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Nievergelt, Jurg – 1975
Computer-assisted instruction (CAI) during the decade of the 60's was characterized by a number of limiting factors: insufficiently powerful computers and terminals, restriction to a few rigid "teaching strategies," and the splitting of resources among too many projects below critical size. During the present decade, CAI has undergone a…
Descriptors: Computer Assisted Instruction, Computer Programs, Computer Science, Computer Science Education
Corripio, Armando B. – 1969
Hybrid computation facilities have been in operation at Louisiana State University since the spring of 1969. In part, they consist of an Electronics Associates, Inc. (EAI) Model 680 analog computer, an EAI Model 693 interface, and a Xerox Data Systems (XDS) Sigma 5 digital computer. The hybrid laboratory is used in a course on hybrid computation…
Descriptors: Analog Computers, Computer Assisted Instruction, Computer Science, Computer Science Education
Bowles, Kenneth L. – EDUCOM Bulletin, 1978
Small stand-alone microcomputers can serve as the basis for running a sophisticated general-purpose interactive software system capable of supporting such interactive tasks as computer assisted instruction, word processing, and data processing, as well as other software development. A successful system using the PASCAL programing language is…
Descriptors: Computer Assisted Instruction, Computer Oriented Programs, Computer Science, Computer Science Education
Louisiana Social Studies Journal, 1986
Discusses the reasons why the microcomputer revolution merits attention within the social studies curriculum. Stresses the skills social studies must help develop for students to deal with the impact of computer operations. (TRS)
Descriptors: Citizenship Education, Citizenship Responsibility, Computer Oriented Programs, Computer Science
Scanlan, Neda S. – Computers, Reading and Language Arts, 1984
Delineates the five skill areas needed to maximize computer competency--concept formation, comprehension, problem solving, study techniques, and occupational reading and employability skills. (CRH)
Descriptors: Basic Skills, Comprehension, Computer Science, Computer Science Education
Peer reviewedSpoerri, Peter – Journal of Computers in Mathematics and Science Teaching, 1989
This two-part article deals with the design and construction of a primitive Von Neumann computer using a logic design simulator. Describes the design of the computer memory and its register structure. Six layouts of the computer architecture are presented. Lists three references. (YP)
Descriptors: College Curriculum, College Science, Computer Science, Computer Science Education
Corbett, Albert – Technological Horizons in Education, 1988
Discusses a research project that uses artificial intelligence techniques to help teach programing. Describes principles and implementation of the LISP Intelligent Tutoring System (LISPITS). Explains how the artificial intelligence technique was developed and possible future research. (MVL)
Descriptors: Artificial Intelligence, College Science, Computer Assisted Instruction, Computer Science
Venables, Anne; Tan, Grace – Journal of Information Technology Education, 2005
Teaching future knowledge engineers, the necessary skills for designing and implementing intelligent software solutions required by business, industry and research today, is a very tall order. These skills are not easily taught in traditional undergraduate computer science lectures; nor are the practical experiences easily reinforced in laboratory…
Descriptors: Course Descriptions, Foreign Countries, Role Playing, Games
Building a Steganography Program Including How to Load, Process, and Save JPEG and PNG Files in Java
Courtney, Mary F.; Stix, Allen – Mathematics and Computer Education, 2006
Instructors teaching beginning programming classes are often interested in exercises that involve processing photographs (i.e., files stored as .jpeg). They may wish to offer activities such as color inversion, the color manipulation effects archived with pixel thresholding, or steganography, all of which Stevenson et al. [4] assert are sought by…
Descriptors: Textbooks, Textbook Content, Internet, Programming Languages
Arthur, Winfred, Jr.; Hart, Darren – 1989
The recent explosions of computer use and accessibility in both academic and work settings have made computer literacy almost mandatory, yet there are many individuals who are unfamiliar with computers. Previous research has partially attributed computer attitudes to past mathematics experience and gender of the user. This study empirically…
Descriptors: Adults, Cognitive Ability, Computer Literacy, Computer Science Education
Fletcher, Richard K., Jr. – 1986
This paper discusses some of the ways one can study graphics on the Apple II microcomputer. Much attention is given to specialized use of software packages used in dumping graphics, and the saving or storing of binary files of graphic images. Knowledge of BASIC at more than a cursory level is required, but a step-by-step procedural outline is…
Descriptors: Computer Graphics, Computer Science Education, Computer Software, Microcomputers
Stollar, Dewey H.; Ray, John R. – J Teacher Educ, 1969
Descriptors: Computer Science Education, Computer Assisted Instruction, Computers, Teacher Education
Baulch, Janet – J Bus Educ, 1969
Descriptors: Business Education, Computer Science Education, Mathematical Concepts, Teaching Methods
Stanford Univ., CA. Inst. for Mathematical Studies in Social Science. – 1971
The application of theoretical models of instructional strategies to the design and the implementation of a computer-controlled instructional system and to the development of a practical course of instruction in computer programing is briefly described. (Author)
Descriptors: Computer Assisted Instruction, Computer Science Education, Educational Strategies, Programing
Lemos, Ronald S. – Journal of Educational Data Processing, 1975
Reports on a study indicating that there are no significant differences in student learning when they are taught FORTRAN by the grammatical approach and the whole program approach. (IRT)
Descriptors: Computer Science Education, Higher Education, Programing Languages, Teaching Methods

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