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Nord, Daryl; Seymour, Tom – Balance Sheet, 1978
After a brief discussion of the history and current status of business data processing versus computer science, this article focuses on the characteristics of a business data processing curriculum as compared to a computer science curriculum, including distinctions between the FORTRAN and COBOL programming languages. (SH)
Descriptors: Business Administration, Computer Science, Curriculum, Data Processing
Peer reviewedChemical and Engineering News, 1977
In 1972, 1974, and 1976, the National Science Foundation surveyed 50,000 scientists. Trends revealed were that most scientists seemed to be staying in the same fields, that the median age was increasing, and that industry continued to employ about 60 percent of the sample. (CP)
Descriptors: Career Change, Computer Science, Engineers, Mathematicians
Robbins, J. A.; Turner, W. C. – School Business Affairs, 1978
Introduces a computer program for school bus routing. (MLF)
Descriptors: Computer Programs, Computer Science, Efficiency, Elementary Secondary Education
Hall, Keith A. – Journal of Computer-Based Instruction, 1977
A model of the hierarchy of the tutoring processes and a review of related research. (DAG)
Descriptors: Aptitude, Computer Assisted Instruction, Computer Science, Interaction
Modern Schools, 1977
A computer system at Kent State University that controls the temperature in nine campus buildings saves the university thousands of dollars. (Author/MLF)
Descriptors: Climate Control, Computer Programs, Computer Science, Cost Effectiveness
Peer reviewedMoyne, J. A. – Linguistics, 1977
Competence is defined as the knowledge of a mature speaker of a language, irrespective of questions about acquisition. It is questioned whether there can be a procedure for generating sentences as a model of this competence; it is concluded that there cannot be a precise, non-random model for competence. (CHK)
Descriptors: Algorithms, Computational Linguistics, Computer Science, Grammar
American School and University, 1977
Academic/administrative data processing is centralized in one computer facility at East Tennessee State University. Students check computer printouts listing course availability, fill out one schedule card, present it to an operator at a computer terminal, and are able to register for classes in less than a minute. (Author/MLF)
Descriptors: Computer Science, Cost Effectiveness, Databases, Efficiency
Peer reviewedRoach, John V. – Technology Teacher, 1986
Discusses various aspects of high technology: computers in cars, computer-assisted design and manufacturing, computers in telephones, video recorders, laser technology, home computers, job training, computer education, and the challenge to the technology teacher. (CT)
Descriptors: Computer Science, Computers, Job Training, Lasers
Peer reviewedKugel, Peter – Journal of Computers in Mathematics and Science Teaching, 1985
The nature of thinking is the subject of this second part in a series which is examining various topics and issues related to the controversy of whether or not computers can think. Suggests that intelligence is the ability to develop general ideas and not the ability to apply those ideas. (JN)
Descriptors: Artificial Intelligence, Computer Science, Computers, Higher Education
Peer reviewedVenugopalan, Mundiyath – Journal of Computers in Mathematics and Science Teaching, 1986
Describes a computer program used in an experiment in which the partial molal volumes of sodium chloride solutions are calculated as a function of concentration from densities measured with a pycnometer. The complete program listing (also available from the author on disk) and a sample run are included. (JN)
Descriptors: Chemistry, College Science, Computer Science, Higher Education
Tesler, Lawrence G. – Scientific American, 1984
Discusses the nature of programing languages, considering the features of BASIC, LOGO, PASCAL, COBOL, FORTH, APL, and LISP. Also discusses machine/assembly codes, the operation of a compiler, and trends in the evolution of programing languages (including interest in notational systems called object-oriented languages). (JN)
Descriptors: Computer Oriented Programs, Computer Science, Computer Software, Higher Education
Denning, Peter J.; Brown, Robert L. – Scientific American, 1984
A computer operating system spans multiple layers of complexity, from commands entered at a keyboard to the details of electronic switching. In addition, the system is organized as a hierarchy of abstractions. Various parts of such a system and system dynamics (using the Unix operating system as an example) are described. (JN)
Descriptors: Computer Oriented Programs, Computer Science, Computer Software, Computers
Compeau, Larry D. – New Directions for Community Colleges, 1984
Examines the use of the microcomputer in computer science programs as an alternative to time-sharing computers at North Country Community College. Discusses factors contributing to the program's success, security problems, outside application possibilities, and program implementation concerns. (DMM)
Descriptors: Community Colleges, Computer Oriented Programs, Computer Science, Microcomputers
Peer reviewedKonings, C. A. G. – Online Review, 1985
This comparison of bibliographies/online databases regarding their classification schemes, periodicals list, coverage of articles, indexing, and overlap reveals that only five bibliographies cover whole of subject area, and differences exist between number of periodicals scanned (73 to 2,771) and percentage of articles included from six…
Descriptors: Bibliographies, Classification, Comparative Analysis, Computer Science
Peer reviewedRaben, Joseph – Science, 1985
Discusses computer uses in higher education, libraries, publishing, and in generating concordances and dictionaries. Computer networks, videodisc technology, and machine-readable text are also examined. Indicates that the earliest and still most prevalent use of computers in the humanities is the compilation of concordances. (JN)
Descriptors: Computer Oriented Programs, Computer Science, Dictionaries, Higher Education

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