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Lewis, Ricki – American Biology Teacher, 1996
Presents examples using biotechnology applications to clarify topics in genetics, such as DNA replication, gene segregation and polar bodies, multiple alleles, and antisense sequences. (MKR)
Descriptors: Biology, College Science, Genetic Engineering, Genetics
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
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Minch, Michael J. – Journal of Chemical Education, 1989
Discusses a three-week summer college honors course for talented high school juniors with three exams, lab six days a week, a research paper, field trips, and student panel discussions. Presents an overview of the course. Describes the lab which uses "E. coli" for DNA recombination. (MVL)
Descriptors: Academically Gifted, Biochemistry, Chemistry, College Science
Cutter, Mary Ann G.; Drexler, Edward; Friedman, B. Ellen; McCullough, Laurence B.; McInerney, Joseph D.; Murray, Jeffrey C.; Rossiter, Belinda; Zola, John – 1997
This instructional module contains a description of the Human Genome Project (HGP). A discussion of issues in the philosophy of science and some of the ethical, legal, and social implications of research in genetics, and a survey of fundamental genetics concepts and of new, nontraditional concepts of inheritance are also included. Six…
Descriptors: Biology, Concept Formation, Elementary Secondary Education, Ethics
Brey, Gary B. – Science, Technology and Society, 1985
Describes an elective undergraduate course that focuses on specific technologies' impact on society and the political system. Outlines the topic areas of computers, microelectronics, and genetic technology in terms of background information and political and public policy issues. A comprehensive reading list for the major technology areas is also…
Descriptors: Computers, Course Descriptions, Electromechanical Technology, Genetics
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Kirkpatrick, Gretchen; Orvis, Kathryn; Pittendrigh, Barry – Journal of Biological Education, 2002
Presents the Genomic Analogy Model for Educators (GAME) strategy for making concepts in genomics easily understandable for both students and the general population by using familiar objects and concepts associated with daily life. Uses web-based tutorials accompanied by laboratory exercises that are intended to be used by students studying…
Descriptors: Biotechnology, DNA, Genetics, Higher Education
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Smith, Thomas M.; Emmeluth, Donald S. – American Biology Teacher, 2002
Explains the potential of computer technology in science education and argues for integrating bioinformatics into the biology curriculum. Describes three modules designed to introduce students to technological advancements in biology. Aims to develop a better understanding of molecular biology among students. (YDS)
Descriptors: Biology, Computer Uses in Education, Educational Technology, Genetics
Orel, Harold – Science, Technology and Society, 1981
Outlines a humanities course which focuses on six topics: medical ethics, nuclear power, genetic engineering, drugs, energy, and cognitive abilities. Course requirements and units are described. (DC)
Descriptors: Course Descriptions, Drug Education, Energy, Ethics
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Liao, Thomas T. – Journal of College Science Teaching, 1997
Discusses strategies that enable students to learn ideas and concepts in the context of how modern communication technology is designed and operates. Describes a course that integrates the study of math, science, and technology into topics that are engaging to students. Presents an activity that introduces students to digital coding and compares…
Descriptors: Cooperative Learning, DNA, Educational Strategies, Genetics
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Myers, Richard – American Biology Teacher, 1988
Describes a basic biotechnology investigation that includes restriction and ligation of plasmid DNA, transformation of bacteria and cloning of these bacterial cells. Discusses laboratory procedures and another activity in the identification of unknown plasmids by studying agarose gel electrophoresis photographs. (CW)
Descriptors: Biological Sciences, College Science, DNA, Genetics
Stonebarger, Bill – 1989
It has only been since the late nineteenth century that people have understood the mechanics of heredity and the discoveries of genes and DNA are even more recent. This booklet considers three aspects of genetics; time, space, and spirit. Time refers to a sense of history; space refers to geography; and spirit refers to life and thought. Several…
Descriptors: Biological Sciences, DNA, Elementary Secondary Education, Genetics
VanTassel-Baska, Joyce, Ed.; And Others – 1987
This curriculum guide was developed with the intention of providing an enrichment option for gifted and talented learners who are interested in pursuing current issues and topics in the fields of mathematics and science. The scope of the guide is meant to encompass a year's study of a set of topics which apply mathematics to science and…
Descriptors: Conservation (Environment), Ecology, Electronics, Energy
Iozzi, Louis A.; Bastardo, Peter J. – 1987
This teacher's guide was designed to be used with senior high school level classes as a supplement to existing programs in the areas of science and social studies. Each of the 12 chapters included in the guide may be used independently or may be combined into a separate course on the relationships between science, technology, and society. The…
Descriptors: Agriculture, Air Pollution, Artificial Intelligence, Decision Making
Iozzi, Louis A.; And Others – 1980
"Technology and Society: A Futuristic Perspective" is one of the "Preparing for Tomorrow's World" (PTW) program modules. PTW is an interdisciplinary, future-oriented program incorporating information from the sciences and social sciences and addressing societal concerns which interface science/technology/society. The program…
Descriptors: Artificial Intelligence, Critical Thinking, Decision Making, Environmental Education