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Morgan, James R.; Barroso, Luciana R.; Simpson, Nancy – Advances in Engineering Education, 2009
Demonstrations can be very effective at enhancing student learning and represent a mechanism for embedding laboratory experiences within a classroom setting. A key component to an effective demonstration is active student engagement throughout the entire process, leading to a guided laboratory experience in a lecture setting. Students are involved…
Descriptors: Demonstrations (Educational), Learner Engagement, Student Participation, Models
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Goonatilake, Rohitha; Ni, Qingwen; Moran-Lopez, Juan M. – Journal of STEM Education: Innovations and Research, 2009
As in other educational programs, scholarship programs offer mentoring to the recipients. In order to cultivate the maximum benefit, each recipient needs to be guided and appropriately advised, first to achieve the goals of the program and secondly, to benefit themselves from the scholarship. The purpose of the article is to investigate this…
Descriptors: Mentors, Computer Science, Scholarships, Science Education
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Conrad, Sarah; Canetto, Silvia Sara; MacPhee, David; Farro, Samantha – College Student Journal, 2009
Socioeconomically disadvantaged (SED) students are less likely to major in physical sciences or engineering. To guide recruitment and retention of a diversity of talent, this study examined what attracts high-achieving SED students to these fields. Participants were 50 undergraduates majoring in physical sciences or engineering enrolled in the…
Descriptors: Engineering Education, Mentors, Disadvantaged Youth, Low Income Groups
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Cagiltay, N. E.; Aydin, E.; Oktem, R.; Kara, A.; Alexandru, M.; Reiner, B. – IEEE Transactions on Education, 2009
This paper discusses the results of a study of the requirements for developing a remote RF laboratory. This study draws on the perspectives of educators in university electrical engineering departments and in technical colleges, on the teaching of the radio frequency (RF) domain. The study investigates how these educators would like the technical…
Descriptors: Foreign Countries, Engineering Education, Technical Institutes, Science Laboratories
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Bunting, C. F.; Cheville, R. A. – IEEE Transactions on Education, 2009
A two-course sequence in electromagnetics (EM) was developed in order to address a perceived lack of student learning and engagement observed in a traditional, lecture-based EM course. The two-course sequence is named VECTOR: Vitalizing Electromagnetic Concepts To Obtain Relevance. This paper reports on the first course of the sequence. VECTOR…
Descriptors: Student Attitudes, Active Learning, Lecture Method, Engineering Education
Coleman, Robert J. – 1989
The University of North Carolina's Electrical Engineering Department developed and delivered a course for undergraduate engineering students. The course integrated technical, social, and ethical perspectives on problems and issues faced in the world of practicing engineers. It achieved this integration by making use of professors in engineering,…
Descriptors: Course Descriptions, Course Evaluation, Curriculum Development, Engineering Education
United Nations Educational, Scientific, and Cultural Organization, Paris (France). Div. of Marine Sciences. – 1983
This report contains recommendations on advanced university curricula in ocean engineering and related areas, emphasizing the needs of developing countries. A decision matrix is included to assist users in developing the necessary criteria for designing appropriate curricula to prepare university students for careers in different ocean engineering…
Descriptors: Audiovisual Aids, College Curriculum, Curriculum Design, Curriculum Development
Crowley, Michael; And Others – 1984
This statistical review is the second in a biennial series mandated by Public Law 96-516. This report, which provides a comprehensive overview of the participation of women and minorities in science and engineering (S/E) employment and training, is divided into three chapters. The first chapter focuses on the representation of women and minorities…
Descriptors: Academic Achievement, Degrees (Academic), Employment Level, Engineering
Bussard, Ellen – 1982
A 3-year project was developed to increase students' abilities to perform competently as professional engineers. The project sought to infuse into existing courses concern for, practice with, and development of three competencies critical to professional success: problem-solving, communication, and value clarification. Eight elementary and…
Descriptors: Communication (Thought Transfer), Competence, Course Content, Course Descriptions
Vetter, Betty M. – 1982
This report, which includes 51 tables and charts, examines past, present, and future imbalances in the supply of and demand for scientists and engineers. The supply is assessed by source and by field, and compared with current and short-range demand for new graduates and for experienced scientists and engineers, including assessment of the…
Descriptors: College Science, Employment Patterns, Employment Projections, Engineering
National Academy of Engineering, Washington, DC. – 1983
This report responds to a National Science Foundation (NSF) request to provide advice on developing Engineering Research Centers, which NSF described as "on-campus centers that would house cross-disciplinary experimental research activities." In addition to conducting such research, the principal purposes of the centers are to provide a…
Descriptors: Cooperative Programs, Engineering, Engineering Education, Evaluation Criteria
Koen, Billy Vaughn – 1985
In an effort to more clearly define the engineering method, this document attempts to draw distinctions between engineering and science. Part I, "Some Thoughts on Engineering," discusses strategies that engineers employ to solve problems, and the characteristics of the types of engineering problems. Part II, "The Principal Rule of the Engineering…
Descriptors: Definitions, Engineering Education, Engineering Technology, Engineers
National Science Foundation, Washington, DC. – 1984
This document provides information for individuals who want to submit proposals in areas funded by the National Science Foundation (NSF). These areas include: (1) mathematical and physical sciences; (2) engineering; (3) biological, behavioral, and social sciences; (4) astronomical, atmospheric, earth, and ocean sciences; (5) scientific,…
Descriptors: Engineering, Engineering Education, Evaluation Criteria, Federal Programs
Lubkin, James L., Ed. – 1980
This monograph presents 13 papers dealing with various aspects of elementary problem solving. They are: (1) "Training for Effective Problem Solving" (Gary A. Davis); (2) "Patterns of Problem Solving--A Campus-Wide Course at UCLA" (Moshe F. Rubinstein, L. Robin Keller, Edward A. Kazmarek); (3) "A Taxonomy of Problem-Solving Activities and Its…
Descriptors: Calculus, Classification, College Mathematics, College Science
Clark, John W., Ed.; And Others – Physics in Medicine & Biology, 1988
This document contains the proceedings of a joint meeting of the International Federation for Medical and Biological Engineering and the International Organization for Medical Physics. Participants from over 50 countries were in attendance. The theme of the program, "Challenges for the Year 2000," was a reminder of the challenges which…
Descriptors: Biological Sciences, Biomechanics, Biomedical Equipment, Biomedicine
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