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Caryn Babayan – ProQuest LLC, 2021
STEM is a well-known acronym describing the intersections of science, technology, engineering, and math. Emerging from this paradigm is a relatively new interdisciplinary model entitled STEAM. STEAM endeavors to intersperse "the arts" into the sciences with the expectation of increasing student engagement and skills within the sciences.…
Descriptors: STEM Education, Biology, Science Instruction, Art Education
Fulford, Janice Marie; Rudge, David Wÿss – Science & Education, 2016
The phenomenon of industrial melanism (IM) became widely acknowledged as a well-documented example of natural selection largely as a result of H.B.D. Kettlewell's pioneering research on the subject in the early 1950s. It was quickly picked up by American biology textbooks starting in the early 1960s and became ubiquitous throughout the 1970s,…
Descriptors: Biology, Textbooks, Evolution, Phenomenology
Marcelos, Maria Fatima; Nagem, Ronaldo L. – Science & Education, 2010
Our objective is to contribute to the teaching of Classical Darwinian "Evolution" by means of a study of analogies and metaphors. Throughout the history of knowledge about "Evolution" and in Science teaching, tree structures have been used an analogs to refer to "Evolution," such as by Darwin in the "Tree of Life" passage contained in "On The…
Descriptors: Figurative Language, Logical Thinking, Evolution, Science Education
Stolberg, Tonie L. – Science & Education, 2010
This article examines what science education might be able to learn from phenomenological religious education's attempts to teach classes where students hold a plurality of religious beliefs. Recent statements as to how best to accomplish the central pedagogical concept of "learning from religion" as a vehicle for human transformation are…
Descriptors: Evolution, Religious Education, Science Teachers, Religious Factors
van Dijk, Esther M.; Reydon, Thomas A. C. – Science & Education, 2010
In this paper we present a schematic overview of the central concepts in evolutionary theory, setting them off against the background of widespread misconceptions about them. Our aim is to provide high school teachers with (1) an overview of those particular concepts that they can expect students to have difficulties with, (2) a comparison of…
Descriptors: Evolution, Scientific Concepts, Secondary School Teachers, Science Teachers
Peer reviewedOffner, Susan – American Biology Teacher, 2001
Presents a universal phylogenetic tree suitable for use in high school and college-level biology classrooms. Illustrates the antiquity of life and that all life is related, even if it dates back 3.5 billion years. Reflects important evolutionary relationships and provides an exciting way to learn about the history of life. (SAH)
Descriptors: Biology, Classification, Evolution, Higher Education
Peer reviewedAppelget, Jeanne; Matthews, Catherine E.; Hildreth, David P.; Daniel, Michael L. – Intervention in School and Clinic, 2002
This article offers a guide to teaching the history of science to students with learning disabilities and provides a lesson template designed to engage students in a specific science event from the past. Activities including hypothesis testing and an historical role-play teach the vocabulary of natural selection and evolution using the landmarked…
Descriptors: Evolution, Learning Disabilities, Lesson Plans, Science Education
Peer reviewedAlles, David L. – American Biology Teacher, 2001
Discusses the National Academy of Science's recommendations on teaching evolution and the nature of science. Describes a biology college course that uses evolution and history of life as the curriculum framework with an extensive unit on the history and philosophy of science. (Contains 14 references.) (ASK)
Descriptors: Biology, Course Descriptions, Evolution, Higher Education
Nicholas, Frank W. – 2001
The background to Charles Darwin's little-known visit to Australia, and the account of his experiences while here, provide some invaluable historical material for teaching evolution, geology, meteorology, and the determination of longitude. Indeed, by using his Australian experiences as a foundation, it is possible to explain the theory of…
Descriptors: Evolution, Experiential Learning, Foreign Countries, Geology
Peer reviewedSoutherland, Sherry A. – Science and Education, 2000
Identifies both epistemic and political shortcomings in the portrayal of science found in curricular multicultural science education. This approach denies the unique characteristics of Western science as it ignores the particular strengths of other systems of thought and has the unexpected political effect of reaffirming scientism. Discusses a…
Descriptors: Elementary Secondary Education, Evolution, Higher Education, Minority Groups
Peer reviewedJensen, Murray S.; Finley, Fred N. – Journal of Research in Science Teaching, 1996
Assesses students' learning of evolution by natural selection within four different sections of an introductory biology course where each section used a different combination of curricular materials and instruction. Reports that comparisons between sections support the use of paired problem-solving instructional strategy in conjunction with the…
Descriptors: Biology, Educational Strategies, Evolution, Higher Education
Naturescope, 1987
Provides background information on how scientists have learned about the history of the Earth, including studying fossils, dating rocks, and tracing geological movements. Included are teaching activities about prehistoric animals, state fossils, tracing animal movement and evolution, and discovering fossils. Contains reproducible handouts and…
Descriptors: Animals, Botany, Elementary Education, Elementary School Science
Rudge, David W.; Howe, Eric M. – Science Teacher, 2004
Many science teachers recognize that teaching aspects of the history of science helps students learn science content and the nature of science (NOS). The use of history can potentially humanize science, help students refine their critical thinking skills, promote a deeper understanding of scientific concepts, and address common student…
Descriptors: Teaching Methods, Scientific Concepts, Scientific Principles, Misconceptions

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