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Horton, Robert M.; Leonard, William H. – American Biology Teacher, 2013
Biology and mathematics are inextricably linked. In this article, we show a few of the many areas in which this linkage might be made explicit. By doing so, teachers can deepen students' understanding and appreciation of both subjects. In this article, we explore some of these areas, providing brief explanations of the mathematics and some of the…
Descriptors: Biology, Science Instruction, Mathematical Concepts, Mathematics
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Baurhoo, Neerusha; Darwish, Shireef – American Biology Teacher, 2012
Predicting phenotypic outcomes from genetic crosses is often very difficult for biology students, especially those with learning disabilities. With our mathematical concept, struggling students in inclusive biology classrooms are now better equipped to solve genetic problems and predict phenotypes, because of improved understanding of dominance…
Descriptors: Learning Disabilities, Genetics, Biology, Mathematical Concepts
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Andersen, Janet – American Biology Teacher, 2007
Secondary school educators are told to teach more mathematics and science to their students to help them become more proficient in the two subjects. Coordination of mathematics and science teaching is recognized as another means of improving proficiency. The National Science Foundation has funded the "Mathematics, Science and Technology…
Descriptors: Microbiology, Mathematical Concepts, Mathematics Instruction, Science Instruction
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Kneidel, Ken – American Biology Teacher, 1996
Describes a strategy to make chi-square calculations and interpretations more understandable by presenting the theory behind the test to the students in a visual manner. Involves using dihybrid corn to generate a large sample of chi-squares followed by plotting a frequency distribution to get at the meaning behind the chi-square table. (JRH)
Descriptors: Biology, Chi Square, Computation, Higher Education
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Cohen, Annette; Moreh, Anat Ben; Chayoth, Reuben – American Biology Teacher, 1999
Explores the difficulties students have in understanding the relationship between surface area and volume. Examines four cases where the ratio of surface area to volume varies, and makes recommendations for demonstrating each with models. (Contains 15 references.) (WRM)
Descriptors: Area, Demonstrations (Science), Hands on Science, Higher Education