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Alessandrini, Andrea – Journal of Science Education and Technology, 2023
The introduction of maker technology and personal fabrication has radically changed how we learn, design and innovate. In recent years, a growing number of people have begun to use a broad range of these creative technologies. A common challenge in the use of these electronic technologies, particularly for students, is the difficulties that arise…
Descriptors: Electronic Equipment, Technology Education, Undergraduate Students, Design
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Ladachart, Luecha; Radchanet, Visit; Phothong, Wilawan – Journal of Experiential Education, 2023
Background: In countries that endorse science, technology, engineering, and mathematics (STEM) education as an educational movement, design-based learning is deemed a pedagogical approach. Purpose: Because the integration of the engineering design process and scientific investigation has been an issue in science education, this study examined the…
Descriptors: STEM Education, Teaching Methods, Comparative Analysis, Scientific Concepts
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Khan, Kaisar R.; Haque, Muhammad M.; Alshemary, Ashraf; AbouArkoub, Ahmed – IEEE Transactions on Education, 2020
Contribution: A project-based active learning approach with the collaborative pedagogical environment is used to train electrical engineers, focusing on loading characteristic of motors where extrapolated knowledge from advanced classes and feedback from the industry professionals are used to engage fellow students to improve their conceptual and…
Descriptors: Undergraduate Students, Engineering Education, Machine Tools, Student Projects
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Dyer, Leon; Stephan, Stuart – Tech Directions, 2004
The term "tooling" refers to a variety of devices that increase production efficiency in manufacturing. Incorporating the appropriate tooling in the production process generally improves accuracy, speed, and safety. This in turn leads to more profit for the producer and lower prices for the consumer. This article introduces students to two common…
Descriptors: Engineering, Industrial Arts, Technology Education, Manufacturing
Osbon, Michael A. – 1987
This curriculum guide is intended to assist vocational instructors in preparing students for entry-level employment as machinists and preparing them for advanced training in the workplace. The package contains an overview of new and emerging technologies likely to affect machinists, a competency/skill and task list, an instructor's guide, and an…
Descriptors: Annotated Bibliographies, Behavioral Objectives, Competency Based Education, Design
Winek, Gary – 1984
This curriculum guide is designed to assist junior high school industrial arts teachers in planning new courses and revising existing courses in woodworking. Addressed in the individual units of the guide are the following topics: introduction to manufacturing; laboratory management (youth leadership, entrepreneurship, and laboratory…
Descriptors: Carpentry, Design, Entrepreneurship, Finishing
Louisiana State Dept. of Education, Baton Rouge. Div. of Vocational Education. – 1981
This curriculum guide contains operational guidelines to help local administrators, teacher educators, and industrial arts teachers in the State of Louisiana determine the extent to which their programs are meeting the needs of the youth they serve. It consists of a discussion of course prerequisites, goals, content, and implementation as well as…
Descriptors: Behavioral Objectives, Construction Materials, Course Content, Curriculum Guides
Connecticut State Dept. of Education, Hartford. Div. of Vocational-Technical Schools. – 1984
This combination progress record and course outline is designed for use by individuals teaching a course in precision sheet metal. Included among the topics addressed in the course are the following: employment opportunities in metalworking, measurement and layout, orthographic projection, precision sheet metal drafting, simple layout, hand tools,…
Descriptors: Academic Achievement, Behavioral Objectives, Blueprints, Check Lists