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Lark, Amy; Richmond, Gail; Pennock, Robert T. – American Biology Teacher, 2014
New science standards and reform recommendations spanning grades K--16 focus on a limited set of key scientific concepts from each discipline that all students should know. They also emphasize the integration of these concepts with science practices so that students learn not only the "what" of science but also the "how" and…
Descriptors: Evolution, Classroom Techniques, Case Studies, Scientific Concepts
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Miller, Roxanne Greitz – Science Scope, 2007
If we abide by the familiar saying "you are what you eat," it is understandable that people may be concerned with the incredible advances in food science technology and their possible impacts on human health. For example, in recent years high-tech scientific processes such as genetic modification, irradiation, and cloning have all been used to…
Descriptors: Safety, Foods Instruction, Science Instruction, Technological Advancement
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Boffey, Philip M. – Science, 1970
Descriptors: Genetics, Medical Research, Nuclear Weapons, Radiation Biology
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Merril, Judith – Social Education, 1973
Topic 7, Atomic Bombs and Radiation, from a theme issue on Teaching World History Through Science Fiction, stimulates discussion on mutation and radiation effects. (JB)
Descriptors: Genetics, Nuclear Weapons, Radiation Biology, Radiation Effects
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Ward, John F. – Journal of Chemical Education, 1981
Describes some basic findings in the radiation chemistry of genetic material derived from studies of model systems. Uses these findings to extrapolate the consequences of radiation damage to DNA within cells. (CS)
Descriptors: Biochemistry, Biology, Chemistry, College Science
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New, June; Jolley, Ray – Journal of Biological Education, 1986
Cites reasons why Penicillium claviforme is an exceptionally good species for ultraviolet induced mutation experiments. Provides a set of laboratory instructions for teachers and students. Includes a discussion section. (ML)
Descriptors: Biology, College Science, Genetics, Higher Education