Piaget's Genetic Epistemology for Mathematics Education Research. Research in Mathematics Education

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Bibliographic Details
Title: Piaget's Genetic Epistemology for Mathematics Education Research. Research in Mathematics Education
Language: English
Authors: Paul Christian Dawkins, Amy J. Hackenberg, Anderson Norton
Source: Research in Mathematics Education. 2024.
Availability: Springer. Available from: Springer Nature. One New York Plaza, Suite 4600 New York, NY 10004. Tel: 800-777-4643; Tel: 212-460-1500; Fax: 212-460-1700; e-mail:customerservice@springernature.com; Web site: https://www.springer.com/gp/education-language
Peer Reviewed: Y
Page Count: 617
Publication Date: 2024
Document Type: Book
Collected Works - General
Education Level: Early Childhood Education
Descriptors: Mathematics Education, Educational Research, Piagetian Theory, Learning Processes, Epistemology, Reflection, Educational Theories, Educational Psychology, Equal Education, Special Education, Early Childhood Education, Statistics Education, Genetics, Learning Theories, Constructivism (Learning)
DOI: 10.1007/978-3-031-47386-9
ISSN: 2570-4729
Abstract: The book provides an entry point for graduate students and other scholars interested in using the constructs of Piaget's genetic epistemology in mathematics education research. Constructs comprising genetic epistemology form the basis for some of the most well-developed theoretical frameworks available for characterizing learning, particularly in mathematics. The depth and complexity of Piaget's work can make it challenging to find adequate entry points for learners, not least because it requires a reorientation regarding the nature of mathematical knowledge itself. This volume gathers leading scholars to help address that challenge. The main section of the book presents key Piagetian constructs for mathematics education research such as schemes and operations, figurative and operative thought, images and meanings, and decentering. The chapters that discuss these constructs include examples from research and address how these constructs can be used in research. There are two chapters on various types of reflective abstraction, because this construct is Piaget's primary tool for characterizing the advancement of knowledge. The later sections of the book contain commentaries reflecting on the contributions of the body of theory developed in the first section. They connect genetic epistemology to current research domains such as equity and the latest in educational psychology. Finally, the book closes with short chapters portraying how scholars are using these tools in specific arenas of mathematics education research, including in special education, early childhood education, and statistics education.
Abstractor: As Provided
Entry Date: 2024
Accession Number: ED640016
Database: ERIC
Description
Abstract:The book provides an entry point for graduate students and other scholars interested in using the constructs of Piaget's genetic epistemology in mathematics education research. Constructs comprising genetic epistemology form the basis for some of the most well-developed theoretical frameworks available for characterizing learning, particularly in mathematics. The depth and complexity of Piaget's work can make it challenging to find adequate entry points for learners, not least because it requires a reorientation regarding the nature of mathematical knowledge itself. This volume gathers leading scholars to help address that challenge. The main section of the book presents key Piagetian constructs for mathematics education research such as schemes and operations, figurative and operative thought, images and meanings, and decentering. The chapters that discuss these constructs include examples from research and address how these constructs can be used in research. There are two chapters on various types of reflective abstraction, because this construct is Piaget's primary tool for characterizing the advancement of knowledge. The later sections of the book contain commentaries reflecting on the contributions of the body of theory developed in the first section. They connect genetic epistemology to current research domains such as equity and the latest in educational psychology. Finally, the book closes with short chapters portraying how scholars are using these tools in specific arenas of mathematics education research, including in special education, early childhood education, and statistics education.
ISSN:2570-4729
DOI:10.1007/978-3-031-47386-9