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Kober, Nancy – National Academies Press, 2015
The undergraduate years are a turning point in producing scientifically literate citizens and future scientists and engineers. Evidence from research about how students learn science and engineering shows that teaching strategies that motivate and engage students will improve their learning. So how do students best learn science and engineering?…
Descriptors: Science Instruction, Undergraduate Students, Undergraduate Study, Engineering
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Mousa, W. A. – IEEE Transactions on Education, 2012
The purpose of this paper is to share the experience gained in, and the efforts made toward, introducing and implementing a new course in the challenging and important area of geophysical signal processing at the Electrical Engineering (EE) Department, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, Saudi Arabia. The new course,…
Descriptors: Foreign Countries, Interdisciplinary Approach, Engineering Education, Geophysics
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Selcuk, Gamze Sezgin; Emiroglu, Handan Byacioglu; Tarakci, Mehmet; Ozel, Mustafa – Asia-Pacific Forum on Science Learning and Teaching, 2011
The purpose of this study is to introduce a problem-based learning material, the Satellite Module, that has integrated some of the subjects included in the disciplines of physics and mathematics at an introductory level in undergraduate education. The reason why this modular and problem-based material has been developed is to enable students to…
Descriptors: Undergraduate Study, Problem Based Learning, Physics, Geophysics
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Miller, Clarence A. – Chemical Engineering Education, 1981
Discusses a one-semester course on recovering fossil fuels and minerals from underground formations. Includes course outline and information of its major divisions: (1) Geological Background; (2) Flow, Transport, and Interfacial Phenomena in Porous Media; and (3) Description of Underground Processes. (SK)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions
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Whisonant, Robert Clyde; Watts, Chester Frederick – Journal of Geological Education, 1989
A method of plotting planes on stereonets is described including great circles, poles, and dip vectors. Teaching applications of dip vectors in engineering geology and structural geology are discussed. (CW)
Descriptors: College Science, Engineering Education, Geology, Geophysics