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Titlebook: Intelligent Learning Environments: The Case of Geometry; Jean-Marie Laborde Conference proceedings 1996 Springer-Verlag Berlin Heidelberg

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书目名称Intelligent Learning Environments: The Case of Geometry
编辑Jean-Marie Laborde
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丛书名称NATO ASI Subseries F:
图书封面Titlebook: Intelligent Learning Environments: The Case of Geometry;  Jean-Marie Laborde Conference proceedings 1996 Springer-Verlag Berlin Heidelberg
描述This book is a thoroughly revised result, updated to mid-1995, of the NATO Advanced Research Workshop on "Intelligent Learning Environments: the case of geometry", held in Grenoble, France, November 13-16, 1989. The main aim of the workshop was to foster exchanges among researchers who were concerned with the design of intelligent learning environments for geometry. The problem of student modelling was chosen as a central theme of the workshop, insofar as geometry cannot be reduced to procedural knowledge and because the significance of its complexity makes it of interest for intelligent tutoring system (ITS) development. The workshop centred around the following themes: modelling the knowledge domain, modelling student knowledge, design­ ing "didactic interaction", and learner control. This book contains revised versions of the papers presented at the workshop. All of the chapters that follow have been written by participants at the workshop. Each formed the basis for a scheduled presentation and discussion. Many are suggestive of research directions that will be carried out in the future. There are four main issues running through the papers presented in this book: • knowledge ab
出版日期Conference proceedings 1996
关键词Geometrie; Intelligente Lernumgebungen; Interactive teaching; Interaktives Lernen; Lernmodelle; Lerntechn
版次1
doihttps://doi.org/10.1007/978-3-642-60927-5
isbn_softcover978-3-642-64608-9
isbn_ebook978-3-642-60927-5Series ISSN 0258-1248
issn_series 0258-1248
copyrightSpringer-Verlag Berlin Heidelberg 1996
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Modelling Geometrical Knowledge: The Case of the Student,ely. These opportunities arise from two characteristics of geometry, namely its logical structure and its potential for modelling the real world. The tension inherent in endeavouring to preserve a balance between these twin features is evident in the debates over many decades about the place of geom
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A Constructivist Model for Redesigning AI Tutors in Mathematics,per entitled . (Lesh & Kelly, in press). That study focused on a ten-week project in which real human tutors provided the intelligence behind a computer-based tutoring system. Our goal was to investigate the understandings, assumptions, and procedures that were really used in tutoring by teachers wh
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Socratic Tutoring with Software: An Example and a Prospectus,em as it is being solved. The generated graph then allows a microcomputer-based tutor to guide a student in traversing any logically permissible path through the space of semantic relations of the problem situation. The generalizability of this approach to ICAI in geometry and other mathematical dom
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