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William F. McComas – American Biology Teacher, 2024
This article introduces and contextualizes the content of this theme issue of "The American Biology Teacher" (ABT), which focuses on integrating elements of the history of science (HOS) in biology instruction. Such orientations can enhance students' understanding of core biological concepts and the process of scientific discovery by…
Descriptors: Biology, Science Instruction, Science History, Scientific Concepts
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Field M. Watts; Jon-Marc G. Rodriguez – Journal of Chemical Education, 2023
Course-based undergraduate research experiences (CUREs) are being increasingly implemented to broaden the opportunities for undergraduate students to engage in authentic research across STEM disciplines including chemistry. The present review synthesizes the literature on chemistry CUREs, encompassing 68 articles published between 2016 and 2022…
Descriptors: Undergraduate Students, Chemistry, Science Instruction, Science Teachers
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Michelle Honeyford; Jennifer Watt; Sarah Roche; Noah Cain; Katya Ferguson – Pedagogies: An International Journal, 2025
In the complexities of current realities, we are a writing collective of educators interested in placing hope in the present, particularly in composing practices and pedagogies. Drawing on a post-qualitative methodology, we weave together examples of practices of dance/movement, digital movie-making, and soil artivism with specific concepts of…
Descriptors: Elementary Secondary Education, Elementary School Teachers, Secondary School Teachers, Teacher Educators
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Gordon, Marshall – Curriculum Inquiry, 1978
For the mathematics experience to be liberating, the curriculum must share how and why mathematical knowledge is developed, with special emphasis on its grounding in belief, intuition and subjectivity, and facilitate our understanding of the world in which we live and create and the beliefs we act upon. (Author)
Descriptors: Curriculum Development, Discovery Processes, Elementary Secondary Education, Instructional Improvement
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Melander, Kathleen M.; Walker, Nora M. – Education, 1984
Describes the development and rationale of a hands-on, process-oriented elementary science curriculum that emphasizes decision making, problem solving, current issues, and the human element in science and technology. (JHZ)
Descriptors: Curriculum Design, Curriculum Development, Discovery Processes, Elementary Education
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Labbett, B. D. C. – Journal of Curriculum Studies, 1979
The two-part essay explores problems of developing history curricula and provides a specification for building history curricula that confronts problems about the nature and value of history. Propositions which underlie the specification are also presented. (KC)
Descriptors: Curriculum Development, Curriculum Problems, Discovery Processes, Elementary Secondary Education
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DeBruin, Jerome E.; And Others – Science and Children, 1979
Describes a 10 week Saturday program in open-ended, hands-on science activity. Sessions emphasize three stages of learning: (1) messing about with concrete materials; (2) introduction of new equipment and probing questions; and (3) large group sharing session. Discusses the teacher's role and extended activities. (MA)
Descriptors: Curriculum Development, Curriculum Enrichment, Discovery Processes, Elementary Secondary Education
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Katz, Lilian G. – Young Children, 1993
Proposes replacing the term child-centered with child-sensitive to indicate more accurately the major role of teachers in determining the curriculum and activities offered to young children. In contrast to the laissez-faire, child-indulgent approach of many child-centered programs, a child sensitive approach would encourage teachers to capitalize…
Descriptors: Childhood Interests, Curriculum Development, Developmentally Appropriate Practices, Discovery Learning
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Wagner, Paul A. – Science Education, 1983
Explains cognitive basis for change in science paradigms using Watson-Crick DNA model to illustrate concepts of "normal" versus "revolutionary" science. Examines these concepts in light of teacher preception of science, and discusses implications for the practice of science education. (JM)
Descriptors: Cognitive Processes, Convergent Thinking, Critical Thinking, Curriculum Development