Investigative Science Learning Environment

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Publisher : Morgan & Claypool Publishers
ISBN 13 : 1643277804
Total Pages : 137 pages
Book Rating : 4.06/5 ( download)

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Book Synopsis Investigative Science Learning Environment by : Eugenia Etkina

Download or read book Investigative Science Learning Environment written by Eugenia Etkina and published by Morgan & Claypool Publishers. This book was released on 2019-11-15 with total page 137 pages. Available in PDF, EPUB and Kindle. Book excerpt: The goal of this book is to introduce a reader to a new philosophy of teaching and learning physics - Investigative Science Learning Environment, or ISLE (pronounced as a small island). ISLE is an example of an "intentional" approach to curriculum design and learning activities (MacMillan and Garrison 1988 A Logical Theory of Teaching: Erotetics and Intentionality). Intentionality means that the process through which the learning occurs is as crucial for learning as the final outcome or learned content. In ISLE, the process through which students learn mirrors the practice of physics.

Investigative Science Learning Environment

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Publisher :
ISBN 13 : 9781643277790
Total Pages : 0 pages
Book Rating : 4.90/5 ( download)

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Book Synopsis Investigative Science Learning Environment by : Etkina Eugenia

Download or read book Investigative Science Learning Environment written by Etkina Eugenia and published by . This book was released on 2019 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Inquiry and the National Science Education Standards

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Publisher : National Academies Press
ISBN 13 : 0309064767
Total Pages : 223 pages
Book Rating : 4.67/5 ( download)

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Book Synopsis Inquiry and the National Science Education Standards by : National Research Council

Download or read book Inquiry and the National Science Education Standards written by National Research Council and published by National Academies Press. This book was released on 2000-05-03 with total page 223 pages. Available in PDF, EPUB and Kindle. Book excerpt: Humans, especially children, are naturally curious. Yet, people often balk at the thought of learning scienceâ€"the "eyes glazed over" syndrome. Teachers may find teaching science a major challenge in an era when science ranges from the hardly imaginable quark to the distant, blazing quasar. Inquiry and the National Science Education Standards is the book that educators have been waiting forâ€"a practical guide to teaching inquiry and teaching through inquiry, as recommended by the National Science Education Standards. This will be an important resource for educators who must help school boards, parents, and teachers understand "why we can't teach the way we used to." "Inquiry" refers to the diverse ways in which scientists study the natural world and in which students grasp science knowledge and the methods by which that knowledge is produced. This book explains and illustrates how inquiry helps students learn science content, master how to do science, and understand the nature of science. This book explores the dimensions of teaching and learning science as inquiry for K-12 students across a range of science topics. Detailed examples help clarify when teachers should use the inquiry-based approach and how much structure, guidance, and coaching they should provide. The book dispels myths that may have discouraged educators from the inquiry-based approach and illuminates the subtle interplay between concepts, processes, and science as it is experienced in the classroom. Inquiry and the National Science Education Standards shows how to bring the standards to life, with features such as classroom vignettes exploring different kinds of inquiries for elementary, middle, and high school and Frequently Asked Questions for teachers, responding to common concerns such as obtaining teaching supplies. Turning to assessment, the committee discusses why assessment is important, looks at existing schemes and formats, and addresses how to involve students in assessing their own learning achievements. In addition, this book discusses administrative assistance, communication with parents, appropriate teacher evaluation, and other avenues to promoting and supporting this new teaching paradigm.

The Investigative Science Learning Environment

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Publisher : Institute of Physics Publishing
ISBN 13 : 9780750355667
Total Pages : 0 pages
Book Rating : 4.62/5 ( download)

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Book Synopsis The Investigative Science Learning Environment by : Eugenia Etkina

Download or read book The Investigative Science Learning Environment written by Eugenia Etkina and published by Institute of Physics Publishing. This book was released on 2024-05-16 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: The goal of this book is to help prepare future physics teachers who will engage their students in learning physics by practicing it and implement the ISLE approach in their classrooms.

Active Learning Guide

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Publisher : Pearson
ISBN 13 : 9780805390780
Total Pages : 0 pages
Book Rating : 4.82/5 ( download)

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Book Synopsis Active Learning Guide by : Alan Van Heuvelen

Download or read book Active Learning Guide written by Alan Van Heuvelen and published by Pearson. This book was released on 2005-12-15 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: A series of discovery-based activities focused on building confidence with physics concepts and problem solving by helping to connect new ideas with existing knowledge. The student learns to evaluate, draw, diagram, and graph physics concepts.

Ready, Set, SCIENCE!

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Publisher : National Academies Press
ISBN 13 : 0309131944
Total Pages : 220 pages
Book Rating : 4.40/5 ( download)

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Book Synopsis Ready, Set, SCIENCE! by : National Research Council

Download or read book Ready, Set, SCIENCE! written by National Research Council and published by National Academies Press. This book was released on 2007-10-30 with total page 220 pages. Available in PDF, EPUB and Kindle. Book excerpt: What types of instructional experiences help K-8 students learn science with understanding? What do science educators, teachers, teacher leaders, science specialists, professional development staff, curriculum designers, and school administrators need to know to create and support such experiences? Ready, Set, Science! guides the way with an account of the groundbreaking and comprehensive synthesis of research into teaching and learning science in kindergarten through eighth grade. Based on the recently released National Research Council report Taking Science to School: Learning and Teaching Science in Grades K-8, this book summarizes a rich body of findings from the learning sciences and builds detailed cases of science educators at work to make the implications of research clear, accessible, and stimulating for a broad range of science educators. Ready, Set, Science! is filled with classroom case studies that bring to life the research findings and help readers to replicate success. Most of these stories are based on real classroom experiences that illustrate the complexities that teachers grapple with every day. They show how teachers work to select and design rigorous and engaging instructional tasks, manage classrooms, orchestrate productive discussions with culturally and linguistically diverse groups of students, and help students make their thinking visible using a variety of representational tools. This book will be an essential resource for science education practitioners and contains information that will be extremely useful to everyone �including parents �directly or indirectly involved in the teaching of science.

How Students Learn

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Publisher : National Academies Press
ISBN 13 : 0309089506
Total Pages : 265 pages
Book Rating : 4.00/5 ( download)

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Book Synopsis How Students Learn by : National Research Council

Download or read book How Students Learn written by National Research Council and published by National Academies Press. This book was released on 2005-01-28 with total page 265 pages. Available in PDF, EPUB and Kindle. Book excerpt: How Students Learn: Science in the Classroom builds on the discoveries detailed in the best-selling How People Learn. Now these findings are presented in a way that teachers can use immediately, to revitalize their work in the classroom for even greater effectiveness. Organized for utility, the book explores how the principles of learning can be applied in science at three levels: elementary, middle, and high school. Leading educators explain in detail how they developed successful curricula and teaching approaches, presenting strategies that serve as models for curriculum development and classroom instruction. Their recounting of personal teaching experiences lends strength and warmth to this volume. This book discusses how to build straightforward science experiments into true understanding of scientific principles. It also features illustrated suggestions for classroom activities.

Designing Effective Science Instruction

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Publisher : NSTA Press
ISBN 13 : 193613795X
Total Pages : 245 pages
Book Rating : 4.54/5 ( download)

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Book Synopsis Designing Effective Science Instruction by : Anne Tweed

Download or read book Designing Effective Science Instruction written by Anne Tweed and published by NSTA Press. This book was released on 2009 with total page 245 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Taking Science to School

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Publisher : National Academies Press
ISBN 13 : 0309133831
Total Pages : 404 pages
Book Rating : 4.38/5 ( download)

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Book Synopsis Taking Science to School by : National Research Council

Download or read book Taking Science to School written by National Research Council and published by National Academies Press. This book was released on 2007-04-16 with total page 404 pages. Available in PDF, EPUB and Kindle. Book excerpt: What is science for a child? How do children learn about science and how to do science? Drawing on a vast array of work from neuroscience to classroom observation, Taking Science to School provides a comprehensive picture of what we know about teaching and learning science from kindergarten through eighth grade. By looking at a broad range of questions, this book provides a basic foundation for guiding science teaching and supporting students in their learning. Taking Science to School answers such questions as: When do children begin to learn about science? Are there critical stages in a child's development of such scientific concepts as mass or animate objects? What role does nonschool learning play in children's knowledge of science? How can science education capitalize on children's natural curiosity? What are the best tasks for books, lectures, and hands-on learning? How can teachers be taught to teach science? The book also provides a detailed examination of how we know what we know about children's learning of scienceâ€"about the role of research and evidence. This book will be an essential resource for everyone involved in K-8 science educationâ€"teachers, principals, boards of education, teacher education providers and accreditors, education researchers, federal education agencies, and state and federal policy makers. It will also be a useful guide for parents and others interested in how children learn.

Active Learning in College Science

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Publisher : Springer Nature
ISBN 13 : 303033600X
Total Pages : 989 pages
Book Rating : 4.04/5 ( download)

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Book Synopsis Active Learning in College Science by : Joel J. Mintzes

Download or read book Active Learning in College Science written by Joel J. Mintzes and published by Springer Nature. This book was released on 2020-02-23 with total page 989 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book explores evidence-based practice in college science teaching. It is grounded in disciplinary education research by practicing scientists who have chosen to take Wieman’s (2014) challenge seriously, and to investigate claims about the efficacy of alternative strategies in college science teaching. In editing this book, we have chosen to showcase outstanding cases of exemplary practice supported by solid evidence, and to include practitioners who offer models of teaching and learning that meet the high standards of the scientific disciplines. Our intention is to let these distinguished scientists speak for themselves and to offer authentic guidance to those who seek models of excellence. Our primary audience consists of the thousands of dedicated faculty and graduate students who teach undergraduate science at community and technical colleges, 4-year liberal arts institutions, comprehensive regional campuses, and flagship research universities. In keeping with Wieman’s challenge, our primary focus has been on identifying classroom practices that encourage and support meaningful learning and conceptual understanding in the natural sciences. The content is structured as follows: after an Introduction based on Constructivist Learning Theory (Section I), the practices we explore are Eliciting Ideas and Encouraging Reflection (Section II); Using Clickers to Engage Students (Section III); Supporting Peer Interaction through Small Group Activities (Section IV); Restructuring Curriculum and Instruction (Section V); Rethinking the Physical Environment (Section VI); Enhancing Understanding with Technology (Section VII), and Assessing Understanding (Section VIII). The book’s final section (IX) is devoted to Professional Issues facing college and university faculty who choose to adopt active learning in their courses. The common feature underlying all of the strategies described in this book is their emphasis on actively engaging students who seek to make sense of natural objects and events. Many of the strategies we highlight emerge from a constructivist view of learning that has gained widespread acceptance in recent years. In this view, learners make sense of the world by forging connections between new ideas and those that are part of their existing knowledge base. For most students, that knowledge base is riddled with a host of naïve notions, misconceptions and alternative conceptions they have acquired throughout their lives. To a considerable extent, the job of the teacher is to coax out these ideas; to help students understand how their ideas differ from the scientifically accepted view; to assist as students restructure and reconcile their newly acquired knowledge; and to provide opportunities for students to evaluate what they have learned and apply it in novel circumstances. Clearly, this prescription demands far more than most college and university scientists have been prepared for.