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Olinzock, Anthony A. – Journal of Business Education, 1980
Discusses an effective simulated program that can be integrated into almost any business and office education class. Presents four goals to be achieved: (1) understanding computer operation, (2) introduction of computer languages, (3) input data, (4) retrieving data. (JOW)
Descriptors: Computer Science Education, Data Processing, Office Occupations Education, Program Descriptions
L'Allier, James J.; Tennyson, Robert D. – Journal of Computer-Based Instruction, 1980
Identifies design variables directly related to the development of computer-based instruction (CBI) and shows how those variables can be applied in the actual development of a course. The design is for a computer literacy course concerned with both content and student attitudes about that content. (Author)
Descriptors: Bibliographies, Computer Assisted Instruction, Computer Oriented Programs, Computer Science Education
Zabinski, Toby F.; Zabinski, Michael P. – Audiovisual Instruction, 1979
Describes the objectives, organization, and daily activities of a youth summer camp program providing general knowledge about computers, computing, social implications of computers, and opportunities for careers. (CMV)
Descriptors: Computer Oriented Programs, Computer Science Education, Day Camp Programs, Programing
Milner, Stuart D. – Phi Delta Kappan, 1980
Offers a framework for thinking about teacher education in computer use. Includes brief descriptions of suggested courses for a teacher education program and types of teacher education activities. (IRT)
Descriptors: Computer Science, Computer Science Education, Course Descriptions, Elementary Secondary Education

Magel, Kenneth – AEDS Journal, 1980
Courseware (computer based curriculum materials) development should follow the lessons learned by software engineers. The most important of 28 principles of software development presented here include a stress on human readability, the importance of early planning and analysis, the need for independent evaluation, and the need to be flexible.…
Descriptors: Computer Science Education, Computer Software, Design Requirements, Elementary Secondary Education

Denenberg, Stewart A. – AEDS Journal, 1980
This paper describes the ACCOLADE (an alternative curriculum for computer literacy development) system in terms of its design goals, its components, an illustrative session with a learner, the computer-managed instruction subsystem, and a brief evaluation of a model pilot study. (Author/IRT)
Descriptors: Computer Assisted Instruction, Computer Managed Instruction, Computer Science Education, Higher Education
Kugel, Peter – Creative Computing, 1979
The capability of computers and their potential for thinking are discussed. (MK)
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Science, Computer Science Education
Fingar, Peter – Journal of Educational Data Processing, 1977
Describes the problems and the approaches taken to solve those problems in teaching programming skills to students in Saudi Arabia. (IRT)
Descriptors: Computer Science Education, Cultural Differences, Cultural Influences, Data Processing

Moore, Sarah; O'Maidin, Donncha; McElligot, Annette – Journal of Computing in Higher Education, 2003
Explored the relationship among cognitive style, performance, gender, and communication among computer students. Found a significant relationship between performance and cognitive style; students whose cognitive style scores indicated a preference for analytical thinking had better performance scores when entering college than those with a…
Descriptors: Academic Achievement, Cognitive Style, College Students, Computer Science Education
Oberman, Paul S. – JCSE Online, 2001
Describes an assignment for an introductory computer science class that requires the student to write a software program that simulates an automated teller machine. Highlights include an algorithm for the assignment; sample file contents; language features used; assignment variations; and discussion points. (LRW)
Descriptors: Algorithms, Assignments, Computer Science Education, Computer Simulation

Johnson, Brian L.; And Others – Computers and Education, 1990
Discusses the teaching consultant process in computer programing courses, describes a teaching consultant model from both the teachers' and students' perspectives, and shows how this model can be used to develop an intelligent teaching consultant (ITC). Differences between this collection of expert systems and conventional intelligent tutoring…
Descriptors: Computer Assisted Instruction, Computer Science Education, Computer System Design, Expert Systems

Bayman, Piraye; Mayer, Richard E. – Journal of Educational Psychology, 1988
BASIC programing was taught to 95 undergraduates from a manual emphasizing the language's syntax or from a manual that included additional material on the underlying semantics. Both approaches produced equivalent learning of syntactic features of BASIC; however, semantically trained students developed fewer misconceptions and performed better on…
Descriptors: Computer Science Education, Higher Education, Instructional Materials, Misconceptions

Emihovich, Catherine; Miller, Gloria E. – Discourse Processes, 1988
Analyzes the discourse of Logo lessons and suggests that successful learning of Logo concepts may involve a careful structuring of the teaching context. (SR)
Descriptors: Classroom Research, Computer Literacy, Computer Science Education, Computer Software

Wellington, J. J. – Journal of Curriculum Studies, 1990
Reveals some drawbacks to computer studies in the primary and secondary learning environment in the United Kingdom. Addresses: (1) technical support; (2) low use of computer assisted learning in other subjects; (3) low enrollment of females in computer education classes; and (4) low enrollments in science education at the higher education level…
Descriptors: Computer Assisted Instruction, Computer Science, Computer Science Education, Computers

Wilcocks, Derek; Sanders, Ian – Computers & Education, 1994
Discussion of how to teach programming skills to novice programmers focuses on the use of a program animator that uses a copies model of recursion to teach the recursive function. Various mental models are reviewed; testing the recursion animator is described; and possibilities for further research are suggested. (12 references) (LRW)
Descriptors: Algorithms, Computer Assisted Instruction, Computer Science Education, Courseware