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Castro-Faix, Moraima; Duncan, Ravit G. – Science Education, 2022
Genetics is a core topic in the biology curriculum of many countries. Learning genetics is difficult for multiple reasons, including the need to reason about complex mechanisms--and to link mechanisms--that occur at different time and space scales. Previous research in genetics education explores students' understandings of inheritance patterns or…
Descriptors: Genetics, Science Instruction, Heredity, Molecular Biology
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de Graaf, Arjan; Westbroek, Hanna; Janssen, Fred – Journal of Science Teacher Education, 2019
In this study we investigated how a theoretical framework we developed for making differentiated instruction practical worked out in a trajectory (1 year, 5 sessions) that aimed to support 5 secondary biology teachers in designing differentiated instruction practices. The key feature of the framework is the development of cost-effective…
Descriptors: Individualized Instruction, Biology, Science Teachers, Genetics
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Esiobu, Gladys O.; Soyibo, Kola – Journal of Research in Science Teaching, 1995
Verified the efficacy of concept and Vee mapping heuristics under cooperative, cooperative-competitive, and individualistic whole-class learning conditions in improving (n=808) eighth graders' achievement in ecology and genetics. Experimental groups achieved significantly better than the control groups; students in cooperative-competitive…
Descriptors: Academic Achievement, Concept Mapping, Cooperative Learning, Ecology
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Stewart, Jim – Science Education, 1988
Examines various types of problems that researchers have used to demonstrate problem solving. Focuses on genetics problems. Discusses classes of learning outcomes, conceptual knowledge gains, content-independent heuristics, content-specific procedures, understanding the nature of science and a typology of genetics problems. (CW)
Descriptors: Biological Sciences, Cognitive Ability, College Science, Genetics