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Peer reviewedDavey, Geoff; Holliday, Jack – Australian Mathematics Teacher, 1992
Describes five skills underpinning the understanding of geometry for primary and lower secondary mathematics students. Skill categories identified include (1) visual; (2) verbal; (3) drawing; (4) logical; and (5) application. Gives examples of skills appropriate for Van Hiele levels 1-3. (MDH)
Descriptors: Cognitive Development, Developmental Stages, Drafting, Elementary Secondary Education
Peer reviewedBrowning, Christine A.; Channell, Dwayne E. – Mathematics Teacher, 1992
Presents a series of four worksheets to develop students' perception of spatial relationships. The tasks require students to use cubes to build models and describe the models by representing the front, right, and top views on grid paper. Provides reproducible worksheets. (MDH)
Descriptors: Abstract Reasoning, Cooperative Learning, Discovery Learning, Elementary Secondary Education
Peer reviewedTversky, Barbara; And Others – Cognitive Psychology, 1991
To study graphic representation in different cultures, 1,279 children, adolescents, and university students from English, Hebrew, and Arabic language cultures produced graphic representations of spatial, temporal, quantitative, and preference relations in three experiments. Findings are discussed in relation to subjects' age and language culture.…
Descriptors: Adults, Age Differences, Arabic, Child Development
Peer reviewedEaton, Gale – Journal of Youth Services in Libraries, 1991
Discussion of spatial skills focuses on a quasi-experimental field study that was designed to test the possibility that elementary and secondary school library users' success in stack searches could be related to a particular spatial skill, i.e., the ability to solve large-scale mental-rotation and perspective-taking problems. (13 references) (LRW)
Descriptors: Cognitive Ability, Cognitive Development, Dewey Decimal Classification, Elementary Secondary Education
Peer reviewedBippert, Judy – Mathematics Teacher, 1993
Presents activities designed to give students an opportunity to solve concrete problems involving spatial relationships and logical thinking utilizing hands-on manipulatives. Provides teacher instructions and four reproducible worksheets. (MDH)
Descriptors: Geometric Concepts, Geometric Constructions, Learning Activities, Lesson Plans
Different Aspects in Designing Mathematics Education: Three Examples from the Freudenthal Institute.
Peer reviewedVan den Brink, Jan – Educational Studies in Mathematics, 1993
Offers 3 teaching designs developed for 12- to 16-year-old pupils taking into account personal differences in gender, culture, knowledge, and use of calculators. The designs concern the representation of three-dimensional objects in the plane, directions and great circles on the sphere, and exploration of the integrating calculator. (Contains 31…
Descriptors: Calculators, Cultural Differences, Geometric Concepts, Knowledge Level
Peer reviewedMoreno, Roxana; Mayer, Richard E. – Cognition and Instruction, 1999
Two experiments examined the use of a number-line metaphor presented with interactive multimedia to help sixth graders with varying levels of mathematics achievement or spatial ability build connections between addition and subtraction of signed numbers and existing conceptual knowledge. Results indicated that use of multiple representations…
Descriptors: Addition, Comparative Analysis, Computer Uses in Education, Difficulty Level
Tretter, Thomas R.; Jones, M. Gail; Andre, Thomas; Negishi, Atsuko; Minogue, James – Journal of Research in Science Teaching, 2006
To reduce curricular fragmentation in science education, reform recommendations include using common, unifying themes such as scaling to enhance curricular coherence. This study involved 215 participants from five groups (grades 5, 7, 9, and 12, and doctoral students), who completed written assessments and card sort tasks related to their…
Descriptors: Measures (Individuals), Educational Change, Science Education, Science Curriculum
Washington, James M., Jr. – 1997
This paper documents issues in converting the Figure Classification Test to the computer. The purpose of the test, which is almost entirely visual, is to determine the subject's ability to discover rules via the visual/spatial environment. The methodology of the paper-and-pencil Figure Classification Test is as follows: the subject views a series…
Descriptors: Authoring Aids (Programming), Computer Assisted Testing, Computer Interfaces, Computer System Design
Chapman, Carolyn – 1993
This guide provides a rationale and approach for translating Howard Gardner's theory of multiple intelligences into classroom practice. Chapter 1 explains Gardner's theory and gives the definitions of the seven intelligences he identifies: verbal/linguistic, musical/rhythmic, logical/mathematical, visual/spatial, bodily/kinesthetic, intrapersonal,…
Descriptors: Alternative Assessment, Class Activities, Classroom Environment, Classroom Techniques
Reese, Clyde M.; Jerry, Laura; Ballator, Nada – 1997
The National Assessment of Educational Progress (NAEP) is the only nationally representative and continuing assessment of what students in the United States know and can do in various academic subjects. The 1996 NAEP in mathematics assessed the current level of mathematical achievement as a mechanism for informing education reform. In 1996, 44…
Descriptors: Algebra, Elementary Education, Functions (Mathematics), Geometry
Reese, Clyde M.; Jerry, Laura; Ballator, Nada – 1997
The National Assessment of Educational Progress (NAEP) is the only nationally representative and continuing assessment of what students in the United States know and can do in various academic subjects. The 1996 NAEP in mathematics assessed the current level of mathematical achievement as a mechanism for informing education reform. In 1996, 44…
Descriptors: Algebra, Elementary Education, Functions (Mathematics), Geometry
Reese, Clyde M.; Jerry, Laura; Ballator, Nada – 1997
The National Assessment of Educational Progress (NAEP) is the only nationally representative and continuing assessment of what students in the United States know and can do in various academic subjects. The 1996 NAEP in mathematics assessed the current level of mathematical achievement as a mechanism for informing education reform. In 1996, 44…
Descriptors: Algebra, Elementary Education, Functions (Mathematics), Geometry
Reese, Clyde M.; Jerry, Laura; Ballator, Nada – 1997
The National Assessment of Educational Progress (NAEP) is the only nationally representative and continuing assessment of what students in the United States know and can do in various academic subjects. The 1996 NAEP in mathematics assessed the current level of mathematical achievement as a mechanism for informing education reform. In 1996, 44…
Descriptors: Algebra, Elementary Education, Functions (Mathematics), Geometry
Reese, Clyde M.; Jerry, Laura; Ballator, Nada – 1997
The National Assessment of Educational Progress (NAEP) is the only nationally representative and continuing assessment of what students in the United States know and can do in various academic subjects. The 1996 NAEP in mathematics assessed the current level of mathematical achievement as a mechanism for informing education reform. In 1996, 44…
Descriptors: Algebra, Elementary Education, Functions (Mathematics), Geometry

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