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Showing 1 to 15 of 93 results Save | Export
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Denny, Michael; Chennell, Frank – Educational Studies, 1986
Examines views, attitudes and feelings of high school pupils about their school science practicals (labs) via letter-writing and picture-drawing. Concludes that while students generally like practicals, they view them more as a means of confirming theory rather than an open investigation or true experiment. (JDH)
Descriptors: Laboratory Experiments, Science Education, Science Experiments, Science Instruction
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Chakarvarti, S. K. – Physics Education, 1985
Suggests experiments to help develop understanding of photoconductivity, photometry, and the inverse square law in optics. The design of a simple absorption colorimeter is also described. (DH)
Descriptors: College Science, Higher Education, Laboratory Procedures, Light
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Millar, R. H.; Underwood, C. I. – School Science Review, 1984
Discusses an easy way of interfacing physics experiments to a microcomputer, providing information on the "analog input port" of a BBC microcomputer. Also describes a capacitor discharge experiment with suggestions for several student activities such as investigating decay curve shapes. Program listing is available from author. (DH)
Descriptors: Computer Oriented Programs, Microcomputers, Physics, Science Education
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Brunner, Ulrich – Journal of Biological Education, 1985
The food preservative sorbic acid can be extracted from Eurasian mountain ash berries (commercially available) and used to show antifungal properties in microbiological investigations. Techniques for extraction, purification, ultraviolet analysis, and experiments displaying antifungal activity are described. A systematic search for similar…
Descriptors: Botany, College Science, Culturing Techniques, Higher Education
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Liebscher, Kurt; And Others – School Science Review, 1984
Repetition of a historical experiment in a school project threw new light on the question of absolute rest. The student experiment investigated whether a particular direction in space could be singled out by a purely terrestrial procedure, while the original experiment investigated the drag coefficient of a solid medium. (JN)
Descriptors: Physics, Relativity, Science Education, Science Experiments
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Spurgin, C. B. – Physics Education, 1985
Discusses issues related to examination questions which begin by asking students to "Describe an experiment to..." Indicates that this strategy is useful when focusing on important quantities/phenomena or "celebrated" experiments and that examining boards should not request students to describe experiments which verify or…
Descriptors: Physics, Science Education, Science Experiments, Science Tests
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Helm, Hugh; And Others – Physics Education, 1985
Discusses: how thought experiments (TES) are presented and used in physics textbooks; how and why teachers include TES in their explanations; and what understandings students draw from TES. Indicates that TES are only one of a broad class of "acts of imagination" which are essential in physics education. (JN)
Descriptors: Cognitive Processes, Physics, Science Education, Science Experiments
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Harvey, T. J.; Wareham, M. – Research in Science and Technological Education, 1984
This investigation showed no sex difference between boys and girls with regard to practical work at the end of their first year of secondary school and no difference between schools and groupings (all boys, all girls, mixed schools with mixed science classes, and mixed schools with single sex science classes). (JN)
Descriptors: Grouping (Instructional Purposes), Science Education, Science Experiments, Science Instruction
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Llewellyn, M. – Journal of Biological Education, 1984
Background information on the biology of aphids is supplied. Using this information in a wide variety of investigations, many involving equipment and techniques available in the school laboratory, can be carried out. An appendix lists possible projects. (Author)
Descriptors: Animal Behavior, Animals, Biology, Entomology
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Jenkins, E. W. – International Journal of Science Education, 2000
Examines the impact of the national curriculum on secondary school science teachers' work in England and Wales. Finds that, in a significant number of schools, less time is spent on practical activities in the laboratory and students are presented with a narrower range of laboratory activities. Concludes that many teachers judge the national…
Descriptors: British National Curriculum, Educational Change, Elementary Secondary Education, Foreign Countries
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McIldowie, Eric – Physics Education, 1998
Outlines a course based on a series of experiments in which students are introduced to the behavior of electrical components without any references to Ohm's law. Argues that this approach has advantages over the traditional presentation. (DDR)
Descriptors: British National Curriculum, Electricity, Foreign Countries, Hands on Science
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Ellse, Mark D. – Physics Education, 1984
Describes experiments in which a bipolar transistor is used to examine the behavior of a simple circuit. Also addresses problems in teaching the related concepts. (The experiments can be modified to incorporate devices other than bipolar transistors.) (JN)
Descriptors: Electric Circuits, Electronics, Physics, Science Education
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Van Praagh, Gordon – School Science Review, 1983
Describes the nature of three types of science experiments, focusing on those designed to answer the questions: "What happens?"; "How can it be done?"; and "Which theory?". Indicates that all three have had a definite place in the school science curriculum. (JN)
Descriptors: Educational Objectives, Foreign Countries, Science Curriculum, Science Education
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Lancaster, G. – Physics Education, 1983
Describes an experiment in which static/dynamic properties of a helical, steel spring are investigated. During the experiment students discover that the behavior of the springs is non-Hookean at small loads. Background information (including static deflection and period of oscillation) and typical results are provided. (JM)
Descriptors: College Science, Foreign Countries, Higher Education, Laboratory Procedures
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Woolnough, Brian E. – Physics Education, 1983
Suggests a threefold rationale for practical work in science: in developing laboratory skills, in learning to work as a scientist, and in acquiring a feel for phenomena. Three types of pupil practical work (exercises, investigations, and experiences) are then discussed. (Author/JN)
Descriptors: Educational Objectives, Foreign Countries, Science Activities, Science Education
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