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  • 1
    Book
    Book
    Dordrecht : Springer
    ISBN: 9781402058820 , 9781402036125
    Language: English
    Pages: VII, 354 S. , ill. (partly col.) , 25 cm
    Series Statement: Models and modeling in science education 1
    Series Statement: Models and modeling in science education
    DDC: 370.1
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    Keywords: Science Study and teaching ; Visualization ; Aufsatzsammlung ; Aufsatzsammlung ; Naturwissenschaftlicher Unterricht ; Visualisierung ; Fachdidaktik
    Note: Literaturangaben
    URL: Cover
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  • 2
    Book
    Book
    Dordrecht : Springer
    Language: English
    Pages: xxxix, 346 p. , ill. (some col.) , 25 cm
    Series Statement: Models and modeling in science education 1
    Series Statement: Models and modeling in science education
    DDC: 507.1
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    Keywords: Naturwissenschaft ; Science Study and teaching ; Visualization ; Dreidimensionale Rekonstruktion ; Dreidimensionale geometrische Modellierung ; Visualisierung ; Naturwissenschaftlicher Unterricht ; Aufsatzsammlung ; Aufsatzsammlung ; Aufsatzsammlung ; Visualisierung ; Naturwissenschaftlicher Unterricht ; Dreidimensionale Rekonstruktion ; Dreidimensionale geometrische Modellierung
    Note: Includes bibliographical reference and index
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  • 3
    Online Resource
    Online Resource
    Dordrecht : Springer
    ISBN: 9783319065267
    Language: English
    Pages: Online-Ressource (VIII, 338 p. 65 illus, online resource)
    Series Statement: Models and Modeling in Science Education 8
    Series Statement: SpringerLink
    Series Statement: Bücher
    Parallel Title: Druckausg. Science teachers' use of visual representations
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    Keywords: Science Study and teaching ; Education ; Education ; Science Study and teaching ; Education ; Science Study and teaching ; Aufsatzsammlung ; Hochschule ; Lehre ; Visualisierung
    Abstract: This book examines the diverse use of visual representations by teachers in the science classroom. It contains unique pedagogies related to the use of visualization, presents original curriculum materials as well as explores future possibilities. The book begins by looking at the significance of visual representations in the teaching of science. It then goes on to detail two recent innovations in the field: simulations and slowmation, a process of explicit visualization. It also evaluates the way teachers have used different diagrams to illustrate concepts in biology and chemistry. Next, the book explores the use of visual representations in culturally diverse classrooms, including the implication of culture for teachers’ use of representations, the crucial importance of language in the design and use of visualizations, and visualizations in popular books about chemistry. It also shows the place of visualizations in the growing use of informal, self-directed science education. Overall, the book concludes that if the potential of visualizations in science education is to be realized in the future, the subject must be included in both pre-service and in-service teacher education. It explores ways to develop science teachers’ representational competence and details the impact that this will have on their teaching. The worldwide trend towards providing science education for all, coupled with the increased availability of color printing, access to personal computers and projection facilities, has lead to a more extensive and diverse use of visual representations in the classroom. This book offers unique insights into the relationship between visual representations and science education, making it an ideal resource for educators as well as researchers in science education, visualization and pedagogy
    Description / Table of Contents: Section A: Research into teaching with visual representationsIntroduction -- Chapter 1 : The significance of visual representations in the teaching of science, B. Eilam, J.K. Gilbert -- Chapter 2 : Teaching and researching visual representations: Shared vision or divided world? S. Ainsworth & L. Newton -- Section B: Teachers’ selections, constructions and use of visual representations -- Introduction -- Chapter 3 : Representing visually: What teachers know and what they prefer, B. Eilam, Y. Poyas, R. Hasimshoni -- Chapter 4 : Slowmation: A process of explicit visualisation, J. Loughran -- Chapter 5 : Secondary biology teachers’ use of different types of diagrams for different purposes, Y. Liu, M. Won, D.F. Treagust -- Chapter 6 : Teaching stoichiometry with particulate diagrams - linking macro phenomena and chemical equations, M.W. Cheng, J.K. Gilbert -- Section C: Teachers’ use of visual representations in culturally-diverse classrooms -- Introduction -- Chapter 7 : Thoughts on visualizations in diverse cultural settings: The case of France and Pakistan, E. De Vries, M. Ashraf -- Chapter 8 : The implication of culture for teachers’ use of representations, B. Waldrip, S. Satupo, F. Rodie -- Chapter 9 : The interplay between language and visualization: The role of the teacher, L. Mammino -- Chapter 10: Visualizations in popular books about chemistry, J.K. Gilbert, A. Afonso -- Section D: Teachers’ supporting student learning from visual representations -- Introduction -- Chapter 11 : Teachers using interactive simulations to scaffold inquiry instruction in physical science education, D. Geelan, X.Fan -- Chapter 12: Transformed instruction: Teaching in a student-generated representations learning environment, O. Parnafes, R. Trachtenberg-Maslaton -- Chapter 13: The laboratory for making things: Developing multiple representations of knowledge, J. Bamberger -- Section E: Overview -- Chapter 14: Developing science teachers’ representational competence and its impact on their teaching, J.K.Gilbert, B. Eilam.
    Note: Description based upon print version of record
    URL: Volltext  (lizenzpflichtig)
    URL: Cover
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  • 4
    Online Resource
    Online Resource
    Dordrecht : Springer Netherlands
    ISBN: 9789401008761
    Language: English
    Pages: Online-Ressource (XI, 387 p) , online resource
    Edition: Springer eBook Collection. Humanities, Social Sciences and Law
    Parallel Title: Erscheint auch als
    Parallel Title: Erscheint auch als
    Parallel Title: Erscheint auch als
    Keywords: Education ; Science Philosophy ; Science Study and teaching ; Consciousness ; Science education. ; Learning. ; Instruction. ; Philosophy and science. ; Cognitive psychology. ; Learning, Psychology of. ; Science—Study and teaching. ; Science—Philosophy.
    Abstract: Models and modelling play a central role in the nature of science, in its conduct, in the accreditation and dissemination of its outcomes, as well as forming a bridge to technology. They therefore have an important place in both the formal and informal science education provision made for people of all ages. This book is a product of five years collaborative work by eighteen researchers from four countries. It addresses four key issues: the roles of models in science and their implications for science education; the place of models in curricula for major science subjects; the ways that models can be presented to, are learned about, and can be produced by, individuals; the implications of all these for research and for science teacher education. The work draws on insights from the history and philosophy of science, cognitive psychology, sociology, linguistics, and classroom research, to establish what may be done and what is done. The book will be of interest to researchers in science education and to those taking courses of advanced study throughout the world
    Description / Table of Contents: Section One: On the Nature and Significance of Models1. Positioning Models in Science Education and in Design and Technology Education -- 2. Science and Education: Notions of Reality, Theory and Model -- 3. Constructing a Typology of Models for Science Education -- 4. Mathematical Models in Science -- Section Two: The Development of Mental Models -- 5. Grasping Mental Models -- 6. Investigating the Role of Representations and Expressed Models in Building Mental Models -- 7. Modelling and Creativity in Design and Technology Education -- 8. Thought Experiments and Embodied Cognition -- 9. Computers and the Development of Mental Models -- Section Three: Teaching and Learning Consensus Models -- 10. Explanations with Models in Science Education -- 11. Teaching with Historical Models -- 12. Models in Explanations of Chemistry: The Case of Acidity -- 13. Models in the Explanations of Physics: The Case of Light -- 14. The Role of Models in Biotechnology Education: An Analysis of Teaching Models -- 15. Language, Models and Modelling in the Primary Science Classroom -- 16. Teaching and Learning about Chemistry and Modelling with a Computer Managed Modelling System -- 17. The Structure and Development of Science Teachers’ Pedagogical Models: Implications for Teacher Education -- 18 Challenges and Opportunities -- References.
    URL: Volltext  (lizenzpflichtig)
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  • 5
    ISBN: 9781402088728
    Language: English
    Pages: Online-Ressource , v.: digital
    Series Statement: Models and Modeling in Science Education 4
    Parallel Title: Buchausg. u.d.T.: Multiple representations in chemical education
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    Keywords: Education ; Science Study and teaching
    Note: In: Springer-Online
    URL: Volltext  (lizenzpflichtig)
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  • 6
    ISBN: 9780429434303 , 9781138353251 , 9781138353268
    Language: Undetermined
    Pages: 1 Online-Ressource (225 p.)
    Series Statement: Teaching and Learning in Science Series
    Keywords: Teaching of students with English as a second language (TESOL) ; Adult education, continuous learning ; Curriculum planning & development
    Abstract: While much has been written about science education from pre-K through to postgraduate study, interaction with science and technology does not stop when schooling ends. Moving beyond scholarship on conventional education, this book extends the research and provides an original in-depth look at adult and lifelong learning in science and technology. By identifying the knowledge and skills that individuals need to engage in self-directed learning, the book highlights how educators can best support adult learners beyond the years of formal schooling. Through case studies and empirical analysis, the authors offer a research-based exploration of adults’ self-directed learning and provide tools to support adults’ learning experiences in a wide range of environments while being inclusive of all educational backgrounds
    Note: English
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  • 7
    Online Resource
    Online Resource
    Dordrecht : Springer Netherlands
    ISBN: 9781402052675
    Language: English
    Pages: Online-Ressource (digital)
    Series Statement: Models and Modeling in Science Education 3
    Series Statement: SpringerLink
    Series Statement: Bücher
    Series Statement: Springer eBook Collection
    Series Statement: Humanities, Social Science and Law
    Parallel Title: Buchausg. u.d.T. Visualization
    RVK:
    Keywords: Science Study and teaching ; Education ; Naturwissenschaftlicher Unterricht ; Visualisierung
    URL: Volltext  (lizenzpflichtig)
    URL: Cover
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  • 8
    Online Resource
    Online Resource
    Dordrecht : Springer
    ISBN: 9781402036132
    Language: English
    Pages: Online-Ressource , v.: digital
    Edition: Online-Ausg. Springer eBook Collection. Humanities, Social Science and Law Electronic reproduction; Available via World Wide Web
    Series Statement: Models and Modeling in Science Education 1
    DDC: 507.1
    RVK:
    Keywords: Education ; Science Study and teaching ; Naturwissenschaftlicher Unterricht ; Aufsatzsammlung
    Abstract: This book addresses key issues concerning visualization in the teaching and learning of science at any level in educational systems. It is the first book specifically on visualization in science education. The book draws on the insights from cognitive psychology, science, and education, by experts from five countries. It unites these with the practice of science education, particularly the ever-increasing use of computer-managed modelling packages.
    Abstract: 'Visualization in Science Education' draws on the insights from cognitive psychology, science, and education, by experts from Australia, Israel, Slovenia, UK, and USA. It unites these with the practice of science education, particularly the ever-increasing use of computer-managed modelling packages, especially in chemistry. The first section explores the significance and intellectual standing of visualization. The second section shows how the skills of visualization have been developed practically in science education. This is followed by accounts of how the educational value of visualization has been integrated into university courses in physics, genomics, and geology. The fourth section documents experimental work on the classroom assessment of visualization. An endpiece summarises some of the research and development needed if the contribution of this set of universal skills is to be fully exploited at all levels and in all science subjects.
    Description / Table of Contents: Introduction; Visualization: A Metacognitive Skill in Science and Science Education; Prolegomenon to Scientific Visualizations; Mental Models: Theoretical Issues for Visualizations in Science Education; A Model of Molecular Visualization; Leveraging Technology and Cognitive Tehory on Visualization to Promote Students' Science; Teaching and Learning with Three-dimensional Representations; Students Becoming Chemists: Developing Representationl Competence; Imagery in Physics Learning - from Physicists' Practice to Naive Students' Understanding; Imagery in Science Learning in Students and Experts
    Description / Table of Contents: Learning Electromagnetism with Visualizations and Active LearningVisualizing the Science of Genomics; Visualization in Undergraduate Geology Courses; Evaluating the Educational Value of Molecular Structure Representations; Assessing Learning from the Use of Multimedia Chemical Visualiztion Software; Endpiece: Research and Development on Visualization in Science Education
    Note: Includes bibliographical references and index , Electronic reproduction; Available via World Wide Web
    URL: Volltext  (lizenzpflichtig)
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