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DiCecco, J.; Wu, J.; Kuwasawa, K.; Sun, Y. – Advances in Physiology Education, 2007
It is challenging for biomedical engineering programs to incorporate an indepth study of the systemic interdependence of cells, tissues, and organs into the rigorous mathematical curriculum that is the cornerstone of engineering education. To be sure, many biomedical engineering programs require their students to enroll in anatomy and physiology…
Descriptors: Physiology, Science Education, College Students, Engineering Education
Neelakantan, Shailaja – Chronicle of Higher Education, 2007
Over the past four years, Pakistan's higher-education budget has increased more than sevenfold, to about $449-million. While that amounts to only 0.5 percent of Pakistan's gross domestic product, it is a big improvement from the days of barely enough to pay "measly salaries and basic bills." But for students, along with many of…
Descriptors: Foreign Countries, Educational Change, Educational Improvement, Educational Finance
Tao, Hung-Lin – Economics of Education Review, 2007
This study uses the admission scores of Taiwan's Joint College Entrance Examination (JCEE) and occupational wage data to estimate the reputation values of engineering and medical schools in Taiwan. It is found that the reputation values of medical schools are more than twice those of engineering schools. It takes about 7 and 19 years of work for…
Descriptors: Foreign Countries, Reputation, Engineering Education, Medical Schools
Thompson, Nancy S.; Alford, Elisabeth M. – 1997
A discipline-specific writing center is the nucleus of a writing-in-the-disciplines (WID) program in engineering, in the Department of Electrical and Computer Engineering (ECE) at the University of South Carolina. As a writing program, the writing center serves student writers and faculty in ECE and integrates writing consultation into the…
Descriptors: Engineering, Engineering Education, Higher Education, Program Development
National Science Foundation, Washington, DC. – 1995
The National Science Foundation's (NSF) role as a leader and steward of the Nation's science and engineering enterprise faces new tests--promoting new approaches to research, education, and workforce training that reach all Americans; responding to the increased importance of science and engineering in many aspects of daily life; modernizing the…
Descriptors: Educational Objectives, Educational Planning, Engineering Education, Government Role
National Science Foundation, Arlington, VA. Directorate for Education and Human Resources. – 1995
This booklet, the third publication in the Foundation for the Future series, illustrates how involvement in the Directorate for Education and Human Resources' (EHR's) projects has been a watershed for many people. The personal profiles contained within describe how EHR programs are: changing people's lives, opening people's minds to new…
Descriptors: Demonstration Programs, Educational Change, Elementary Secondary Education, Engineering Education
Kerns, H. Dan; And Others – 1993
This paper describes a faculty resource team in the Bradley University (Illinois) Department of Industrial Engineering that works with student project teams in an effort to improve their visualization and oral presentation skills. Students use state of the art technology to develop and display their visuals. In addition to technology, students are…
Descriptors: Educational Technology, Engineering Education, Higher Education, Speech Skills
Eisenhart, Margaret; Finkel, Elizabeth; Behm, Linda; Lawrence, Nancy; Touso, Karen – 1998
This monograph addresses the gender gap in science and engineering. Case studies of women in marginalized science and engineering settings are presented including an innovative high school genetics class, a school-to-work internship for prospective engineers, an environmental action group, and a nonprofit conservation agency. The high proportion…
Descriptors: Elementary Secondary Education, Engineering, Engineering Education, Higher Education
Anderson, Melissa S.; Louis, Karen Seashore – 1991
This study examined the extent to which graduate students in science and engineering fields subscribe to the norms of research behavior which have been the basis of the freedom, self-direction, and self-regulation which characterize academic research. In particular the study focused on the relationship between academic departments' climates and…
Descriptors: Behavior Standards, Codes of Ethics, Engineering Education, Graduate Students
Collins, Timothy W.; And Others – 1994
In an effort to explore critical issues important to the development of high quality science and engineering technicians, 115 technicians, technician educators, government representatives, and employer gathered in July 1993 to provide recommendations for future activities and projects designed to improve the quality of the U.S. technician…
Descriptors: Elementary Secondary Education, Engineering Education, Engineering Technicians, Higher Education
College Placement Council, Bethlehem, PA. – 1991
In 1991, survey questionnaires were completed by College Placement Council college members in a study assessing the status of career planning and placement activities. This document contains tables and open-ended responses to selected questions given by a representative sample of schools of engineering or schools with primarily technical curricula…
Descriptors: Career Choice, Career Development, College Graduates, College Students
Brodsky, Stanley M. – 1991
This document provides suggestions and strategies for teachers and departmental administrators to improve retention of college students in science, engineering or technology programs. Classroom management strategies include: setting the tone in the first class, demonstrating mastery of the subject, demonstrating enthusiasm for the subject, using…
Descriptors: Classroom Techniques, Cognitive Style, Engineering Education, Higher Education
Alden, John – Engineering Education, 1975
Reports on all levels of college enrollment in engineering and technology institutions for Fall 1974. Provides comparisons with enrollments of previous years as well as enrollments by institution. (CP)
Descriptors: Colleges, Engineering Education, Enrollment, Enrollment Trends
Defore, Jesse J. – Engineering Education, 1975
Surveys the course requirements in the humanities and social sciences for 100 two and four year technology programs. For some associate programs, only one or two courses are required; in 40 percent of the cases studied, the requirement is for three courses, or nine semester hours credit. (MLH)
Descriptors: Curriculum, Degree Requirements, Engineering Education, Engineering Technology
Kurtz, Donald V.; Ong, John – Engineering Education, 1975
Describes an engineering program which includes the study of the larger social and cultural implications of technical innovation as an integral part of the curriculum. In one course, the students design an energy sufficient city of 10,000 people, and consider the human and social consequences of the design. (MLH)
Descriptors: Curriculum, Engineering, Engineering Education, Higher Education

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