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John H. Bickford III – Science & Education, 2024
Teaching and learning relies on age-appropriate, credible formal (e.g., textbooks, textbook supplements) and informal (e.g., trade-books) curricular texts. Previous research traced American publishers' self-censorship about human evolution within twentieth-century textbooks. This study, informed by the latest scientific understandings, engaged in…
Descriptors: Textbooks, Biology, Science Instruction, Textbook Content
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Schiller, Ellen; Melin, Jacque; Bair, Mary – Science and Children, 2016
With the release of the "Next Generation Science Standards," many schools are reexamining the science materials they are using. Textbook companies and kit developers are eager to meet the demand for "NGSS"-aligned teaching materials. Teacher may have been asked to serve on a science curriculum committee, or to evaluate current…
Descriptors: Science Materials, Instructional Materials, Science Curriculum, Science Teachers
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Davis, Elizabeth A.; Janssen, Fred J. J. M.; Van Driel, Jan H. – Studies in Science Education, 2016
Curriculum materials serve as a key conceptual tool for science teachers, and better understanding how science teachers use these tools could help to improve both curriculum design and theory related to teacher learning and decision-making. The authors review the literature on teachers and science curriculum materials. The review is organised…
Descriptors: Science Teachers, Science Curriculum, Science Education, Science Instruction
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Penuel, William; Fishman, Barry J.; Gallagher, Lawrence P.; Korbak, Christine; Lopez-Prado, Bladimir – Science Education, 2009
Implementation of science curriculum materials has been a fundamental challenge in science education for decades. Policy researchers have argued that alignment of standards, curriculum, and assessment are the key to supporting implementation. This paper focuses on teachers' perceptions of curricular alignment and on curriculum implementation using…
Descriptors: Educational Change, Science Curriculum, Curriculum Implementation, Science Instruction
Coburn, David A. – Instructior, 1972
In the science curriculum, use of a cemetery offers unlimited potential for developing the skills of collection, collation, and interpretation of qualitative and quantitative data." (Author)
Descriptors: Climate, Geology, Science Activities, Science Curriculum
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Lovitt, Thomas; And Others – Remedial and Special Education (RASE), 1986
The study investigated the effects of an adapted science curriculum featuring vocabulary exercises and framed outlines on the performance of 202 regular and mildly handicapped seventh graders. Data generally showed that the scores of handicapped as well as nonhandicapped students were better when the chapters were modified. (Author/CL)
Descriptors: Curriculum Development, Grade 7, Junior High Schools, Learning Disabilities
Avanthakrishnan, M. V. – Visual Education, 1973
Descriptors: Communications, Educational Media, Material Development, Overhead Projectors
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Science and Children, 1979
Presents an analysis of a recently published science textbook for grades 1 to 6. An evaluation of the process and content of the student text and teachers guide are given. (SA)
Descriptors: Content Analysis, Instructional Materials, Reading Materials, Science Curriculum
Neuman, Donald B. – 1970
The effects of a series of science lessons on reading readiness were investigated. Kindergarten children from three schools in central-city Milwaukee were the subjects. Twenty children from the University of Wisconsin-Milwaukee Laboratory School were used to try out the procedures and materials used in the prepared science lessons. Twenty children…
Descriptors: Kindergarten Children, Reading Achievement, Reading Readiness, Reading Research
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Dekkers, John; Young, Donald B. – Science Teacher, 1981
Described is Western Australia's elementary and secondary science education programs relative to science content, emphasis on science, instructional goals, and science curriculum materials utilized. School enrollments and the demand for highly trained technical personnel in Western Australia are also discussed. (DS)
Descriptors: Elementary Secondary Education, Enrollment Trends, Instructional Materials, Science Curriculum
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Barrow, Lloyd H.; Germann, Paul – Science Education, 1987
Describes a survey which was designed to obtain information on acid rain education. Reviews results pertaining to instructional time, instructional topics, use of labs from a common resource guide, and preference of materials related to acid rain education. (ML)
Descriptors: Environmental Education, Instructional Materials, Physical Environment, Science Curriculum
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Zeitler, William R. – Science and Children, 1980
Discusses the ELEMENTARY SCIENCE program for grades K-6, describing concepts that the program emphasizes and materials used for each grade level. (CS)
Descriptors: Elementary Education, Elementary School Science, Science Course Improvement Projects, Science Curriculum
Faghri, Amir – Engineering Education, 1987
Describes a program in which senior engineering students are given the opportunity to design, make, and test apparatus intended for an upper-level teaching laboratory. Discusses such projects as a vapor compressor test stand with refrigerant mass flow measurement, a double-walled concentric annular heat pipe, and a vacuum filling station. (TW)
Descriptors: College Science, Engineering Education, Higher Education, Science Curriculum
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May, P. F.; And Others – School Science Review, 1980
Describes the British Gypsum, a school-industry science project, designed to link the school with local industry. Teaching strategy, some experiments, and evaluation of the project are also included. (HM)
Descriptors: Industry, Science Activities, Science Curriculum, Science Education
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Fourez, Gerard – Bulletin of Science, Technology & Society, 1988
This article analyzes how science classes carry ideological elements and how that has ethical and deontological consequences with respect to science teaching. Provided are some examples of ideologizing, presenting a worldview, biased contents, and biased image of science. (YP)
Descriptors: Ideology, Philosophy, Science and Society, Science Curriculum
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