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Cheng, Chao-Kun – Technological Horizons in Education, 1987
Described is the computer science program at the Harbin Shipbuilding Institute in Harbin, China. Required courses are listed, facilities are described, and observations are provided. (MNS)
Descriptors: College Programs, Computer Science Education, Curriculum Development, Higher Education

Wilson, Kara Gae – NASSP Bulletin, 1986
Using an Oklahoma intermediate school program as an example, this article advises a laboratory approach to teaching computer literacy. Suggests nine-week minicourses linking computer and curriculum basics and wider student access to computers. (MLH)
Descriptors: Computer Assisted Instruction, Computer Literacy, Curriculum Development, Curriculum Enrichment
McDaniel, Ellen – Engineering Education, 1985
PLATO has become a successful method for computer-based education in a statics course since it offers diversified teaching/learning activities as well as alternative ways to teach content and exercise skills. Advantages for student learning are discussed, course guidelines are given, and a description of the course's computer graphics is provided.…
Descriptors: Computer Assisted Instruction, Curriculum Development, Engineering, Engineering Education
Blumenschein, Susan; Williamson, Ellenore – 1984
This manual provides background materials for Project CIRCLE (Curriculum by Industry Review-Computers Link to Education), a competency-based curriculum developed to provide trainers or educators teaching short-term or long-term programs with a complete field-tested curriculum in microcomputer applications. Prefatory materials and acknowledgements…
Descriptors: College Curriculum, Competency Based Education, Computer Assisted Instruction, Computer Literacy
Otto, Sue E. K.; Pusack, James P. – 1985
Three basic kinds of tools exist for computer assisted instruction (CAI): templates, which are often highly user-friendly and require little investment of time but whose potential is limited; authoring systems, which offer a number of options for lesson design and greater variety in approach, but which require more sophisticated input from the…
Descriptors: Authoring Aids (Programing), Computer Assisted Instruction, Courseware, Curriculum Development
Thomas, Charles R. – Engineering Education, 1985
Discusses programming projects in applied technology courses, examining documentation, formal reports, and implementation. Includes recommendations based on experience with a sophomore machine elements course which provided computers for problem solving exercises. (DH)
Descriptors: Computer Oriented Programs, Curriculum Development, Engineering, Engineering Education
Wohlers, Terry – Technological Horizons in Education, 1984
Describes the outstanding results obtained when a department of industrial sciences used special software on microcomputers to teach computer-aided design (CAD) as an alternative to much more expensive equipment. The systems used and prospects for the future are also considered. (JN)
Descriptors: Computer Oriented Programs, Computer Software, Course Content, Curriculum Development

Tauber, Robert T. – NASSP Bulletin, 1985
Presents detailed components of a six-hour inservice workshop to familiarize teachers with microcomputers. (MD)
Descriptors: Computer Software, Curriculum Development, Elementary Secondary Education, Inservice Teacher Education
Grunberg, Jorge – Technological Horizons in Education, 1987
Described is the Alfa Project in Uruguay, designed to integrate computer education into secondary schools through teacher-training. Both teacher-users and teacher-authors were considered. Course objectives, curriculum content, and teaching guidelines are presented. (MNS)
Descriptors: Computer Literacy, Computer Oriented Programs, Computer Software, Course Descriptions

Hubbard, Guy – Art Education, 1985
Through graphic art courses, art teachers can provide students with an understanding of how computers work and how to solve problems with them. How to design a graphics program is discussed. (RM)
Descriptors: Art Education, Computer Graphics, Computer Literacy, Curriculum Design
Parker, James A. – 1983
This paper provides an exploration of the impact of the increasing use of microcomputers in education upon curriculum development and the physical space needs in the learning environment. A secondary topic is the present and future directions of schools in the design of computer environments. (Author/MD)
Descriptors: Classroom Environment, Curriculum Development, Educational Facilities Design, Elementary Secondary Education
Kastuck, Edwin Naum; And Others – 1985
Designed to provide teachers with a set of goals, activities, and supporting resource materials that will assist them in providing students with opportunities to acquire computer skills, knowledge, and understanding, this document presents major concepts and related assignments for a proposed computer curriculum. Topics covered include: the…
Descriptors: Computer Literacy, Curriculum Development, Grade 6, Intermediate Grades
Dillaway, Manson P.; Savage, Allan H. – 1988
Although accountants have used computers for tax planning and tax return preparation for many years, tax education has been slow to reflect the increasing role of computers in tax accounting. The following are only some of the tasks that a business education department offering undergraduate tax courses for accounting majors should perform when…
Descriptors: Accounting, Business Education, Computer Assisted Instruction, Computer Literacy
Baer, Vicki E. H. – 1987
A small team of teachers and administrators at Boonsboro Middle School (Maryland) planned staff development activities for the implementation of a networked laboratory of 32 computers. Primary concerns were educating faculty members to develop computer awareness, select and evaluate appropriate software applications, and use computers as tools to…
Descriptors: Computer Assisted Instruction, Computer Literacy, Curriculum Development, Educational Planning

Summers, M. K. – Physics Education, 1985
Outlines three projects which have been designed for teaching electronics to ages 11-13, 13-16, and 16-18. Aims, content, approach, and equipment are discussed with guidelines for teacher use. Indicates that work with microprocessors (alongside Nuffield style analogue work) should help digital electronics receive greater emphasis in secondary…
Descriptors: Curriculum Development, Electronics, Elementary School Science, Intermediate Grades