Science Learning Science Teaching

Science Learning  Science Teaching
Author: Jerry Wellington,Gren Ireson
Publsiher: Routledge
Total Pages: 402
Release: 2017-09-01
Genre: Education
ISBN: 9781317225966

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Now fully updated in its fourth edition, Science Learning, Science Teaching offers an accessible, practical guide to creative classroom teaching and a comprehensive introduction to contemporary issues in science education. Aiming to encourage and assist professionals with the process of reflection in the science classroom, the new edition re-examines the latest advances in the field and changes to the curriculum, and explores the use of mobile technology and coding, and its impact on ICT in science education. With extra tasks integrated throughout the book and a brand new chapter, ‘Working scientifically’, to help develop learners’ investigative skills, key topics include: • The art and craft of science teaching. • The science curriculum and science in the curriculum. • Planning and managing learning. • Inclusive science education. • Laboratory safety in science learning and teaching. • Language and numeracy in science teaching and learning. • Computers and computing in science education. • Citizenship and sustainability in science education. Including points for reflection and useful information about further reading and recommended websites, Science Learning, Science Teaching is an essential source of support, guidance and inspiration for all students, teachers, mentors and those involved in science education wishing to reflect upon, improve and enrich their practice.

Science Learning Science Teaching

Science Learning  Science Teaching
Author: Jerry J. Wellington,Gren Ireson
Publsiher: Routledge
Total Pages: 360
Release: 2008
Genre: Education
ISBN: 9780415433938

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"Rev. and updated ed. of Teaching and learning secondary science"--Cover.

Science Teaching and Learning

Science Teaching and Learning
Author: Paul J. Hendricks
Publsiher: Nova Science Publishers
Total Pages: 0
Release: 2020-03-05
Genre: Learning
ISBN: 1536174068

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"This compilation aims to analyse students' learning during STEM activities in the following categories: real-world problem solving and knowledge about the topic under discussion. This study is part of a larger project that comprises five school clusters and involves students from several grades. Next, the authors develop, validate and apply an attitude and learning environment questionnaire for gifted female students to evaluate technology-based science instruction by comparing regular and technology-based science classrooms. Additionally, Science Teaching and Learning: Practices, Implementation and Challenges reports the methods and outcomes of a study that explored the impact of a six-month school-scientist partnership involving a New Zealand science research institute and a group of 164 9-10 year olds. The authors investigate the effects of learning boxes on 5th grade students' academic achievement and retention in science classes. In order to realize this goal, a quantitative research method including an experimental design was used. The concluding study considers Kuhn's concept of how scientific revolution takes place based on individual elements or tenets of the nature of science, and explores the interrelationships within the individual elements or tenets of the nature of science"--

Science Teachers Learning

Science Teachers  Learning
Author: National Academies of Sciences, Engineering, and Medicine,Division of Behavioral and Social Sciences and Education,Teacher Advisory Council,Board on Science Education,Committee on Strengthening Science Education through a Teacher Learning Continuum
Publsiher: National Academies Press
Total Pages: 257
Release: 2016-01-15
Genre: Education
ISBN: 9780309380188

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Currently, many states are adopting the Next Generation Science Standards (NGSS) or are revising their own state standards in ways that reflect the NGSS. For students and schools, the implementation of any science standards rests with teachers. For those teachers, an evolving understanding about how best to teach science represents a significant transition in the way science is currently taught in most classrooms and it will require most science teachers to change how they teach. That change will require learning opportunities for teachers that reinforce and expand their knowledge of the major ideas and concepts in science, their familiarity with a range of instructional strategies, and the skills to implement those strategies in the classroom. Providing these kinds of learning opportunities in turn will require profound changes to current approaches to supporting teachers' learning across their careers, from their initial training to continuing professional development. A teacher's capability to improve students' scientific understanding is heavily influenced by the school and district in which they work, the community in which the school is located, and the larger professional communities to which they belong. Science Teachers' Learning provides guidance for schools and districts on how best to support teachers' learning and how to implement successful programs for professional development. This report makes actionable recommendations for science teachers' learning that take a broad view of what is known about science education, how and when teachers learn, and education policies that directly and indirectly shape what teachers are able to learn and teach. The challenge of developing the expertise teachers need to implement the NGSS presents an opportunity to rethink professional learning for science teachers. Science Teachers' Learning will be a valuable resource for classrooms, departments, schools, districts, and professional organizations as they move to new ways to teach science.

The Professional Knowledge Base of Science Teaching

The Professional Knowledge Base of Science Teaching
Author: Deborah Corrigan,Justin Dillon,Richard Gunstone
Publsiher: Springer Science & Business Media
Total Pages: 326
Release: 2011-03-01
Genre: Science
ISBN: 9789048139279

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Over the past twenty years, much has been written about the knowledge bases thought necessary to teach science. Shulman has outlined seven knowledge domains needed for teaching, and others, such as Tamir, have proposed somewhat similar domains of knowledge, specifically for science teachers. Aspects of this knowledge have changed because of shifts in curriculum thinking, and the current trends in science education have seen a sharp increase in the significance of the knowledge bases. The development of a standards-based approach to the quality of science teaching has become common in the Western world, and phrases such as “evidence-based practice” have been tossed around in the attempt to “measure” such quality. The Professional Knowledge Base of Science Teaching explores the knowledge bases considered necessary for science teaching. It brings together a number of researchers who have worked with science teachers, and they address what constitutes evidence of high quality science teaching, on what basis such evidence can be judged, and how such evidence reflects the knowledge basis of the modern day professional science teacher. This is the second book produced from the Monash University- King’s College London International Centre for the Study of Science and Mathematics Curriculum. The first book presented a big picture of what science education might be like if values once again become central while this book explores what classroom practices may look like based on such a big picture.

Taking Science to School

Taking Science to School
Author: National Research Council,Division of Behavioral and Social Sciences and Education,Center for Education,Board on Science Education,Committee on Science Learning, Kindergarten Through Eighth Grade
Publsiher: National Academies Press
Total Pages: 404
Release: 2007-04-16
Genre: Education
ISBN: 9780309133838

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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.

Professional Development for Inquiry Based Science Teaching and Learning

Professional Development for Inquiry Based Science Teaching and Learning
Author: Olia E. Tsivitanidou,Peter Gray,Eliza Rybska,Loucas Louca,Costas P. Constantinou
Publsiher: Springer
Total Pages: 284
Release: 2018-09-03
Genre: Science
ISBN: 9783319914060

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​This book examines the implementation of inquiry-based approaches in science teaching and learning. It explores the ways that those approaches could be promoted across various contexts in Europe through initial teacher preparation, induction programmes and professional development activities. It illustrates connections between scientific knowledge deriving from the science education research community, teaching practices deriving from the science teachers’ community, and educational innovation. Inquiry-Based Science Teaching and Learning (IBST/L) has been promoted as a policy response to pressing educational challenges, including disengagement from science learning and the need for citizens to be in a position to evaluate evidence on pressing socio-scientific issues. Effective IBST/L requires well-prepared and skilful teachers, who can act as facilitators of student learning and who are able to adapt inquiry-based activity sequences to their everyday teaching practice. Teachers also need to engage creatively with the process of nurturing student abilities and to acquire new assessment competences. The task of preparing teachers for IBST/L is a challenging one. This book is a resource for the implementation of inquiry-oriented approaches in science education and illustrates ways of promoting IBST/L through initial teacher preparation, induction and professional development programmes.

Teaching Science Online

Teaching Science Online
Author: Dietmar Kennepohl
Publsiher: Taylor & Francis
Total Pages: 240
Release: 2023-07-03
Genre: Education
ISBN: 9781000979510

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With the increasing focus on science education, growing attention is being paid to how science is taught. Educators in science and science-related disciplines are recognizing that distance delivery opens up new opportunities for delivering information, providing interactivity, collaborative opportunities and feedback, as well as for increasing access for students. This book presents the guidance of expert science educators from the US and from around the globe. They describe key concepts, delivery modes and emerging technologies, and offer models of practice. The book places particular emphasis on experimentation, lab and field work as they are fundamentally part of the education in most scientific disciplines. Chapters include:* Discipline methodology and teaching strategies in the specific areas of physics, biology, chemistry and earth sciences.* An overview of the important and appropriate learning technologies (ICTs) for each major science.* Best practices for establishing and maintaining a successful course online.* Insights and tips for handling practical components like laboratories and field work.* Coverage of breaking topics, including MOOCs, learning analytics, open educational resources and m-learning.* Strategies for engaging your students online.