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Coleman, Jill S. M.; Mitchell, Melissa – Journal of College Science Teaching, 2014
This article describes the implementation of high-altitude balloon (HAB) research into a variety of undergraduate atmospheric science classes as a means of increasing active student engagement in real-world, problem-solving events. Because high-altitude balloons are capable of reaching heights of 80,000-100,000 ft (24-30 km), they provide a…
Descriptors: Active Learning, Undergraduate Students, Program Implementation, Problem Based Learning
Felzien, Lisa; Salem, Laura – Bioscene: Journal of College Biology Teaching, 2008
Service learning involves providing service to the community while requiring students to meet learning goals in a specific course. A service learning project was implemented in a general biology course at Rockhurst University to involve students in promoting scientific education in conjunction with community partner educators. Students were…
Descriptors: Service Learning, Biology, Learning Experience, Program Implementation
Landis, Raymond B. – Engineering Education, 1988
Discusses some of the barriers that impede minority success in college and gives suggestions for overcoming them. Describes the California Minority Engineering Program (MEP) as a successful program that has been replicated at several California universities. Presents the three structural elements and gives suggestions for starting a MEP program.…
Descriptors: Academic Persistence, College Science, Engineering Education, Higher Education
Torda, T. Paul, Ed. – 1977
Volume II of the Education and Experience in Engineering E3 Program is a collection of 21 appendices related to this program which provide information on funding, participants, meetings, and communications among participants. Appendix V, an E3 Handbook for students, contains information on student advising, placement, and evaluation. Appendix VI…
Descriptors: College Science, Engineering Education, Group Dynamics, Higher Education
Peer reviewedMoore, John A. – Journal of College Science Teaching, 1983
Discusses need for and nature of science courses for the nonspecialist, outlining the content of an integrated four-year program devoted to sciences (first two years), technology (third year) and science/technology/human problems (fourth year). Includes recommendations for implementing such a program. (Author/JN)
Descriptors: College Science, Course Descriptions, Curriculum Development, Higher Education
Ernst, Edward W. – Engineering Education, 1989
Discusses the Undergraduate Curriculum Development in Engineering program. Provides a short history of the program. Describes 10 curriculum projects ranging from engineering design to industry participation. Each program is encouraged to develop: analytical ability, ability to innovate and synthesize, integrating ability, and contextual…
Descriptors: College Science, Curriculum Design, Curriculum Development, Engineering

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