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Spektor, Michael; Buchanan, Walter W.; Wolf, Lawrence – American Journal of Engineering Education, 2018
Mechanical engineering, mechanical engineering technology, and related educational programs are not addressing in a sufficient way the principles associated with applying analytical investigations in solving actual engineering problems. Because of this, graduates do not have the adequate skills required to use the methods of applied dynamics in…
Descriptors: Job Skills, Engineering Technology, Engineering Education, Concept Formation
Al-Nasra, Moayyad M. – Online Submission, 2012
The engineering profession is very sensitive to the new changes in the engineering job market demand. The engineering job market is changing in a much faster rate than the engineering/engineering technology education. A 13-year study will be presented. The study focuses on the factors affecting the survival rate, student academic performance,…
Descriptors: Technology Education, Educational Change, Civil Engineering, Labor Market
Pecen, Recayi; Humston, Jill L.; Yildiz, Faruk – Journal of STEM Education: Innovations and Research, 2012
The Math-Science-Engineering Technology in Iowa on Applied Renewable Energy Areas (MSETI-AREA) projects are aimed at providing area school teachers with an applied mathematics and science curriculum package based on photovoltaic (PV) power, wind power, human power and hydrogen fuel-cell fundamentals. The MSETI-AREA project has established a…
Descriptors: Literacy, Engineering, Technological Literacy, Job Skills
Koster, Alexis – American Journal of Business Education, 2010
According to the Bureau of Labor Statistics, close to 1.8 million people, or 77% of all computer professionals, were working in the design, development, deployment, maintenance, and management of software in 2006. The ACM [Association for Computing Machinery] model curriculum for the BS in computer science proposes that about 42% of the core body…
Descriptors: Computer Science Education, Programming, Engineering Education, Engineering Technology
Ssemakula, Mukasa; Liao, Gene; Ellis, Darin – Advances in Engineering Education, 2010
Industry has consistently identified lack of experience in manufacturing processes as one of the key competency gaps among new engineering graduates. This paper discusses a laboratory-based course that provides realistic hands-on manufacturing experiences to students. The course uses team-based projects that help students gain hands-on experience…
Descriptors: Engineering Education, Engineering Technology, Achievement Gap, Manufacturing
Tough, David T. – ProQuest LLC, 2009
The purpose of this online study was to create a ranking of essential core competencies and technologies required by AET (audio engineering technology) programs 10 years in the future. The study was designed to facilitate curriculum development and improvement in the rapidly expanding number of small to medium sized audio engineering technology…
Descriptors: Delphi Technique, Curriculum Development, Educational Needs, Industry
Lucci, William, Jr. – Tech Directions, 2005
In this article, the author describes Stafford Technical Center's Engineering Technology Academy (ETA), in which students pursue a variety of educational and career options for anything connected to construction technologies--including drafting and design, architecture, and even work in historic preservation. In addition to technical skills,…
Descriptors: Architecture, Technical Writing, Preservation, Engineering Technology
Moore, Joseph H. – Engineering Education, 1977
Attempts to identify the positions available to Bachelor of Engineering Technology (B.E.T.) graduates. A survey of B.E.T. graduates showed that they are being employed in responsible positions by industry and that most are receiving job assignments comparable to those given engineering graduates. Surveys by other institutions are suggested. (MA)
Descriptors: Employment Potential, Engineering Education, Engineering Technology, Higher Education
Lane Community Coll., Eugene, OR. – 1982
This packet of six learning modules on refrigeration is one of 20 such packets developed for apprenticeship training for stationary engineers. Introductory materials are a complete listing of all available modules and a supplementary reference list. Each module contains some or all of these components: goal, performance indicators, statement of…
Descriptors: Apprenticeships, Behavioral Objectives, Engineering Technology, Individualized Instruction
Reed, Lester W., Jr. – 1982
This discussion of computers and their place in the field of engineering technology begins with an outline of the historical development and significance of computers, tracing advancements from the first generation of computers, which began to be produced in 1946, to current third-generation models; reviewing the current state of the art in…
Descriptors: Computer Science, Computers, Curriculum Development, Educational Technology
Lane Community Coll., Eugene, OR. – 1982
This packet of 17 learning modules on electricity/electronics is one of 20 such packets developed for apprenticeship training for stationary engineers. Introductory materials are a complete listing of all available modules and a supplementary reference list. Each module contains some or all of these components: goal, performance indicators,…
Descriptors: Apprenticeships, Behavioral Objectives, Electric Circuits, Electricity
Wallace, Johnny M.; Carson, Cheryl – 1990
This module presents a real-world context in which mathematics skills are used as part of a daily routine. The context is the industrial and engineering technology area, and the module aims to help students see the significance of mathematics skills in performing daily tasks. Materials in the module, most of which are designed for the teacher to…
Descriptors: Career Development, Career Education, Definitions, Education Work Relationship
Hata, David M. – Engineering Education, 1986
Assesses the range and extent of computer assisted instruction software available in electronic engineering technology education. Examines the need for software skills in four areas: (1) high-level languages; (2) assembly language; (3) computer-aided engineering; and (4) computer-aided instruction. Outlines strategies for the future in three…
Descriptors: Associate Degrees, Computer Assisted Instruction, Computer Science Education, Electronic Technicians
Gerard, Maureen; Davis, Thomas W. – Business Officer, 1994
The Milwaukee School of Engineering (MSOE) in Wisconsin has entered into a partnership with industry to fund continuous upgrading and expansion of its laboratories. The program has succeeded because of industry's need to hire work-ready graduates who have experience with the companies and with the latest technology. (MSE)
Descriptors: College Administration, Engineering Education, Engineering Technology, Facility Improvement
Hull, Daniel M.; Pedrotti, Leno S. – Engineering Education, 1986
Discusses the historical background of technical education. Assesses future directions including probable areas of need. Defines tasks to be performed and outlines needed skills and abilities. Proposes a training curriculum and considers articulation of high school and postsecondary education. (JM)
Descriptors: Associate Degrees, College Science, Core Curriculum, Engineering Technology
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