Investigating Participant Structures in the Context of Science Instruction: A Special Issue of Cognition and Instruction

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First Published in 2004. Routledge is an imprint of Taylor & Francis, an informa company.
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Publisher
Routledge
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Published on
Jul 16, 2014
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Pages
112
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ISBN
9781135479299
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Language
English
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Genres
Education / Elementary
Education / General
Education / Teaching Methods & Materials / General
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Content Protection
This content is DRM protected.
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Available on Android devices
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Eligible for Family Library

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Richard Lehrer
This volume reflects an appreciation of the interactive roles of subject matter, teacher, student, and technologies in designing classrooms that promote understanding of geometry and space. Although these elements of geometry education are mutually constituted, the book is organized to highlight, first, the editors' vision of a general geometry education; second, the development of student thinking in everyday and classroom contexts; and third, the role of technologies.

Rather than looking to high school geometry as the locus--and all too often, the apex--of geometric reasoning, the contributors to this volume suggest that reasoning about space can and should be successfully integrated with other forms of mathematics, starting at the elementary level and continuing through high school. Reintegrating spatial reasoning into the mathematical mainstream--indeed, placing it at the core of K-12 mathematics environments that promote learning with understanding--will mean increased attention to problems in modeling, structure, and design and reinvigoration of traditional topics such as measure, dimension, and form. Further, the editors' position is that the teaching of geometry and spatial visualization in school should not be compressed into a characterization of Greek geometry, but should include attention to contributions to the mathematics of space that developed subsequent to those of the Greeks.

This volume is essential reading for those involved in mathematics education at all levels, including university faculty, researchers, and graduate students.
Isabel L. Beck
This bestselling book provides indispensable tools and strategies for explicit, systematic phonics instruction in K-3. Teachers learn effective ways to build students' decoding skills by teaching letter-sound relationships, blending, word building, multisyllabic decoding, fluency, and more. The volume is packed with engaging classroom activities, many specific examples, and research-based explanations. It offers a complete phonics assessment and clear guidelines for sequencing instruction to give every student a strong foundation for reading. More than 30 reproducible forms and word lists are included in the appendices. Purchasers get access to a Web page where they can download and print the reproducible materials in a convenient 8 1/2" x 11" size and find a wealth of supplemental teaching resources.
 New to This Edition*Six additional chapters covering key topics, including assessment, phonemic awareness, orthography, and automaticity.*A complete phonics assessment with administering and scoring guidelines.*Downloadable forms and word lists, plus a companion website with rich supplemental resources, including word/syllable cards, assessment tools, and illustrated stories featuring target words, which teachers can project or print for classroom use.*More classroom examples and "Your Turn" activities, as well as expanded word lists.

See also Bringing Words to Life, Second Edition: Robust Vocabulary Instruction and Creating Robust Vocabulary: Frequently Asked Questions and Extended Examples, by Isabel L. Beck, Margaret G. McKeown, and Linda Kucan, which provide essential tools for K-12 vocabulary instruction.

 
Richard Lehrer
This volume reflects an appreciation of the interactive roles of subject matter, teacher, student, and technologies in designing classrooms that promote understanding of geometry and space. Although these elements of geometry education are mutually constituted, the book is organized to highlight, first, the editors' vision of a general geometry education; second, the development of student thinking in everyday and classroom contexts; and third, the role of technologies.

Rather than looking to high school geometry as the locus--and all too often, the apex--of geometric reasoning, the contributors to this volume suggest that reasoning about space can and should be successfully integrated with other forms of mathematics, starting at the elementary level and continuing through high school. Reintegrating spatial reasoning into the mathematical mainstream--indeed, placing it at the core of K-12 mathematics environments that promote learning with understanding--will mean increased attention to problems in modeling, structure, and design and reinvigoration of traditional topics such as measure, dimension, and form. Further, the editors' position is that the teaching of geometry and spatial visualization in school should not be compressed into a characterization of Greek geometry, but should include attention to contributions to the mathematics of space that developed subsequent to those of the Greeks.

This volume is essential reading for those involved in mathematics education at all levels, including university faculty, researchers, and graduate students.
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