Mindstorms

Mindstorms
Author: Seymour A Papert
Publisher: Basic Books
Total Pages: 256
Release: 2020-10-06
Genre: Education
ISBN: 154167510X

In this revolutionary book, a renowned computer scientist explains the importance of teaching children the basics of computing and how it can prepare them to succeed in the ever-evolving tech world. Computers have completely changed the way we teach children. We have Mindstorms to thank for that. In this book, pioneering computer scientist Seymour Papert uses the invention of LOGO, the first child-friendly programming language, to make the case for the value of teaching children with computers. Papert argues that children are more than capable of mastering computers, and that teaching computational processes like de-bugging in the classroom can change the way we learn everything else. He also shows that schools saturated with technology can actually improve socialization and interaction among students and between students and teachers. Technology changes every day, but the basic ways that computers can help us learn remain. For thousands of teachers and parents who have sought creative ways to help children learn with computers, Mindstorms is their bible.

Handbook of Research on the Psychology of Mathematics Education

Handbook of Research on the Psychology of Mathematics Education
Author: Angel Gutiérrez
Publisher: Sense Publishers
Total Pages: 538
Release: 2006
Genre: Education
ISBN: 9077874194

Compilation of the research produced by the International Group for the Psychology of Mathematics Education (PME) since its creation in 1976. The first three sections summarize cognitively-oriented research on learning and teaching specific content areas, transversal areas, and based on technology-rich environments. The fourth section is devoted to the research on social, affective, cultural and cognitive aspects of mathematics education. The fifth section includes two chapters summarizing the PME research on teacher training and professional life of mathematics teachers.

Good Practice In Science Teaching: What Research Has To Say

Good Practice In Science Teaching: What Research Has To Say
Author: Osborne, Jonathan
Publisher: McGraw-Hill Education (UK)
Total Pages: 367
Release: 2010-05-01
Genre: Education
ISBN: 0335238580

This volume provides a summary of the findings that educational research has to offer on good practice in school science teaching. It offers an overview of scholarship and research in the field, and introduces the ideas and evidence that guide it.

Using Technology to Support Education Reform

Using Technology to Support Education Reform
Author: Barbara Means
Publisher:
Total Pages: 118
Release: 1993
Genre: Computer-assisted instruction
ISBN:

Many critics of American education see technology as an important tool in bringing about the kind of revolutionary changes called for in new reform efforts. Consequently, support for the use of technology to promote fundamental reform appears to be reaching a new high. Following an introduction describing elements of school reform, Chapter 2 describes how technology can support the kinds of student learning described in a model of reform presented in Chapter 1. Chapter 3 describes the ways that technology can support student learning as defined by education reformers, and Chapter 4 describes ways in which technology can support teacher efforts to promote student learning. Chapter 5 reviews the literature on the effects of technology on student learning outcomes. The final chapter deals with issues of implementation for projects attempting education reform supported by technology. Three tables and two figures summarize information about technology and reform. (Contains 192 references.) (SLD)

Didactics of Mathematics as a Scientific Discipline

Didactics of Mathematics as a Scientific Discipline
Author: Rolf Biehler
Publisher: Springer Science & Business Media
Total Pages: 459
Release: 2006-04-11
Genre: Education
ISBN: 030647204X

Didactics of Mathematics as a Scientific Discipline describes the state of the art in a new branch of science. Starting from a general perspective on the didactics of mathematics, the 30 original contributions to the book, drawn from 10 different countries, go on to identify certain subdisciplines and suggest an overall structure or `topology' of the field. The book is divided into eight sections: (1) Preparing Mathematics for Students; (2) Teacher Education and Research on Teaching; (3) Interaction in the Classroom; (4) Technology and Mathematics Education; (5) Psychology of Mathematical Thinking; (6) Differential Didactics; (7) History and Epistemology of Mathematics and Mathematics Education; (8) Cultural Framing of Teaching and Learning Mathematics. Didactics of Mathematics as a Scientific Discipline is required reading for all researchers into the didactics of mathematics, and contains surveys and a variety of stimulating reflections which make it extremely useful for mathematics educators and teacher trainers interested in the theory of their practice. Future and practising teachers of mathematics will find much to interest them in relation to their daily work, especially as it relates to the teaching of different age groups and ability ranges. The book is also recommended to researchers in neighbouring disciplines, such as mathematics itself, general education, educational psychology and cognitive science.

Mathematics Education in the Digital Age

Mathematics Education in the Digital Age
Author: Alison Clark-Wilson
Publisher: Routledge
Total Pages: 246
Release: 2021-05-24
Genre: Education
ISBN: 1000390799

The wide availability of digital educational resources for mathematics teaching and learning is indisputable, with some notable genres of technologies having evolved, such as graphing calculators, dynamic graphing, dynamic geometry and data visualization tools. But what does this mean for teachers of mathematics, and how do their roles evolve within this digital landscape? This essential book offers an international perspective to help bridge theory and practice, including coverage of networking theories, curriculum design, task implementation, online resources and assessment. Mathematics Education in the Digital Age details the impacts this digital age has, and will continue to have, on the parallel aspects of learning and teaching mathematics within formal education systems and settings. Written by a group of international authors, the chapters address the following themes: Mathematics teacher education and professional development Mathematics curriculum development and task design The assessment of mathematics Theoretical perspectives and methodologies/approaches for researching mathematics education in the digital age This book highlights not only the complex nature of the field, but also the advancements in theoretical and practical knowledge that is enabling the mathematics education community to continue to learn in this increasingly digital age. It is an essential read for all mathematics teacher educators and master teachers.

Transfer of Learning from a Modern Multidisciplinary Perspective

Transfer of Learning from a Modern Multidisciplinary Perspective
Author: Jose P. Mestre
Publisher: Information Age Publishing
Total Pages: 393
Release: 2005-01-01
Genre: Education
ISBN: 9781593111649

Foreword, Robert Dufresne, Jose Mestre and James M. Royer. Re-Framing the Evaluation of Education: Assessing Whether Learning Transfers Beyond the Classroom, Susan M. Barnett and Stephen J. Ceci. How Far Can Transfer Go? Making Transfer Happen Across Physical, Temporal, and Conceptual Space, Diane Halpern and Milt Hakel.

Learning Science Through Computer Games and Simulations

Learning Science Through Computer Games and Simulations
Author: National Research Council
Publisher: National Academies Press
Total Pages: 174
Release: 2011-04-12
Genre: Education
ISBN: 0309212669

At a time when scientific and technological competence is vital to the nation's future, the weak performance of U.S. students in science reflects the uneven quality of current science education. Although young children come to school with innate curiosity and intuitive ideas about the world around them, science classes rarely tap this potential. Many experts have called for a new approach to science education, based on recent and ongoing research on teaching and learning. In this approach, simulations and games could play a significant role by addressing many goals and mechanisms for learning science: the motivation to learn science, conceptual understanding, science process skills, understanding of the nature of science, scientific discourse and argumentation, and identification with science and science learning. To explore this potential, Learning Science: Computer Games, Simulations, and Education, reviews the available research on learning science through interaction with digital simulations and games. It considers the potential of digital games and simulations to contribute to learning science in schools, in informal out-of-school settings, and everyday life. The book also identifies the areas in which more research and research-based development is needed to fully capitalize on this potential. Learning Science will guide academic researchers; developers, publishers, and entrepreneurs from the digital simulation and gaming community; and education practitioners and policy makers toward the formation of research and development partnerships that will facilitate rich intellectual collaboration. Industry, government agencies and foundations will play a significant role through start-up and ongoing support to ensure that digital games and simulations will not only excite and entertain, but also motivate and educate.

The Second Handbook of Research on the Psychology of Mathematics Education

The Second Handbook of Research on the Psychology of Mathematics Education
Author: Ángel Gutiérrez
Publisher: Springer
Total Pages: 571
Release: 2016-07-23
Genre: Education
ISBN: 9463005617

Since its establishment in 1976, PME (The International Group for the Psychology of Mathematics Education) is serving as a much sought after venue for scientific debate among those at the cutting edge of the field, as well as an engine for the development of research in mathematics education. A wide range of research activities conducted over the last ten years by PME members and their colleagues are documented and critically reviewed in this handbook, released to celebrate the Group’s 40 year anniversary milestone. The book is divided into four main sections: Cognitive aspects of learning and teaching content areas; Cognitive aspects of learning and teaching transverse areas; Social aspects of learning and teaching mathematics; and Professional aspects of teaching mathematics. The selection for each chapter of a team of at least two authors, mostly located in different parts of the world, ensured effective coverage of each field. High quality was further enhanced by the scrupulous review of early chapter drafts by two leaders in the relevant field. The resulting volume with its compilation of the most relevant aspects of research in the field, and its emphasis on trends and future developments, will be a rich and welcome resource for both mature and emerging researchers in mathematics education.

E-Learning

E-Learning
Author: Bryn Holmes
Publisher: SAGE
Total Pages: 208
Release: 2006-06
Genre: Education
ISBN: 9781412911115

e-Learning is now an essential component of education. Globalization, the proliferation of information available on the Internet and the importance of knowledge-based economies have added a whole new dimension to teaching and learning. As more tutors, students and trainees, and institutions adopt online learning there is a need for resources that will examine and inform this field. Using examples from around the world, the authors of e-Learning: Concepts and Practices provide an in-depth examination of past, present and future e-learning approaches, and explore the implications of applying e-learning in practice. Topics include: educational evolution enriching the learning experience learner empowerment design concepts and considerations creation of e-communities communal constructivism. This book is essential reading for anyone involved in technology enhanced learning systems, whether an expert or coming new to the area. It will be of particular relevance to those involved in teaching or studying for information technology in education degrees, in training through e-learning courses and with developing e-learning resources.