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Czerniak, Charlene; McDonald, Jacqueline – School Science and Mathematics, 1998
Presents an activity that uses ratio and proportions to create scale model and life-sized drawings of sharks. (ASK)
Descriptors: Fishes, Integrated Activities, Mathematics Activities, Middle Schools
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Muth, K. Denise; Hart, Laurie E.; LeTendre, Gerald; Ference, Ruth; Naumowicz, Darcy – Research in Middle Level Education Quarterly, 1998
Describes the role of cross-disciplinary research in practice and policy for middle-grades education. Argues that for a research agenda to have an impact, it must be a coordinated effort among educators, content area specialists, health educators, psychologists, anthropologists, sociologists, and medical researchers; and coordination must be…
Descriptors: Educational Cooperation, Educational Research, Integrated Activities, Intellectual Disciplines
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Linn, Marcia C.; Eylon, Bat-Sheva – Journal of Science Education and Technology, 2000
Contrasts spontaneous and reflective knowledge integration instruction delivered using a computer learning environment to enhance understanding of displaced volume. Distinguishes the impact of instruction on students who believed scientific phenomena are governed by principles (cohesive beliefs) versus students who believed that science is a…
Descriptors: Animation, Attitudes, Computer Software, Evaluation
National Aquarium in Baltimore, MD. Dept. of Education. – 1997
"Living in Water" is a classroom-based, scientific study of water, aquatic environments, and the plants and animals that live in water. The lessons in this curriculum integrate basic physical, biological, and earth sciences, and mathematics. The integration of language arts is also considered essential to its success. These lessons do not require…
Descriptors: Biological Sciences, Biology, Classification, Earth Science
Malouf, David B.; And Others – 1990
This study evaluated an instructional model entitled "Integrating Computer Software into the Functional Mathematics Curriculum: A Diagnostic Approach," which was intended to prepare middle-school special education students for the Maryland Functional Mathematics Test. The model consisted of eight major components: pretests/posttests, diagnostic…
Descriptors: Computer Assisted Instruction, Computer Software, Diagnostic Teaching, Disabilities
Zorfass, Judith; And Others – 1991
This report describes the development and field test of "Make It Happen!," a school-based approach to integrating technology into the middle school curriculum. This activity, conducted between October 1989 and May 1991, constituted Phase II of a 5-year study of technology integration for mildly handicapped students in four middle schools…
Descriptors: Computer Assisted Instruction, Curriculum Development, Demonstration Programs, Federal Programs
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Tracy, Dyanne M. – School Science and Mathematics, 1993
Presents a historical and content background of the metric system. Describes 1 of a series of integrated hands-on lessons for grades 4-7 to teach the measuring of volume with metrics. Provides a worksheet for the lesson and a concept map of the metric system. (MDH)
Descriptors: Discovery Learning, Estimation (Mathematics), Integrated Activities, Intermediate Grades
Zorfass, Judith; And Others – 1989
This final report documents Phase I of a federally funded, naturalistic study of how middle schools can integrate technology into mainstream instruction for mildly handicapped students. Phase I of the study, carried out from October 1986 through September 1989, examined teacher practices that create successful, computer-supported learning…
Descriptors: Administrator Role, Computer Assisted Instruction, Context Effect, Demonstration Programs
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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)