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This second edition of Piaget for Educators represents a happy balance of the theoretical & practical aspects of Piaget's theory.
Professor Furth enlarges on Piaget's proposal that the goal in education is to create the possibilities for a child to invent and discover operative structures.
Jean Piaget was one of the most significant contributors to our current understanding of how children think and learn, from birth through to adolescence. In this comprehensive and accessible new book, Ann Marie Halpenny and Jan Pettersen capture the key concepts and principles of Piaget’s fascinating work on children’s thinking, and explore how thinking evolves and develops from infancy through the early years and beyond. Areas covered in Introducing Piaget include: key milestones and achievements in children’s thinking; understanding the physical world through senses and movement in infancy; supporting the emergence of symbolic thought and language in the early years; understanding object permanence; implications of egocentric thinking in early childhood learning and development. Throughout the book, the consequences of these developments for children’s social, emotional and intellectual development are discussed. Updates on Piaget’s theory are also outlined with reference to more recent work on cognitive development in childhood. Each chapter provides a concise summary of material presented through a consideration of the implications for practice in working with children. A glossary of key Piagetian terms is also included. With a particular focus on how Piaget’s principles and concepts can be applied to children in early childhood, this exciting new book is an invaluable resource for teachers, practitioners and students with an interest in learning and development in the early years.
Exploring the rationale and basic tenets of Piaget's theory, the authors define physical-knowledge activities, consider reasons for their use and discuss principles of teaching rooted in theory-based objectives.
`At the end of the day, what is crucial is to enable educationalists to promote and apply their own metatheories and models of child development which they feel comfortable with and which enable children to develop. ... Peter Sutherland should be credited with making a significant contribution towards achieving this fundamental goal' - Educational Psychology in Practice ` ... this book deserves to become a classic in the field. Will appeal alike to academics and students in higher education, and to serving teachers- BPS: Educational Review Section This book provides a general outline of the dominant schools of thought on cognitive development, with a focus on Piaget. His views are outlined and a range of critical responses and alternatives are detailed. The author examines the application of these schools of thought to teaching pre-school, primary and secondary children. Each chapter includes a summary and questions for discussion. The book concludes with a glossary of terms.
In this fully revised second edition of the classic Young Children Reinvent Arithmetic, Constance Kamii describes and develops an innovative program of teaching arithmetic in the early elementary grades. Kamii bases her educational strategies on renowned constructivist Jean Piaget's scientific ideas of how children develop logico-mathematical thinking. Written in collaboration with a classroom teacher, and premised upon the conviction that children are capable of much more than teachers and parents generally realize, the book provides a rich theoretical foundation and a compelling explanation of educational goals and objectives. Kamii calls attention to the ways in which traditional textbook-based teaching can be harmful to children’s development of numerical reasoning, and uses extensive research and classroom-tested studies to illuminate the efficacy of the approach. This book is full of practical suggestions and developmentally appropriate activities that can be used to stimulate numerical thinking among students of varying abilities and learning styles, both within and outside of the classroom. “In this new edition of her important book, Connie Kamii demonstrates scholarship not just in what she has written, but in her willingness to incorporate new ideas and findings. Many people update their books; few assiduously revise them, confronting what they believe to be past errors or gaps in their thinking. Such intellectual honesty, along with consistent connections between theory and practice, make this book a solid contribution to mathematics education of young children.” —Douglas Clements, State University of New York at Buffalo “The development of young children’s logico-mathematical knowledge is at the heart of this text. Similar to the first edition, this revision provides a rich theoretical foundation as well as child-centered activities and principles of teaching that support problem solving, communicating, reasoning, making connections, and representing mathematical ideas. In this great resource for preservice and in-service elementary teachers, Professor Kamii continues to help us understand the implications of Piagetian theory.” —Frances R. Curcio, New York University
Are you struggling to understand how Piaget’s stages of development apply to your teaching? Maybe Vygotsky's theory of learning is proving just a bit too confusing or maybe you’re unsure of how to use Bloom’s domains of learning in lesson planning? You’d love them to be explained to you in every day language? Don’t worry, “Vygotsky, Piaget and Bloom; The Definitive Guide to their Educational Theories with Examples of How they can be Applied” is just what you need! It is a must-read for all educators, from trainee teachers, new teachers and even veteran teachers. Buy it now and unscramble your brain! Paul Stevens-Fulbrook is head of key stage 3 Science and a trainee teacher mentor in a large high school in the south of England. He has been teaching for 8 years and his impression of a bee pollinating plants is almost legendary! He is also an education blogger at teacherofsci.com where his articles have helped over a 100,000 teachers across the globe since April 2018. His teaching interests include evidence based teaching strategies and student engagement. Prior to teaching, he was a marine biologist working on coral reef conservation. He daily asks himself what's harder to work with, children or sharks!
Piaget helps us to see the developmental significance of a child's failures and successes in thought and action during everyday experience by breaking down each activity into its separate mental elements. We have to tried to draw the educational implications from the developmental facts thus revealed. In recent years teachers have had to learn a great deal about mental measurement as this has become an important feature in our educational structure. This has led to much emphasis on the quantitative assessment of intellectual ability, since in most intelligence tests the main concern is with the number of right responses. In his 'open-ended tests' Piaget seeks to find in a large number of situations what it is that we take for granted which the children have not grasped. To do this he examines the processes of thought and the degree of success and failure, which should be of much greater diagnostic value to the practising teacher. It also gives further support to those who believe in the need for an individual approach to each child's learning. For many years, people who have worked in child centred education have had philosophical theory and intuitive judgment to guide them, but have lacked scientific justification for what they were doing. Piaget's work is now providing scientific evidence from experiments, with concrete examples and demonstration from children's behaviour for what was previously a matter of opinion. We have chosen the examples to cover a wide age range partly to emphasise the genetic approach and partly to appeal to as wide an audience of teachers as possible. In addition we tried to choose pieces that held special promise of applicability in schools.
Demonstrates how the teacher can use Piaget's theory to teach elementary number in a practical way. Includes activities and games that can stimulate children's numerical thinking.