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Cutter, Mary Ann G.; Drexler, Edward; Gottesman, Kay S.; Goulding, Philip G.; McCullough, Laurence B.; McInerney, Joseph D.; Micikas, Lynda B.; Mural, Richard J.; Murray, Jeffrey C.; Zola, John – 1996
This module, for high school teachers, is the second of two modules about the Human Genome Project (HGP) produced by the Biological Sciences Curriculum Study (BSCS). The first section of this module provides background information for teachers about the structure and objectives of the HGP, aspects of the science and technology that underlie the…
Descriptors: Biology, Ethics, Evolution, Genetic Engineering
Peer reviewed Peer reviewed
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
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Jantzen, Paul G. – American Biology Teacher, 1978
Nine questions are presented for student discussions relating to genetics, evolution, and racial characteristics. A brief introductory discussion of these topics are presented, as well. (BB)
Descriptors: Biological Sciences, Discussion Groups, Evolution, Genetics
Northwest Regional Educational Lab., Portland, OR. – 1982
THE FOLLOWING IS THE FULL TEXT OF THIS DOCUMENT (Except for the Evaluation Summary Table): VERSION: Conduit Demonstration Package. PRODUCER: Conduit, P. O. Box 388, Iowa City, IA 52244. EVALUATION COMPLETED: June, 1982, by staff and constituents of the Portland Public Schools, Multnomah ESD, Oregon. COST: $30.00. ABILITY LEVEL: Post-secondary,…
Descriptors: Academically Gifted, Computer Assisted Instruction, Computer Programs, Evolution
Peer reviewed Peer reviewed
Hull, Peter – Journal of Biological Education, 1978
Describes an interactive computer program which can be used by students to construct adaptive landscapes of two types as an illustration of the expected effects of selection. Simulates effects of selection on populations of this type and changes of gene frequency can be plotted on the same contour map. (Author/MA)
Descriptors: Biology, Computer Assisted Instruction, Ecology, Evolution
Peer reviewed Peer reviewed
Murphy, P. J. – Journal of Biological Education, 1984
The educational design of a project option in an Open University course on evolution is described. Also described is the simulation which models the genetic and evolutionary consequences of two populations of a species of flowering plant coming together after a period of genetic isolation. (Author/JN)
Descriptors: Biology, Botany, College Science, Computer Assisted Instruction
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Burns, Roxanne H. – American Biology Teacher, 1996
Presents a genetic game that allows students to construct a human face as determined by the random selection of alleles from a gene pool. Can be used to teach the concepts of chromosome inheritance, dominance, incomplete dominance, multiple alleles, multiple loci, independent assortment, multiple gene traits, and evolution. (JRH)
Descriptors: Biology, DNA, Educational Games, Elementary Secondary Education
Peer reviewed Peer reviewed
Offner, Susan – American Biology Teacher, 1994
Uses diagrams to aid in discussing how the English map of the human chromosomes, published by Offner in 1993, can be used to illustrate some important questions in evolution, as well as give students a glimpse into some of the mechanisms underlying evolutionary change. (ZWH)
Descriptors: Evolution, Genetics, Instructional Materials, Science Activities
Peer reviewed Peer reviewed
Offner, Susan – American Biology Teacher, 1994
Uses diagrams to aid in discussing how the English map of the human chromosomes, published by Offner in 1993, can be used to illustrate some important questions in evolution, as well as give students a glimpse into some of the mechanisms underlying evolutionary change. (ZWH)
Descriptors: Evolution, Genetics, Instructional Materials, Science Activities
Peer reviewed Peer reviewed
Thornton, Kent W.; Ashley, David C. – Science Teacher, 1977
Describes a game that illustrates the principles of population genetics and helps explain the occurrence of evolution through changes in gene frequencies. Demonstrates the importance of genetic variability in evolution: winning is achieved by a player's species becoming "completely heterozygous" for six characteristics. Players move directed by…
Descriptors: Biological Sciences, College Science, Evolution, Games
Peer reviewed Peer reviewed
Fifield, Steve; Fall, Bruce – American Biology Teacher, 1992
Describes a simulation exercise involving an imaginary organism in which students study the effect of predation on allele frequencies, examine the assumptions of the Hardy-Weinberg law, and consider whether the need to survive is a guiding force in evolution. Includes instruction for conducting the exercise. (MDH)
Descriptors: Biology, College Science, Evolution, Genetics
World Wildlife Fund, Washington, DC. – 2003
This document features a lesson plan in which genetic traits are identified and classified using a genetic wheel by playing several different games that introduce genetic diversity and highlight why it is important within populations. Samples of instruction and assessment are included. (KHR)
Descriptors: Activity Units, Biodiversity, Biology, Classification
Hunter, Scott; Watthews, Thomas – 1986
This syllabus has been developed as an alternative to Regents biology and is intended for the average student who could benefit from an introductory biology course. It is divided into seven major units dealing with, respectively: (1) similarities among living things; (2) human biology (focusing on nutrition, transport, respiration, excretion, and…
Descriptors: Biology, Classification, Course Descriptions, Ecology
Peer reviewed Peer reviewed
Peczkis, Jan – Science Teacher, 1993
Presents a simple activity that simulates natural selection working on random mutations through many generations. (PR)
Descriptors: Biology, Evolution, Genetics, High Schools
Peer reviewed Peer reviewed
Welch, Larry A. – American Biology Teacher, 1993
Presents an activity to help students understand the precepts of the Hardy-Weinberg principle and simultaneously permit observation of a model of evolution through natural selection in a nonthreatening setting. (PR)
Descriptors: College Science, Evolution, Genetics, High Schools
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