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Wilson, Sarah A.; Goldberg, Deborah S. – Chemical Engineering Education, 2023
Engineering students face significant stressors such as high academic expectations and extreme time demands that have the potential to impact their mental health. Due to the mentoring responsibilities of chemical engineering faculty, faculty are often positioned to provide support for these students. Through this article, we aim to help prepare…
Descriptors: Engineering Education, Mental Health, Stress Variables, Health Services
Benya, Frazier F., Ed.; Fletcher, Cameron H.,Ed.; Hollander, Rachelle D.,Ed. – National Academies Press, 2013
Over the last two decades, colleges and universities in the United States have significantly increased the formal ethics instruction they provide in science and engineering. Today, science and engineering programs socialize students into the values of scientists and engineers as well as their obligations in the conduct of scientific research and…
Descriptors: Science Instruction, College Faculty, Engineering, Engineering Education
National Academies Press, 2012
The aim of this report is to encourage enhanced richness and relevance of the undergraduate engineering education experience, and thus produce better-prepared and more globally competitive graduates, by providing practical guidance for incorporating real world experience in US engineering programs. The report, a collaborative effort of the…
Descriptors: Engineering, Engineering Technology, Engineering Education, Undergraduate Study
Phillips, Michelle; St. John, Mark – Inverness Research, 2013
In 2009, the National Science Foundation funded the "Dynabook: A Digital Resource and Preservice Model for Developing TPCK" project through its Discovery Research K-12 program. Dynabook project leaders and the National Science Foundation (NSF) recognized that digital textbooks would soon be a primary instructional resource, and seized…
Descriptors: Educational Innovation, Engineering, Research and Development, Pedagogical Content Knowledge
Drew, David E. – Johns Hopkins University Press, 2011
One study after another shows American students ranking behind their international counterparts in the STEM fields--science, technology, engineering, and math. Business people such as Bill Gates warn that this alarming situation puts the United States at a serious disadvantage in the high-tech global marketplace of the twenty-first century, and…
Descriptors: Achievement Gap, Economic Development, Mathematics Education, Educational Change
National Academies Press, 2012
Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S.…
Descriptors: Science Education, Science Instruction, Elementary Secondary Education, Alignment (Education)
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Palmer, Robert T.; Davis, Ryan J.; Thompson, Tiffany – Journal of College Student Development, 2010
In the current postindustrial era, increasing the number of minorities in science, technology, engineering, and mathematics (STEM) is critically important for the United States' economic growth and its position in the global marketplace. Given the U.S. Census Bureau's 2008 projection that the population of minorities is expected to increase by…
Descriptors: Economic Progress, Black Colleges, Minority Groups, African American Students
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Litzinger, Thomas A.; Koubek, Richard J.; Wormley, David N. – New Directions for Teaching and Learning, 2009
One of the most important elements in achieving significant curricular and pedagogical innovation is creating a climate that promotes and acknowledges the contributions of those who engage in these efforts. It is critical that this climate be systemic, existing at the department, college, and university levels. In the past few years, the view that…
Descriptors: Undergraduate Study, Science Education, Technology Education, Engineering Education
Stavros, Demo A. – Engineering Education, 1984
Discusses the use of laboratory courses as an invaluable teaching aid to assist in meeting both social and technical objectives. The use of laboratories in conjunction with technical theory courses, as well as in making students aware of their responsibilities to themselves, their teams, and to the instructor are described. (BC)
Descriptors: Engineering, Engineering Technology, Higher Education, Laboratories
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Newell, R. B.; And Others – Chemical Engineering Education, 1985
Discusses current problems in chemical engineering education at the University of Queensland (including those related to the laboratory, student/staff ration, literacy, motivation, course content, and structural changes). Also describes a proposed plan of the Queensland department to implement a scheme for resource-based education in chemical…
Descriptors: Chemical Engineering, College Instruction, Curriculum Development, Engineering Education
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Van Impe, W. F. – European Journal of Engineering Education, 1989
Describes the historical development and programs of engineering education at the University of Rwanda in cooperation with a Belgium university. Provides lists of courses for electromechanical and civil engineering programs. (YP)
Descriptors: Civil Engineering, College Science, Engineering, Engineering Education
Koehler, W. F. – Engineering Education, 1985
Describes a mathematical salary-growth model which serves as the basis of an objective conversion procedure (providing a more equitable merit-pay plan). Also demonstrates how this procedure was used and discusses additional benefits (particularly pertinent to institutions using arbitrary criteria to determine pay increments and have lock-step…
Descriptors: Engineering, Engineering Education, Higher Education, Mathematical Models
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Snyder, William J., Hanyak, Michael E. – Chemical Engineering Education, 1985
Describes the advantages and features of computer-assisted laboratory stations for use in a chemical engineering program. Also describes a typical experiment at such a station: determining the response times of a solid state humidity sensor at various humidity conditions and developing an empirical model for the sensor. (JN)
Descriptors: Chemical Engineering, Computer Oriented Programs, Engineering Education, Higher Education
Connecticut Women's Education and Legal Fund, 2009
The Vocational Equity Research, Training and Evaluation Center (VERTEC) was established in 1988 to increase females' access to, and opportunities in, vocational education programs that are nontraditional for their gender. The research, technical assistance and advocacy that has been provided by VERTEC staff over the last 21 years has established a…
Descriptors: Nontraditional Students, Sex Fairness, Gender Discrimination, Vocational Education
National Academies Press, 2010
"Gender Differences at Critical Transitions in the Careers of Science, Engineering, and Mathematics Faculty" presents new and surprising findings about career differences between female and male full-time, tenure-track, and tenured faculty in science, engineering, and mathematics at the nation's top research universities. Much of this…
Descriptors: Productivity, Tenure, Gender Differences, Research Universities
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