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Lichten, William – 1971
A three-part program investigated the use of computers at an inner-city high school. An attempt was made to introduce a digital computer for instructional purposes at the high school. A single portable teletype terminal and a simple programing language, BASIC, were used. It was found that a wide variety of students could benefit from this…
Descriptors: Computer Assisted Instruction, Computer Science Education, Digital Computers, Disadvantaged Youth
New England School Development Council, Newton, MA. – 1972
This monograph outlines the experiences of one school district when it acquired a computer capability. The document should prove useful to other school districts or educational institutions involved in the process of deciding how best to utilize computer technology. The study observes and documents the procedures commonly used by most schoolmen as…
Descriptors: Administrator Guides, Case Studies, Computer Oriented Programs, Computer Science Education
Association for Educational Data Systems, Washington, DC. – 1971
In this introductory pamphlet, computers are defined, and the main components of a computer system (input, storage or memory, control, arithmetic logic, and output), the language of the computer and use of computers in education are discussed. The latter section considers computer science, computer-assisted instruction, programed instruction,…
Descriptors: Computer Assisted Instruction, Computer Science, Computer Science Education, Computers
National Academy of Engineering, Washington, DC. Commission on Education. – 1971
This report is from Task Force VIII of the COSINE Committee of the Commission on Education of the National Academy of Engineering. The task force was established to formulate subject matter for an elective undergraduate subject on computer operating systems principles for students whose major interest is in the engineering of computer systems and…
Descriptors: College Science, Computer Science Education, Course Descriptions, Curriculum Development
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
Hamblen, John W.; Baird, Thomas B. – EDUCOM Bulletin, 1978
Summarizes findings of the Fourth Inventory of Computers in Higher Education. Responses to a questionnaire were received from 1,822 U.S. institutions and campuses, which reported on the administrative functions, personnel, equipment, instructional use, and costs of their computer facilities. A two-volume report on this survey will be published in…
Descriptors: Computer Oriented Programs, Computer Science Education, Equipment, Facilities
Berzsenyi, George – Mathematics Teaching, 1977
A manipulative pedagogical device to supplement the teaching of a unit on computers is described. Sample programs possible with such a device are illustrated. (MN)
Descriptors: Activity Units, Computer Programs, Computer Science Education, Computers
Dwyer, Thomas A. – Creative Computing, 1977
The use of several features of BASIC programs is examined. Examples of programs and self-tests are included. (MN)
Descriptors: Computer Programs, Computer Science, Computer Science Education, Higher Education
Dwyer, Thomas A. – Creative Computing, 1978
The use of several features of BASIC programs is examined. Examples of programs and self-tests are included. (MN)
Descriptors: Computer Programs, Computer Science, Computer Science Education, Higher Education
Peer reviewedKoetke, Walter – Arithmetic Teacher, 1985
Mathematics teachers should be teaching computer science and using the computer to enhance their teaching of mathematics. Furthermore, the computer mandates curricular reform in mathematics. (MNS)
Descriptors: Calculators, Computer Science Education, Editorials, Educational Change
Peer reviewedFerguson, David L.; Henderson, Peter B. – Machine-Mediated Learning, 1987
Designed initially for use in college computer science courses, the model and computer-aided instructional environment (CAIE) described helps students develop algorithmic problem solving skills. Cognitive skills required are discussed, and implications for developing computer-based design environments in other disciplines are suggested by…
Descriptors: Algorithms, Classroom Environment, Cognitive Ability, Computer Assisted Instruction
Peer reviewedMcMillan, Robert D. – Mathematics and Computer Education, 1988
Shows how, with little or no electrical background, students can apply Boolean algebra concepts to design and build integrated electrical circuits in the classroom that will reinforce important ideas in mathematics. (PK)
Descriptors: Algebra, College Mathematics, Computer Science Education, Electric Circuits
Peer reviewedTeer, Harold B., Jr.; And Others – Computers and Education, 1988
Discussion of the use of peer teachers to provide college students with microcomputer education focuses on a video course used to teach Lotus 1-2-3 spreadsheet software. Budget considerations are discussed, student and faculty reactions are described, and potential time savings to faculty are examined. (LRW)
Descriptors: Computer Science Education, Cost Effectiveness, Faculty Workload, Higher Education
Peer reviewedHealy, Patricia; Schilmoeller, Gary L. – Research in Rural Education, 1985
A mailed questionnaire completed by 86 parents of preschool and kindergarten children showed overall positive attitudes toward computers and computer use by young children with more positive attitudes among those parents whose children used computers in school. Significant factors were educational level of parents and family income. (JHZ)
Descriptors: Computer Literacy, Computer Science Education, Computers, Correlation
McCullough, Earl S. – Engineering Education, 1985
A survey of computer education in engineering colleges was conducted in 1981 and the results reported in EJ 287 351. A follow-up survey conducted in 1984 asked many of the same questions to identify trends. Results of this survey with comparisons to the 1981 survey are presented and discussed. (JN)
Descriptors: Computer Graphics, Computer Science Education, Computers, Educational Trends


