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Morsink, Catherine V.; Morsink, Robert C. – Journal of Educational Technology Systems, 1979
Reviews existing models for the systematic creation and testing of instructional materials. Four such models are described and synthesized into a logic diagram, which is suggested as a guide to systematize the development of materials for use with handicapped learners. (Author)
Descriptors: Disabilities, Evaluation, Flow Charts, Instructional Materials

Braby, Richard; Kincaid, J. Peter – Journal of Educational Technology Systems, 1981
Describes two software routines developed for authors of Navy training materials. SCAT (Systems for Computer Automated Typesetting) automatically composes and formats text, merging it with stored graphics, while CRES (Computer Readability Editing System) aids in writing readable text at the desired level. A six-item bibliography and eight…
Descriptors: Computer Programs, Editing, Material Development, Military Training

Leveridge, Leo L. – Journal of Educational Technology Systems, 1979
Describes the use of the QuadraSync (Q/S) for developing an economical and versatile intelligent videodisc system. A compact audiocassette provides four sound tracks and drives a super-8mm film or videodisc by means of commands to a built-in film projector or videodisc player, all mediated by small data processors. (Author)
Descriptors: Instructional Design, Instructional Systems, Material Development, Media Selection

Thomas, Donald H.; Friedman, Charles P. – Journal of Educational Technology Systems, 1980
Describes a cooperative project to develop materials for a self-paced, personalized system of instruction (PSI) to be used in core engineering courses offered at six participating colleges. Faculty training in PSI methods, cost effectiveness, and project evaluation are discussed. Four references are listed. (FM)
Descriptors: Bibliographies, Engineering Education, Higher Education, Individualized Instruction

Duchastel, Philippe – Journal of Educational Technology Systems, 1994
Describes an instructional design process, Learning Environment Design (LED), as being geared to the design of flexible and user-centered learning resources by distinguishing between content and strategy. LED as a possible successor to instructional systems design is discussed, and the potential of LED for restructuring schools is considered.…
Descriptors: Educational Environment, Instructional Design, Learning Theories, Material Development

Kontos, George – Journal of Educational Technology Systems, 1985
Investigates alternative methods of developing computer assisted instruction (CAI) lessons and concludes that a team effort of experienced educators and highly skilled computer professionals is essential for production of "better" CAI lessons. A model illustrating such a team effort for CAI development is presented and analyzed.…
Descriptors: Computer Assisted Instruction, Courseware, Instructional Development, Material Development

Lightfoot, Jay M. – Journal of Educational Technology Systems, 2002
In an attempt to provide students with the benefit of the latest technology, some instructors include multimedia content on their class Web sites. This article introduces the basic terms and concepts needed to understand the multimedia domain. Provides a brief tutorial designed to help instructors create good, consistent audio-visual content. (AEF)
Descriptors: Audiovisual Aids, Computer Uses in Education, Course Content, Courses

Bedient, Douglas; And Others – Journal of Educational Technology Systems, 1986
Steps used in the formative evaluation of a project designed to incorporate self-instructional materials in an introductory zoology course included techniques which: (1) involved colleagues in the material development; (2) assessed relevant student characteristics, expectations, and evaluations; and (3) were used in the examinations. (MBR)
Descriptors: Evaluation Methods, Formative Evaluation, Higher Education, Individualized Instruction

Duchastel, Philip – Journal of Educational Technology Systems, 1989
Describes the design and development of an instructional game, GEO, in which the user learns elements of Canadian geography. The use of knowledge-based artificial intelligence techniques is discussed, the use of HyperCard in the design of GEO is explained, and future directions are suggested. (15 references) (Author/LRW)
Descriptors: Artificial Intelligence, Computer Games, Computer System Design, Educational Games

Skudrna, Vincent J. – Journal of Educational Technology Systems, 1982
Details steps involved (as found in the literature) in the systems approach to design and develop instruction in order to provide a rationale for the development of instructional modules in COBOL and RPG to teach accounting students how to audit computerized accounting systems. Outlines of two modules are appended. (EAO)
Descriptors: Accounting, Behavioral Objectives, Business Education, Computer Oriented Programs

Betlach, Judith A. – Journal of Educational Technology Systems, 1987
Systematically investigates, defines, and organizes variables related to production of internally designed and implemented computer assisted instruction (CAI) courseware: special needs of users; costs; identification and definition of realistic training needs; CAI definition and design methodology; hardware and software requirements; and general…
Descriptors: Andragogy, Artificial Intelligence, Authoring Aids (Programing), Case Studies

Weiss, Charles; Jarvis, Stan – Journal of Educational Technology Systems, 1987
Discusses interactive videodisc technology (IVD) development and potential; education and training capabilities specifically related to developing countries; costs; technical capabilities; likely applications which justify IVD's initial programming expenses; specific IVD applications relative to remedial mathematics and science education, job…
Descriptors: Adoption (Ideas), Cost Effectiveness, Costs, Courseware

Nelson, Randall B.; Erwin, T. Dary – Journal of Educational Technology Systems, 1986
Examines evolution of awareness regarding the importance of organizational characteristics on the success of computer assisted instruction (CAI) projects. A list of 12 organizational factors are described that institutions of higher education need to consider in planning CAI projects. (Author/MBR)
Descriptors: Administrator Responsibility, Adoption (Ideas), Computer Assisted Instruction, Cost Effectiveness