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Stringer, C. B.; Andrews, P. – Science, 1988
Discusses how genetic data on present human population relationships and data from the Pleistocene fossil hominid record are being used to compare two contrasting models for the origin of modern humans. (TW)
Descriptors: Biological Influences, Evolution, Genetics, Heredity

Fisher, Kathleen M. – Journal of Research in Science Teaching, 1985
Investigated a persistent error among introductory college biology and genetics students, namely, that amino acids are produced by genetic translation (protein synthesis). Contributors to this misconception were revealed through multiple-choice items and interviews. Implications for education are discussed with specific steps suggested to correct…
Descriptors: Biology, College Science, Concept Formation, Genetics

Smith, Mike U.; Good, Ron – Journal of Research in Science Teaching, 1984
Examined the problem-solving performances of novices (11 undergraduates) and experts (9 graduate students and instructors), comparing them in terms of background expertise and problem-solving success. Also examined problem-solving behaviors reported in other domains and determined whether or not genetics is a fruitful area for problem-solving…
Descriptors: College Science, Genetics, Heuristics, Higher Education
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
Smith, Mike U. – 1986
This paper is a progress report of the first phase of a project which essentially seeks to replicate previous studies using the successful/unsuccessful design in an attempt to: (1) corroborate the surface/deep structure conclusion which has become an essential component of an understanding of problem-solving; (2) examine more closely the nature of…
Descriptors: Classification, College Science, Genetics, Higher Education
Costello, Sandra Judith – 1984
The purpose of this study was to analyze the errors made by students solving genetics problems. A sample of 10 non-science undergraduate students was obtained from a private college in Northern New Jersey. The results support prior research in the area of genetics education and show that a weak understanding of the relationship of meiosis to…
Descriptors: Biology, College Science, Genetics, Higher Education

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
Smith, Mike U. – 1986
Nine undergraduate science and non-science majors (novices) who had recently completed their first college classroom study of genetics and seven genetics graduate students and biology instructors (experts) were videotaped as they attempted to solve a selected group of seven moderately complex classifical genetics problems and three Piagetian tasks…
Descriptors: Cognitive Development, College Science, Developmental Stages, Genetics

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
Murray, James D. – Scientific American, 1988
Discusses a single pattern formation mechanism that could underlie the wide variety of animal coat markings found in nature. Presents the results of a mathematical model for how these patterns may be generated in the course of embryonic development. (CW)
Descriptors: Animals, Biology, College Science, Embryology

Cho, Hee-Hyung; And Others – Science Education, 1985
Three high school biology textbooks were analyzed to determine possible sources of misconceptions and related learning problems associated with genetics. Misconceptions were examined in these categories: conceptual organization; conceptual relations; use of terminology; and mathematical elements. Implications for instruction related to each…
Descriptors: Biology, Concept Formation, Genetics, Science Education

Clough, Elizabeth Engel; Wood-Robinson, Colin – Journal of Biological Education, 1985
Investigated common belief patterns secondary school students (N=84) have about inheritance, noting the most prevalent misconceptions about genetics which occur at different age levels. Implications based on findings and suggestions for teaching lower secondary courses are included. (ML)
Descriptors: Biology, Comprehension, Concept Formation, Genetics

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
Gipson, Michael; Abraham, Michael R. – 1985
Seventy-one college general biology students were taught a unit in Mendelian genetics by the traditional lecture method. Emphasis was placed on meiotic formation of gametes, dominance, segregation, and independent assortment. The Punnett square model was used for all practice problems. While using this model, students were asked to: (1) identify…
Descriptors: Biology, College Science, Concept Formation, Developmental Stages

Brown, C. R. – Journal of Biological Education, 1990
Discussed are problems revealed in student responses to a practical task which formed part of an advanced level examination. The frequencies with which some misconceptions about cell reproduction and genetics occurred are presented. The nature of these misconceptions is analyzed and their implications discussed. (CW)
Descriptors: Biological Sciences, Biology, Cognitive Structures, Genetics