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Showing 1 to 15 of 27 results Save | Export
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Drake, Richard L.; McBride, Jennifer M.; Pawlina, Wojciech – Anatomical Sciences Education, 2014
Curricular changes continue at United States medical schools and directors of gross anatomy, microscopic anatomy, neuroscience/neuroanatomy, and embryology courses continue to adjust and modify their offerings. Developing and supplying data related to current trends in anatomical sciences education is important if informed decisions are going to…
Descriptors: Medical Education, Higher Education, Science Education, Anatomy
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Ghattas, Nadira I.; Carver, Jeffrey S. – Research in Science & Technological Education, 2012
Background: In this era of rapid technical advancement, there are growing debates around the idea of nanotechnology, which are both timely and controversial. Nanotechnology materials are being utilized in our daily lives in many ways, often without consumer knowledge. Due to the explosion of nanotechnology applications, there is a necessity to…
Descriptors: Educational Policy, School Activities, Ethics, Elementary Secondary Education
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Voyles, Martha M.; Wright, E. Ronald – Science Education, 1975
Describes a course designed to teach the fundamental microbiological principles common to all disciplines. The course is designed to meet individual student needs through self-directed lab work and various minicourses on topics in applied microbiology. (GS)
Descriptors: College Science, Course Content, Course Descriptions, Curriculum Development
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Holliday, William G.; And Others – Science Education, 1985
Presents a summary of science education research for 1983. The 422 reports reviewed were placed into one of seven clusters for analysis/discussion: learning and instruction; curriculum development and evaluation; cognitive development studies; test development; teacher education; science education research completed in foreign countries; and…
Descriptors: Cognitive Development, Curriculum Development, Elementary Secondary Education, Higher Education
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Zeidler, Dana L. – Science Education, 1984
Develops a more thorough rationale for the implementation of an interdisciplinary approach to science education. This rationale entails arguments stressing the need for education reform and summarizes the most viable approaches and important considerations in responding to that need. (JN)
Descriptors: Curriculum Development, Higher Education, Interdisciplinary Approach, Moral Issues
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Berkheimer, Glenn D.; Lott, Gerald W. – Science Education, 1984
Determined perceptions of science education faculty and graduate students (N=195) concerning how the relative emphasis of major science education objectives should change in grades K-12. Also determined extent of agreement among subjects on the emphases and identified extent to which personal characteristics of subjects related to differences in…
Descriptors: Curriculum Development, Educational Objectives, Elementary Secondary Education, Graduate Students
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Gardner, Marjorie H.; Yager, Robert E. – Science Education, 1983
Discusses the dangers of quick-fix solutions to the current crisis in science education and the need for a philosophical base and theoretical teaching strategies. Proposes science and mathematics study as requirements for grades K-14 and implementation of a vertically articulated curriculum. Concludes by calling for pluralistic response to the…
Descriptors: Articulation (Education), Change Strategies, College Science, Curriculum Design
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Seale, T. S. – Science Education, 1983
Encourages science educators to consider engaging students in science projects resulting in socially useful products. Educational presentations meant to perform social functions (soft products) and preparation/execution of environmental manipulations (hard products) such as pollution analysis, plant breeding, or administering medical tests are…
Descriptors: College Science, Curriculum Development, Environmental Education, Higher Education
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Finley, Fred N.; Stewart, James – Science Education, 1982
Discusses the meaning of Schwab's "substantive structures" of a discipline in terms of science philosophy. Presents three techniques for representing substantive structures and discusses some of their uses in science education research. (SK)
Descriptors: College Science, Concept Formation, Curriculum Development, Epistemology
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Blum, Abraham A.; And Others – Science Education, 1981
Describes the development and validation of the Curriculum Adaptation Scheme (CAS) to aid curriculum developers in their curriculum adaptation endeavors. Provides a copy of the instrument. (DS)
Descriptors: Curriculum Development, Curriculum Evaluation, Higher Education, Instructional Development
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Lucas, Keith B. – Science Education, 1981
Discusses five major objectives projected for science education based on current literature regarding science curriculum and development. Literature sources include "Small is Beautiful,""Education and the Spirit of Science," and the works of two curriculum developers, Theodore Brameld and Ralph Tyler. (CS)
Descriptors: College Science, Curriculum Development, Educational Objectives, Elementary School Science
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Reeves, W. J. – Science Education, 1980
Described is science content within an interdisciplinary core curriculum at the New School of Liberal Arts, Brooklyn College. The first two years of undergraduate work consist of art, literature, history, and science within a choice of five time periods. Also offered is a science and humanities course. (DS)
Descriptors: College Curriculum, College Science, Core Curriculum, Curriculum
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Hlebowitsh, Peter S.; Wraga, William G. – Science Education, 1989
Criticized are the National Science Foundation (NSF) funded curriculum reforms during the post-Sputnik epoch. The parallels and contrasts between the proposals of today's NSF and those supported during the late 1950s and early 1960s are outlined. The proper role of a policymaking body in American education is recommended. (YP)
Descriptors: Curriculum Development, Elementary Secondary Education, Higher Education, Policy Formation
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Okebukola, Peter; Akpan, Ben B. – Science Education International, 1997
Explains the concept of a topic study, how it meets the needs of teachers seeking to integrate their teaching, and how it is especially well suited for environmental education. Outlines curriculum for a topic study on the greenhouse effect and ozone layer depletion. (DDR)
Descriptors: Active Learning, Curriculum Development, Elementary Secondary Education, Environmental Education
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Tisher, Richard P., Ed. – Research in Science Education, 1985
This publication contains 24 studies which focus on: the fostering of inquiry in secondary school science laboratories; realistic expectations for traditional laboratory work; a content-based, college-level science course for all students; understanding learning at the classroom level; transitions and student task involvement; a project to…
Descriptors: Academic Achievement, Concept Formation, Concept Mapping, Curriculum Development
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