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Bork, Alfred M. – 1971
The science student has many avenues to learning how to program, including learning directly within the science course, in a special course on programing, or by self-study. Often a formal programing course is neither necessary or advisable. In general a pedagogical approach, aimed at bringing the student quickly to using the language, is better…
Descriptors: Computer Assisted Instruction, Computer Programs, Computer Science Education, Programing
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Nold, Ellen W. – College Composition and Communication, 1975
Computers can be programed for humanistic objectives.
Descriptors: Computer Assisted Instruction, Computer Programs, Computer Science, Computers
Classroom Computer Learning, 1984
Provides activities (and program listings) related to a Mendelian genetics experiment, Tetranacci numbers, and Pascal loops. Also suggests using the computer and spreadsheets to plan the production of a school yearbook. (JN)
Descriptors: Computer Science Education, Computer Software, Genetics, Learning Activities
Thornburg, David; Beane, Pam – Classroom Computer Learning, 1983
Presents activities for language arts, differentiating between a variable name and its value, creating music using PILOT, and playing LOGO games. Includes the article "Take the Turtle to School: A Child's View of Programming" by Jack McLeod. (JN)
Descriptors: Computer Programs, Computer Science Education, Educational Games, Elementary Education
Eckel, Karl; Richter, Gerhard – Programmiertes Lernen, 1972
Project supported by the Volkswagen Foundation. (VM)
Descriptors: Computer Assisted Instruction, Computer Science, Course Descriptions, Educational Research
Sholl, H. A. – Journal of Engineering Education, 1971
Descriptors: College Science, Computer Assisted Instruction, Computer Programs, Computer Science
Reno, Charles – Amer Soc Inform Sci, 1970
Paper presented at the Educationand Information Science Symposium," Sponsored by the Ohio Chapters of the American Society for Information Science in cooperation with The Department of Computer and Information Science, The Ohio State University, June 23 and 24, 1969. (MF)
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Computer Science, Computers
Elberfeld, John K. – Computing Teacher, 1982
Suggest use of well-organized slide presentation as effective way to introduce computers to large audiences and discusses how to get started--state objective, analyze audience, outline presentation, prepare slides--and equipment needed to obtain slides from television screens, miniature components, and book illustrations. References and sources…
Descriptors: Audiovisual Aids, Computer Literacy, Computer Science Education, Instructional Design
Barry, Stephen T. – Technological Horizons in Education, 1982
Describes a project at Honeywell Information Systems that uses Computer Assisted Instruction (CAI) to train employees to make more effective use of computers. Notes that industry is leading the way in Data Processing (DP) training and may be evolving solutions to public education's shortage of DP training resources. (MP)
Descriptors: Computer Assisted Instruction, Computer Literacy, Computer Science, Computers
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Soltzberg, Leonard J. – Journal of Chemical Education, 1979
Surveys the current scene in computer graphics from the point of view of a chemistry educator. Discusses the scope of current applications of computer graphics in chemical education, and provides information about hardware and software systems to promote communication with vendors of computer graphics equipment. (HM)
Descriptors: Chemistry, College Science, Computer Graphics, Computer Programs
Brown, David W. – Computer Science Education, 1990
Presents a method to enhance the teaching of computer programing to secondary students that establishes a connection between logic, truth tables, switching circuits, gating symbols, flow charts, and pseudocode. The author asserts that the method prepares students for thinking processes related to programing. (MDH)
Descriptors: Coding, Cognitive Development, Computer Science Education, Electric Circuits
Peer reviewed Peer reviewed
Yuen, Allan H. K. – Australian Journal of Education, 2000
Interviewed 12 computer studies faculty in Hong Kong about their perspectives on teaching computer programming; organized data into themes. Concluded that teachers rely on a "mind as container" understanding of knowledge and learning that would be better replaced with a connectionist view of the mind. (EV)
Descriptors: College Faculty, Computer Science Education, Foreign Countries, Learning Processes
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Wu, Cheng-Chih; Lee, Greg C. – International Journal of Science and Mathematics Education, 2004
This study investigates how Computer-Mediated Communication (CMC) can be effectively used in a teaching practicum course to enhance preservice teachers' learning. We constructed a web-based CMC system and used it in a Teaching Practicum course. Computer science preservice teachers and experienced secondary school computer teachers, who served as…
Descriptors: Video Technology, Preservice Teacher Education, Preservice Teachers, Practicums
Dunlap, Joanna C. – Performance Improvement Quarterly, 2005
In a climate of continual change and innovation, lifelong learning is a critical professional development objective which has a direct impact on organizations' effectiveness and ability to compete and innovate. To help learners continually upgrade their skills and knowledge so they can effectively address emerging organizational and professional…
Descriptors: Problem Based Learning, Lifelong Learning, Computer Science Education, Teaching Methods
McInerney, Valentina; And Others – 1994
This paper reports on a study designed to examine the comparative efficacy of collaborative self-regulated learning and direct teaching on the reduction of computer anxiety among students, as well as the comparative effects of these models of teaching on student achievement. Using a quasi-experimental design, two equivalent groups of university…
Descriptors: Academic Achievement, Computer Anxiety, Computer Science Education, Conventional Instruction
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