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Constructing Representations to Learn in Science

List Price: $65.00
SKU:
9789462092013
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  • Product Details

    Author:
    Russell Tytler, Vaughan Prain, Peter Hubber, Bruce Waldrip
    Format:
    Paperback
    Pages:
    218
    Publisher:
    Brill (January 1, 2013)
    Imprint:
    Brill
    Language:
    English
    Audience:
    Professional and scholarly
    ISBN-13:
    9789462092013
    ISBN-10:
    946209201X
    Weight:
    11.04oz
    File:
    TWO RIVERS-PERSEUS-Metadata_Only_Perseus_Distribution_Customer_Group_Metadata_20260319172121-20260319.xml
    Folder:
    TWO RIVERS
    List Price:
    $65.00
    Country of Origin:
    Netherlands
    As low as:
    $50.05
    Publisher Identifier:
    P-PER
    Discount Code:
    A
  • Overview

    Current research into student learning in science has shifted attention from the traditional cognitivist perspectives of conceptual change to socio-cultural and semiotic perspectives that characterize learning in terms of induction into disciplinary literacy practices. This book builds on recent interest in the role of representations in learning to argue for a pedagogical practice based on students actively generating and exploring representations. The book describes a sustained inquiry in which the authors worked with primary and secondary teachers of science, on key topics identified as problematic in the research literature. Data from classroom video, teacher interviews and student artifacts were used to develop and validate a set of pedagogical principles and explore student learning and teacher change issues. The authors argue the theoretical and practical case for a representational focus. The pedagogical approach is illustrated and explored in terms of the role of representation to support quality student learning in science. Separate chapters address the implications of this perspective and practice for structuring sequences around different concepts, reasoning and inquiry in science, models and model based reasoning, the nature of concepts and learning, teacher change, and assessment. The authors argue that this representational focus leads to significantly enhanced student learning, and has the effect of offering new and productive perspectives and approaches for a number of contemporary strands of thinking in science education including conceptual change, inquiry, scientific literacy, and a focus on the epistemic nature of science.