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Produktbild: Heterogeneous Contributions to Numerical Cognition

Heterogeneous Contributions to Numerical Cognition Learning and Education in Mathematical Cognition

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

27.05.2021

Herausgeber

Wim Fias + weitere

Verlag

Elsevier Science & Technology

Seitenzahl

422

Maße (L/B/H)

23,2/15,6/2,6 cm

Gewicht

794 g

Sprache

Englisch

ISBN

978-0-12-817414-2

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

27.05.2021

Herausgeber

Verlag

Elsevier Science & Technology

Seitenzahl

422

Maße (L/B/H)

23,2/15,6/2,6 cm

Gewicht

794 g

Sprache

Englisch

ISBN

978-0-12-817414-2

EU-Ansprechpartner

Elsevier B.V.
Radarweg 29
1043 NX Amsterdam
NL
productsafety@elsevier.com

Herstelleradresse

Elsevier Science & Technology
London Wall 125
EC2Y 5AS London
GB
tradeorders@elsevier.com

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  • Produktbild: Heterogeneous Contributions to Numerical Cognition
  • 1. From quantical to numerical cognition: A crucial passage for understanding the nature of mathematics and its origins
     
    SECTION I Advanced mathematics, reasoning and problem solving
    2. Toward an inhibitory control theory of the reasoning brain in development
    3. Maths and logic: Relationships across development
    4. Cerebral underpinning of advanced mathematical activity

    SECTION II Math education
    5. Looking at the development of mathematical knowledge from the perspective of the framework theory approach to conceptual change: Lessons for mathematics education
    6. Subtraction by addition: A remarkably natural and clever way to subtract?
    7. Probing the neural basis rational numbers: The role of inhibitory control and magnitude representations
    8. Learning and education in numerical cognition: We do need education

    SECTION III Intervention studies
    9. Supporting early numeracy: The role of spontaneous mathematical focusing tendencies in learning and instruction
    10. Developmental course of numerical learning problems
    in children and how to prevent dyscalculia: A summary of the longitudinal examination of children from kindergarten to secondary school
    11. Neurocognitive mechanisms of numerical intervention studies: The case of brain stimulation
    12. Intervention studies in math: A metareview

    SECTION IV Math deficiencies and difficulties
    13. The complex pathways toward the development of math anxiety and links with achievements
    14. What predicts the development of fact retrieval speed and calculation accuracy in children with (and without) arithmetic disabilities (AD). What can we learn from longitudinal studies?
    15. Early neurocognitive development of dyscalculia
    16. Early difficulties in numerical cognition