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Showing 1 to 15 of 17 results Save | Export
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Romesburg, H. Charles – American Biology Teacher, 2019
A classroom exercise is described in which college students take part in creating and supporting an evolutionary hypothesis that explains effort grunting. The exercise holds their interest throughout and readies them to understand hypotheses of animal and plant evolution. It informs them about the dependence of cultural evolution upon biological…
Descriptors: Evolution, Genetics, Science Instruction, Biology
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Dennis, Mike; Duggan, Adrienne; McGregor, Deb – Primary Science, 2014
Evolution and inheritance appear in the new National Science Curriculum for England, which comes into effect from September 2014. In the curriculum documents, it is expected that pupils in year 6 (ages 10-11) should be taught to: (1) recognise that living things have changed over time; (2) recognise that living things produce offspring of the same…
Descriptors: Science Instruction, Evolution, Science Curriculum, Grade 6
Bowman, Larry L., Jr.; Govett, Aimee L. – Science Educator, 2015
Twenty-six states voluntarily partnered to provide leadership and guidance for the purpose of adoption of the Next Generation Science Standards (NGSS). However, a need exists to examine the NGSS versus state standards to better understand changes in curriculum and instruction to make their implementation successful for all states. The present…
Descriptors: Science Instruction, Academic Standards, State Standards, National Standards
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Kalinowski, Steven T.; Leonard, Mary J.; Andrews, Tessa M. – CBE - Life Sciences Education, 2010
Natural selection is one of the most important concepts for biology students to understand, but students frequently have misconceptions regarding how natural selection operates. Many of these misconceptions, such as a belief in "Lamarckian" evolution, are based on a misunderstanding of inheritance. In this essay, we argue that evolution…
Descriptors: Genetics, Biology, Misconceptions, Evolution
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Kovarik, Dina N.; Patterson, Davis G.; Cohen, Carolyn; Sanders, Elizabeth A.; Peterson, Karen A.; Porter, Sandra G.; Chowning, Jeanne Ting – CBE - Life Sciences Education, 2013
We investigated the effects of our Bio-ITEST teacher professional development model and bioinformatics curricula on cognitive traits (awareness, engagement, self-efficacy, and relevance) in high school teachers and students that are known to accompany a developing interest in science, technology, engineering, and mathematics (STEM) careers. The…
Descriptors: Biotechnology, High Schools, Secondary School Science, STEM Education
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Yoon, Susan A. – International Journal of Science Education, 2008
Educational efforts to incorporate ethical decision-making in science classrooms about current science and technology issues have met with great challenges. Some research suggests that the inherent complexity in both the subject matter content and the structure and dynamics of classrooms contribute to this challenge. This study seeks to…
Descriptors: Evolution, Student Attitudes, Genetics, Information Sources
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Wefer, Stephen H.; Sheppard, Keith – CBE - Life Sciences Education, 2008
The proliferation of bioinformatics in modern biology marks a modern revolution in science that promises to influence science education at all levels. This study analyzed secondary school science standards of 49 U.S. states (Iowa has no science framework) and the District of Columbia for content related to bioinformatics. The bioinformatics…
Descriptors: Computer Uses in Education, Science and Society, Biology, Scientific Literacy
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Graves, Joseph L., Jr. – Reports of the National Center for Science Education, 2002
Advocates discussing human biological variation and race in science curricula. Explains how biologists use the term "race" and what that implies. (YDS)
Descriptors: Ethnicity, Evolution, Genetics, Race
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Case, Emily – Science Teacher, 2003
Defines symbiosis and describes the connection between symbiosis and evolution, how it is described in science textbooks, and genetic variability. Discusses educational policy and science curriculum content. (YDS)
Descriptors: Biology, Educational Policy, Evolution, Genetics
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Keown, Duane – American Biology Teacher, 1988
Contends that the natural science curriculum does not prepare biology students for understanding the process of evolution. Proposes improved teaching approaches related to geological time, the natural transition of earth environments, the variability and alteration of genetic makeup, and the biological potential of species as being necessary for…
Descriptors: Biological Influences, Biology, Evolution, Genetics
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Maret, Timothy J.; Rissing, Steven W. – American Biology Teacher, 1998
Reports on the development of a laboratory exercise that would allow students to explore the concept of genetic drift. Discusses the concept of genetic drift that is coincident with natural selection and that closely models the real world. (DDR)
Descriptors: Educational Policy, Evolution, Genetics, High Schools
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Smith, Mike U.; Kindfield, Ann C. H. – American Biology Teacher, 1999
Presents a concise overview of cell division that includes only the essential concepts necessary for understanding genetics and evolution. Makes recommendations based on published research and teaching experiences that can be used to judge the merits of potential activities and materials for teaching cell division. Makes suggestions regarding the…
Descriptors: Biology, Cytology, Evolution, 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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Max, Edward E. – American Biology Teacher, 1998
Discusses some new evidence for evolution that might be useful in persuading students who question the scientific basis for evolution. Draws on findings from the fields of molecular biology and genetics. (DDR)
Descriptors: Creationism, Educational Policy, Elementary Secondary Education, Evolution
Bahret, Mary Jean; And Others – 1982
Objectives, topics/understandings to be taught, and teachers notes are provided for the seven units in this Regents biology syllabus. Units and major topic areas include: (1) unity and diversity among living things (concept of life, diversity/unity of life); (2) maintenance in living things (nutrition, transport, respiration, excretion,…
Descriptors: Biology, Course Content, Course Descriptions, Ecology
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