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Varghese, Thomas – School Science and Mathematics, 2011
The National Council of Teachers of Mathematics calls for an increased emphasis on proof and reasoning in school mathematics curricula. Given such an emphasis, mathematics teachers must be prepared to structure curricular experiences so that students develop an appreciation for both the value of proof and for those strategies that will assist them…
Descriptors: Mathematical Logic, Skill Development, Mathematical Applications, Mathematical Models
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Ozel, Serkan; Yetkiner, Zeynep Ebrar; Capraro, Robert M. – School Science and Mathematics, 2008
Technology integration in mathematics classrooms is important to the field of education, not only because today's society is becoming more and more advanced and reliant upon technology but also because schools are beginning to embrace technology as an essential part of their curricula. The Principles and Standards for School Mathematics (National…
Descriptors: Elementary Secondary Education, Learning Strategies, Technology Integration, Educational Technology
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Li, Yeping – School Science and Mathematics, 2007
School curriculum and its impact on teaching and learning have received more and more research attention both in the United States and in the international context. For example, the Third International Mathematics and Science Studies (TIMSS) took curriculum and its different forms in the process of curriculum transformation as a guideline to…
Descriptors: Mathematics Instruction, Curriculum Research, Curriculum Development, Teacher Improvement
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Anderson, Celia Rousseau; Hoffmeister, April M. – School Science and Mathematics, 2007
This article describes a professional development course intended to improve the content understanding of middle school mathematics teachers. The design of the course included three professional learning strategies: problem solving, examination of student thinking, and discussion of research. The concepts studied in the course included multi-digit…
Descriptors: Mathematics Teachers, Professional Development, Learning Strategies, Mathematics Instruction
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Dixon, Juli K. – School Science and Mathematics, 1997
Investigates the effects of a dynamic instructional environment and visualization on eighth-grade students' construction of reflection and rotation concepts. Also studies the effects of the environment on students' two- and three-dimensional visualization. (Author/CCM)
Descriptors: Concept Formation, Grade 8, Junior High Schools, Learning Strategies
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Thompson, Cathy L. – School Science and Mathematics, 1989
Discusses the advantages of using discrepant events in elementary school science classrooms in terms of motivation and problem solving skills. Describes the materials, procedures, and reasons behind five discrepant activities. (YP)
Descriptors: Cognitive Development, Cognitive Structures, Elementary School Science, Laboratory Experiments
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Berlin, Donna F.; White, Arthur L. – School Science and Mathematics, 1994
Discusses six aspects of the Berlin-White Integrated Science and Mathematics Model developed to address the need for a definition of the integration of science and mathematics education. These aspects are ways of learning; ways of knowing; process and thinking skills; content knowledge; attitudes and perceptions; and teaching strategies. (MKR)
Descriptors: Cognitive Style, Elementary Secondary Education, Epistemology, Integrated Curriculum
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Miller, L. Diane; England, David A. – School Science and Mathematics, 1989
Describes a study in a large metropolitan high school to ascertain what influence the use of regular writing in algebra classes would have on students' attitudes towards algebra and their skills in algebra. Reports the simpler and more direct the writing topics the better. (MVL)
Descriptors: Algebra, Classroom Research, Content Area Writing, Learning Strategies
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Sanders, Mark – School Science and Mathematics, 1994
Discusses the Technology, Science, Mathematics Integration Project's technological problem-solving method, briefly describes 15 activities and the corresponding technology, science, and mathematics content involved (including 1 detailed example), and proposes a general structure of the activities and research in support of this approach. (MKR)
Descriptors: Alternative Assessment, Cognitive Style, Competition, Constructivism (Learning)