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Byungsoo Kim – ProQuest LLC, 2020
In this dissertation research, three studies were conducted to better understand how technology-driven design processes and skill sets are taught and mentored in Industrial Design (ID) education and the contemporary industry and to update existing design processes, methods, and tools that can help instructors to teach and guide ID students to…
Descriptors: Industrial Education, Design, Role Theory, Information Technology
Nazzal, Dima; Zabinski, Joseph; Hugar, Alexander; Reinhart, Debra; Karwowski, Waldemar; Madani, Kaveh – Advances in Engineering Education, 2015
Sustainability in operations, production, and consumption continues to gain relevance for engineers. This trend will accelerate as demand for goods and services grows, straining resources and requiring ingenuity to replace boundless supply in meeting the needs of a more crowded, more prosperous world. Industrial engineers are uniquely positioned…
Descriptors: Industrial Education, Engineering Education, Surveys, Sustainability
Smith, Jeffrey P. – 1986
This paper discusses a program developed and implemented to improve the skills and attitudes of junior high school students in the area of measurement. The program tested three educational groups: regular education students, special education students, and academically gifted students. Results from this program indicated improvement in measuring…
Descriptors: Annotated Bibliographies, Curriculum Development, Gifted, Industrial Arts

Orofino, T. A. – Journal of Chemical Education, 1989
Described is a course which combines the usual instruction in technical subjects of industrial chemical operations with some of the business aspects that compose the total commercial enterprise. The two-hour-a-week semester course syllabus is provided. A business game to develop a plan for business expansion is included. (MVL)
Descriptors: Chemistry, College Science, Corporate Education, Course Content
Wisconsin State Dept. of Public Instruction, Madison. – 1984
This operational level implementation guide is intended for the local or state curriculum designer of industrial arts/technology education curricula. A rationale and mission statement for industry and technology education appear first. The assumptions upon which program structures were developed are listed, and the three model program structures…
Descriptors: Communications, Construction (Process), Course Content, Course Descriptions
Cochran, Leslie H. – Industrial Education, 1974
A discussion of methods by which industrial arts teachers can implement strategies incorporating the career education concept into industrial education emphasizes the point that the new directions suggested by the concept of career education will increase the need for industrial education, rather than replacing it. (SA)
Descriptors: Career Choice, Career Education, Curriculum Development, Industrial Education
KOPAS, JOSEPH S. – 1966
A SECTION OF A JOB TRAINING PROGRAM CONSISTING OF THIRTY 10-HOUR JOB INSTRUCTION CURRICULUM MODULES WAS DEVELOPED FOR UPDATING AND UPGRADING THE TECHNICAL SKILLS OF ELECTRICAL MAINTENANCE EMPLOYEES. THIS JOB TRAINING PROGRAM WAS TRIED OUT IN CLASSES CONSISTING OF MAINTENANCE EMPLOYEES OF THE ELECTRICAL DEPARTMENTS IN A STEEL COMPANY. MEMBERS OF…
Descriptors: Curriculum Development, Educationally Disadvantaged, Electromechanical Aids, Industrial Education
Duffy, Joseph W. – Industrial Arts and Vocational Education, 1971
An innovative curriculum where processing of materials, energy and information form a new base for industrial arts. (Editor)
Descriptors: Curriculum Development, Educational Philosophy, Industrial Arts, Industrial Education
Mangano, Ronald M. – Man/Society/Technology, 1975
Design is not getting the attention it deserves in industrial arts, at a time when designed products are everywhere. Design is creative problem-solving to meet a specific need. Integrating design concepts into the industrial arts curriculum is not difficult; the author explains how to do it. (AJ)
Descriptors: Creative Activities, Creativity, Curriculum Development, Design
Pucel, David J. – 1988
Technological literacy may be defined as a knowledge of and competence in a technical method of achieving a practical purpose. This definition thus contains two components: technical (scientific) methods and practical purposes. Historically, industrial education has concentrated on the second component. The practical uses of technology should…
Descriptors: Classroom Techniques, Curriculum Development, Educational History, Fused Curriculum
Tanner, Ralph P. – Man/Society/Technology - A Journal of Industrial Arts Education, 1971
Descriptors: Course Content, Curriculum Development, Environmental Education, Industrial Arts
McDole, Thomas L. – 1983
Alternative curriculum strategies can be used to conduct an effective photography program without the expense usually associated with a darkroom. Three methods can be used to eliminate the need for a darkroom facility: outside vendors, an emulsion that can be user-processed without access to a darkroom (slide or transparency film), and emulsions…
Descriptors: Art Education, Classroom Techniques, Curriculum Development, Industrial Education
Kent, Carol N. – Industrial Education, 1977
Suggestions are outlined to assist the teacher in assessing present curriculum, planning future activities, and improving the overall program for a heterogeneous grouping of students. (HD)
Descriptors: Curriculum Development, Exceptional Persons, Heterogeneous Grouping, Mainstreaming
Lolla, Raymond – Man/Society/Technology, 1983
The author identifies seven basic steps that can be considered in dealing objectively with classroom problems. He argues that using this research method to resolve classroom problems is one of the best tools available to enhance problem-solving opportunities for both industrial arts instructors and students. (SSH)
Descriptors: Classroom Communication, Classroom Environment, Classroom Techniques, Curriculum Development
Hess, Harry; And Others – Man/Society/Technology, 1975
A process based on a systems analysis approach to tasks is proposed for developing a curriculum for the study of plastics. The process may be used with any subject area, at any grade level, to validate the concepts selected, the performance objective developed, the time allotted, and the teaching strategies selected. (AG)
Descriptors: Behavioral Objectives, Competency Based Education, Curriculum Development, Educational Objectives