences between problems and exercises in chemistry, and some of the difficulties that arise when the same methods are used to solve both. Proposes that algorithms are excellent models for solving exercises. Argues that algorithms not be used for solving problems. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education
Peer reviewedMiddlecamp, Catherine; Kean, Elizabeth – Journal of Chemical Education, 1987
Discusses the difference between a generic chemistry problem (one which can be solved using an algorithm) and a harder chemistry problem (one for which there is no algorithm). Encourages teachers to help students recognize these categories of problems so they will be better able to find solutions. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education
Peer reviewedSchrader, C. L. – Journal of Chemical Education, 1987
Discusses the differences between problems and exercises, the levels of thinking required to solve them, and the roles that algorithms can play in helping chemistry students perform these tasks. Proposes that students be taught the logic of algorithms, their characteristics, and how to invent their own algorithms. (TW)
Descriptors: Algorithms, Chemistry, College Science, Higher Education
Peer reviewedNewton, Thomas A. – Journal of Chemical Education, 1987
Questions the continued misuse of Markovnikov's Rule in organic chemistry texts. Claims that the results of several studies that show the reaction to be more complex than it appears at first. Criticizes authors of new texts who have perpetrated the rule based on reading older texts. (TW)
Descriptors: Chemical Reactions, College Science, Higher Education, Misconceptions
Peer reviewedSuslick, Kenneth S.; And Others – Journal of Chemical Education, 1987
Describes a physical chemistry experiment that uses Fourier transform (FTIR) spectrometers and microcomputers as a way of introducing students to the spectral storage and manipulation techniques associated with digitized data. It can be used to illustrate FTIR spectroscopy, simple kinetics, inorganic mechanisms, and Beer's Law. (TW)
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
Peer reviewedChemical and Engineering News, 1988
Presents the text of the Priestly Medal Address presented June 7, 1988 at the special chemical education awards symposium of the Third Chemical Congress of North America in Toronto. Addresses the vertical nature of learning in science, the core curriculum debate, and advances in science. (CW)
Descriptors: Chemistry, College Science, Conferences, Core Curriculum


