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Yong, Lou – International Education Studies, 2020
Embedded system is an interdisciplinary, profound foundation and practice-oriented course; at present, in the traditional teaching mode, embedded systems in colleges and universities generally have problems such as disconnected theory and practice, outdated assessment methods, and low enthusiasm of students. Arming to cultivate compound embedded…
Descriptors: Engineering Education, Teaching Methods, Student Projects, Active Learning
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Muoka, Polycarp I.; Haque, Md. Enamul; Gargoom, Ameen; Negnetvitsky, Michael – IEEE Transactions on Education, 2015
This paper presents a new photovoltaic (PV) power systems laboratory module that was developed to experimentally reinforce students' understanding of design principles, operation, and control of photovoltaic power conversion systems. The laboratory module is project-based and is designed to support a renewable energy course. By using MATLAB…
Descriptors: Energy, Laboratory Experiments, Design, Computer Software
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Janova, Jitka; Musilova, Jana; Bartos, Jiri – European Journal of Physics, 2009
This paper presents an original undergraduate student project in theoretical mechanics: a demonstration of theory and experiment agreement inspired by a recently theoretically treated mechanical problem of coupled rolling motion of two cylinders. The problem of a mechanical system subjected to non-holonomic constraints is theoretically and…
Descriptors: Undergraduate Students, Student Projects, Mechanics (Physics), Chemistry
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Rochefort, Skip; And Others – Chemical Engineering Education, 1985
The philosophy, structure, and organization of a chemical engineering (ChE) process laboratory are discussed. The laboratory emphasizes the oral and communication skills of students who are part of groups that resemble an industrial process research and development group. An annotated list of students' experimental projects is included. (JN)
Descriptors: Chemical Engineering, Course Descriptions, Engineering Education, Higher Education
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Deyrup-Olsen, Ingrith; Linder, Thomas M. – Advances in Physiology Education, 1991
The advantages of using invertebrates in teaching physiological principles are discussed. The ability to illustrate with greater clarity physiological principles, the range and variety of physiological processes available for examination, and the unlimited possibilities for student research are topics of discussion. (KR)
Descriptors: Higher Education, Invertebrates, Laboratory Experiments, Physiology
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Morgan, R.; And Others – Physics Education, 1976
Describes a set of student projects, each involving about 240 hours of laboratory time, covering the following topics: wind power monitoring, wind generator design, solar power, and the heat pump. (MLH)
Descriptors: College Science, Energy, Heat, Higher Education
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Cadwell, Donald H. – Journal of Geological Education, 1980
Describes a student field project involving the estimation of a maximum rate of erosion for a local area. Identifies the factors influencing erosion and outlines the method of investigation. (GS)
Descriptors: Assignments, College Science, Field Trips, Geology
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Kramm, Kenneth R. – Journal of College Science Teaching, 1976
Describes an attempt to incorporate research into laboratory work in an introductory ecology class and a senior seminar. The investigation involves the examination of rhythms of food consumption and circadian activities in humans. (GS)
Descriptors: Biology, College Science, Higher Education, Instructional Materials
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Rhodes, W. Gale; And Others – Journal of Chemical Education, 1975
Descriptors: Biochemistry, Biology, Chemistry, College Science
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Malmary, G.; And Others – Chemical Engineering Education, 1984
As part of a project focusing on techniques in industrial chemistry, students carry out experiments on separating copper from cobalt in chloride-containing aqueous solution by liquid extraction with triisoctylamine solvent and search the literature on the separation process of these metals. These experiments and the literature research are…
Descriptors: Chemical Engineering, Chemical Reactions, Engineering Education, Higher Education
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Middelberg, Anton P. J. – Chemical Engineering Education (CEE), 1995
Describes changes initiated in the Level-Three laboratory course of the chemical engineering curriculum at the University of Adelaide that were useful in fostering higher-level skills and reducing the reliance on reports handed down from previous years. Highlights report writing and data analysis workshops and the laboratory project design…
Descriptors: Chemical Engineering, Data Analysis, Evaluation, Foreign Countries
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Freeland, P. W. – School Science Review, 1975
Describes differences in the construction of a colorimeter and a photometer. Gives examples of ways in which light-measuring instruments can be used by biologists. These examples can be used either as class experiments or as individual projects. (GS)
Descriptors: Biology, College Science, Higher Education, Instructional Materials
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Hodson, D. – Education in Chemistry, 1975
Explains a series of experiments that increased students' awareness and understanding of activation energy, reaction transition states, rates of reaction, provided a neat example of the diagnostic utility of infrared spectroscopy and furnished insight into the accidental research situation. (Author/GS)
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
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Buono, John A.; Fasching, James L. – Journal of Chemical Education, 1973
Discusses a program, consisting of individual conventional experiments and group special projects, along with lectures in analytical courses during the last six to eight weeks of a semester. Concludes that students' different aspects of capability are encouraged after receiving the course. (CC)
Descriptors: Chemistry, College Science, Course Organization, Higher Education
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Macias-Machin, Agustin; And Others – Chemical Engineering Education, 1990
Discusses the use of an individually designed experiment for a chemical engineering laboratory course. Lists main ideas of the method. Provides an example of the experiment including ways to answer the questions and extensions. (YP)
Descriptors: Chemical Engineering, College Science, Course Organization, Engineering Education
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