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Dual-process theories of numerical c...
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Graziano, Mario.
Dual-process theories of numerical cognition
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Dual-process theories of numerical cognitionby Mario Graziano.
作者:
Graziano, Mario.
出版者:
Cham :Springer International Publishing :2018.
面頁冊數:
x, 147 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Cognition.
電子資源:
http://dx.doi.org/10.1007/978-3-319-96797-4
ISBN:
9783319967974$q(electronic bk.)
Dual-process theories of numerical cognition
Graziano, Mario.
Dual-process theories of numerical cognition
[electronic resource] /by Mario Graziano. - Cham :Springer International Publishing :2018. - x, 147 p. :ill., digital ;24 cm. - SpringerBriefs in philosophy,2211-4548. - SpringerBriefs in philosophy..
Introduction -- Part I - The cognitive science of numbers -- Chapter I - System 1 -- Chapter II - System 2 -- Chapter III - Dissociations between system 1 and system 2 -- Part II - The transition from system 1 to system 2 -- Chapter IV - The explanations provided by neuroscientists -- Chapter V - The philosophy of cognitive science and calculus -- Chapter VI - Dual process theories for calculus -- Conclusions.
This book presents a philosophical interpretation to numerical cognition based on dual process theories and heuristics. It shows how investigations in cognitive science can shed light on issues traditionally raised by philosophers of mathematics. The analysis will also help readers to better understand the relationship between current neuroscientific research and the philosophical reflection on mathematics. The author seeks to explain the acquisition of mathematical concepts. To accomplish this, he needs to answer two questions. How can the concepts of approximate numerosity become an object of thought that is so accessible to our consciousness? How are these concepts refined and specified in such a way as to become numbers? Unfortunately, there is currently no model that can truly demonstrate the role of language in the development of numerical skills starting from approximate pre-verbal skills. However, the author details a solution to this problem: dual process theories. It is an approach widely used by theorists focusing on reasoning, decision making, social cognition, and consciousness. Here, he applies this approach to the studies on mathematical knowledge. He details the results brought about by psychological and neuroscientific studies conducted on numerical cognition by key neuroscientists. In the process, he develops the foundations of a new, potential philosophical explanation on mathematical knowledge.
ISBN: 9783319967974$q(electronic bk.)
Standard No.: 10.1007/978-3-319-96797-4doiSubjects--Topical Terms:
180665
Cognition.
LC Class. No.: BF311 / .G73 2018
Dewey Class. No.: 153
Dual-process theories of numerical cognition
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Introduction -- Part I - The cognitive science of numbers -- Chapter I - System 1 -- Chapter II - System 2 -- Chapter III - Dissociations between system 1 and system 2 -- Part II - The transition from system 1 to system 2 -- Chapter IV - The explanations provided by neuroscientists -- Chapter V - The philosophy of cognitive science and calculus -- Chapter VI - Dual process theories for calculus -- Conclusions.
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This book presents a philosophical interpretation to numerical cognition based on dual process theories and heuristics. It shows how investigations in cognitive science can shed light on issues traditionally raised by philosophers of mathematics. The analysis will also help readers to better understand the relationship between current neuroscientific research and the philosophical reflection on mathematics. The author seeks to explain the acquisition of mathematical concepts. To accomplish this, he needs to answer two questions. How can the concepts of approximate numerosity become an object of thought that is so accessible to our consciousness? How are these concepts refined and specified in such a way as to become numbers? Unfortunately, there is currently no model that can truly demonstrate the role of language in the development of numerical skills starting from approximate pre-verbal skills. However, the author details a solution to this problem: dual process theories. It is an approach widely used by theorists focusing on reasoning, decision making, social cognition, and consciousness. Here, he applies this approach to the studies on mathematical knowledge. He details the results brought about by psychological and neuroscientific studies conducted on numerical cognition by key neuroscientists. In the process, he develops the foundations of a new, potential philosophical explanation on mathematical knowledge.
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