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Gilger, Jeffrey W. – Journal of Speech and Hearing Research, 1995
This paper is an introduction to behavioral genetics for researchers and practitioners in language development and disorders. It identifies essential concepts and applies behavioral genetic research to the language sciences. It suggests that more complex questions may be successfully addressed through behavioral genetic paradigms. Research needs…
Descriptors: Behavioral Science Research, Genetics, Language Impairments, Models
Kindfield, Ann C. H. – 1991
The results of a study of the meiosis models utilized by individuals at varying levels of expertise while reasoning about the process of meiosis are presented. Based on these results, the issues of sources of misconceptions/difficulties and the construction of a sound understanding of meiosis are discussed. Five individuals from each of three…
Descriptors: Biology, Cognitive Development, Concept Formation, Genetics
Hodapp, Robert M. – American Journal on Mental Retardation, 1997
Three models of behavioral effects of genetic disorders characterized by mental retardation were compared: (1) no-specific effect model (all genetic disorders have identical behavioral outcomes); (2) totally specific model (each genetic disorder has unique outcomes); and (3) partially specific model (two or more genetic disorders share outcomes…
Descriptors: Behavior Patterns, Behavior Problems, Congenital Impairments, Genetics

Kindfield, A. C. H. – Science Education, 1994
Reports on the meiosis models utilized by five individuals at each of three levels of expertise in genetics as each reasoned about this process in an individual interview setting. Results revealed a set of biologically correct features common to all individuals' models as well as a variety of model flaws (i.e., meiosis misunderstandings) which are…
Descriptors: Biology, Educational Research, Genetics, High Schools

Oldham, V.; Brouwer, W. – Journal of Research in Science Teaching, 1984
Applies Kuhn's model of the structure of scientific revolutions, Popper's hypothetic-deductive model of science, and Lakatos' methodology of competing research programs to a historical biological episode. Suggests using Kuhn's model (emphasizing the nonrational basis of science) and Popper's model (emphasizing the rational basis of science) in…
Descriptors: Curriculum Development, Genetics, High Schools, Models

Newman, Alan R. – Analytical Chemistry, 1990
Described is the basic biology involved in mapping chromosomes as presented at a symposium at a recent meeting of the American Chemical Association which focused on the Human Genome Initiative. Different types of gene maps and techniques used to produce gene maps are discussed. (CW)
Descriptors: Biochemistry, Biology, College Science, Genetics

Stewart, Jim; Dale, Michael – Science Education, 1989
Investigates high school students' understanding of the physical relationship of chromosomes and genes as expressed in their conceptual models and in their ability to manipulate the models to explain solutions to dihybrid cross problems. Describes three typical models and three students' reasoning processes. Discusses four implications. (YP)
Descriptors: Algorithms, Biology, Concept Formation, Fundamental Concepts

Peterson, Nils S.; And Others – Machine-Mediated Learning, 1987
This discussion of teaching science as a design activity emphasizes open-ended problem solving. Highlights include the relationship between teachers and students; hypotheses as solutions; and descriptions of four microworlds, or computer simulations, in chemistry, geography, physiology, and genetics which use graphic interfaces. (LRW)
Descriptors: Chemistry, Computer Assisted Instruction, Computer Graphics, Computer Simulation