Visualization Theory And Practice In Science Education

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Visualization: Theory and Practice in Science Education

Author : John K. Gilbert,Miriam Reiner,Mary Nakhleh
Publisher : Springer Science & Business Media
Page : 325 pages
File Size : 40,6 Mb
Release : 2007-12-05
Category : Education
ISBN : 9781402052675

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Visualization: Theory and Practice in Science Education by John K. Gilbert,Miriam Reiner,Mary Nakhleh Pdf

External representations (pictures, diagrams, graphs, concrete models) have always been valuable tools for the science teacher. This book brings together the insights of practicing scientists, science education researchers, computer specialists, and cognitive scientists, to produce a coherent overview. It links presentations about cognitive theory, its implications for science curriculum design, and for learning and teaching in classrooms and laboratories.

Visualization in Science Education

Author : John K. Gilbert
Publisher : Springer Science & Business Media
Page : 375 pages
File Size : 47,9 Mb
Release : 2006-03-30
Category : Science
ISBN : 9781402036132

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Visualization in Science Education by John K. Gilbert Pdf

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.

Visualization in Mathematics, Reading and Science Education

Author : Linda M. Phillips,Stephen P. Norris,John S. Macnab
Publisher : Springer Science & Business Media
Page : 106 pages
File Size : 50,8 Mb
Release : 2010-09-02
Category : Science
ISBN : 9789048188161

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Visualization in Mathematics, Reading and Science Education by Linda M. Phillips,Stephen P. Norris,John S. Macnab Pdf

Science education at school level worldwide faces three perennial problems that have become more pressing of late. These are to a considerable extent interwoven with concerns about the entire school curriculum and its reception by students. The rst problem is the increasing intellectual isolation of science from the other subjects in the school curriculum. Science is too often still taught didactically as a collection of pre-determined truths about which there can be no dispute. As a con- quence, many students do not feel any “ownership” of these ideas. Most other school subjects do somewhat better in these regards. For example, in language classes, s- dents suggest different interpretations of a text and then debate the relative merits of the cases being put forward. Moreover, ideas that are of use in science are presented to students elsewhere and then re-taught, often using different terminology, in s- ence. For example, algebra is taught in terms of “x, y, z” in mathematics classes, but students are later unable to see the relevance of that to the meaning of the universal gas laws in physics, where “p, v, t” are used. The result is that students are c- fused and too often alienated, leading to their failure to achieve that “extraction of an education from a scheme of instruction” which Jerome Bruner thought so highly desirable.

Multiple Representations in Chemical Education

Author : John K. Gilbert,David Treagust
Publisher : Springer Science & Business Media
Page : 369 pages
File Size : 43,6 Mb
Release : 2009-02-28
Category : Science
ISBN : 9781402088728

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Multiple Representations in Chemical Education by John K. Gilbert,David Treagust Pdf

Chemistry seeks to provide qualitative and quantitative explanations for the observed behaviour of elements and their compounds. Doing so involves making use of three types of representation: the macro (the empirical properties of substances); the sub-micro (the natures of the entities giving rise to those properties); and the symbolic (the number of entities involved in any changes that take place). Although understanding this triplet relationship is a key aspect of chemical education, there is considerable evidence that students find great difficulty in achieving mastery of the ideas involved. In bringing together the work of leading chemistry educators who are researching the triplet relationship at the secondary and university levels, the book discusses the learning involved, the problems that students encounter, and successful approaches to teaching. Based on the reported research, the editors argue for a coherent model for understanding the triplet relationship in chemical education.

Science Teachers’ Use of Visual Representations

Author : Billie Eilam,John K. Gilbert
Publisher : Springer
Page : 338 pages
File Size : 54,6 Mb
Release : 2014-07-11
Category : Science
ISBN : 9783319065267

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Science Teachers’ Use of Visual Representations by Billie Eilam,John K. Gilbert Pdf

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.

Reading for Evidence and Interpreting Visualizations in Mathematics and Science Education

Author : Stephen P. Norris
Publisher : Springer Science & Business Media
Page : 209 pages
File Size : 52,7 Mb
Release : 2012-09-17
Category : Education
ISBN : 9789460919244

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Reading for Evidence and Interpreting Visualizations in Mathematics and Science Education by Stephen P. Norris Pdf

CRYSTAL—Alberta was established to research ways to improve students’ understanding and reasoning in science and mathematics. To accomplish this goal, faculty members in Education, Science, and Engineering, as well as school teachers joined forces to produce a resource bank of innovative and tested instructional materials that are transforming teaching in the K-12 classroom. Many of the instructional materials cross traditional disciplinary boundaries and explore contemporary topics such as global climate change and the spread of the West Nile virus. Combined with an emphasis on the use of visualizations, the instructional materials improve students’ engagement with science and mathematics. Participation in the CRYSTAL—Alberta project has changed the way I think about the connection between what I do as a researcher and what I do as a teacher: I have learned how to better translate scientific knowledge into language and activities appropriate for students, thereby transforming my own teaching. I also have learned to make better connections between what students are learning and what is happening in their lives and the world, thereby increasing students’ interest in the subject and enriching their learning experience.

Visual Data and Their Use in Science Education

Author : Jon Pedersen,Kevin D. Finson
Publisher : IAP
Page : 351 pages
File Size : 54,9 Mb
Release : 2013-04-01
Category : Education
ISBN : 9781623962067

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Visual Data and Their Use in Science Education by Jon Pedersen,Kevin D. Finson Pdf

Visual Data in Science Education builds upon previous work done by the editors to bring some definition to the meaning of visual data as it relates to education, and highlighted the breadth of types and uses of visual data across the major academic disciplines. In this book, the editors have brought this focus specifically to science education through the contributions of colleagues in the field who actively research about and engage in teaching with visual data. The book begins by examining how the brain functions with respect to processing visual data, then explores models of conceptual frameworks, which then leads into how related ideas are actuated in education settings ranging from elementary science classrooms to college environments. As a whole, this book fosters a more coherent image of the multifaceted process of science teaching and learning that is informed by current understandings of science knowledge construction, the scientific enterprise, and the millennium student as they relate to visual data.

Policy and Practice in Science Education for the Gifted

Author : Manabu Sumida,Keith S Taber
Publisher : Routledge
Page : 199 pages
File Size : 53,8 Mb
Release : 2017-03-16
Category : Education
ISBN : 9781317803638

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Policy and Practice in Science Education for the Gifted by Manabu Sumida,Keith S Taber Pdf

Gifted education has come to be regarded as a key national programme in many coutnries, and gifted education in science disciplines is now being recognised to be of major importance for economic and technological development. Despite these initiatives and developments internationally, there are very few discussions on gifted education in science drawing upon practices and experiences in different national contexts. In support of an international dialogue between researchers and practitioners, often working within isolated traditions, this book offers information on key influential approaches to science education for gifted learners and surveys current policy and practice from a diverse range of educational contexts. The volume offers an informative introduction for those new to studying gifted science education, as well as supporting the development of the field by offering examples of critical thinking about key issues, and accounts of the influences at work within education systems and the practical complexities of providing science education for the gifted. The contributions draw upon a variety of research approaches to offer insights into the constraints and affordancxes of working within particular policy contexts, and the strengths and challenges inherent in different approaches to practice. Chapters include: Teaching science to the gifted in English state schools: locating a compromised 'gifted & talented' policy within its systemic context Models of education for science talented adolescents in the United States: Past, present, and likely future trends Navigating the shifting terrain between policy and practice for gifted learners in Tanzania Science education for female indigenous gifted students in the Mexican context Gifted Science Education in the Context of Japanese Standardization This book will appeal to scholars, practitioners and policy makers who are in the field of gifted science education.

Constructing Representations to Learn in Science

Author : Russell Tytler,Vaughan Prain,Peter Hubber,Bruce Waldrip
Publisher : Springer Science & Business Media
Page : 210 pages
File Size : 41,6 Mb
Release : 2013-04-20
Category : Education
ISBN : 9789462092037

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Constructing Representations to Learn in Science by Russell Tytler,Vaughan Prain,Peter Hubber,Bruce Waldrip Pdf

Constructing Representations to Learn in Science Current research into student learning in science has shifted attention from the traditional cognitivist perspectives of conceptual change to socio-cultural and semiotic perspectives that characterize learning in terms of induction into disciplinary literacy practices. This book builds on recent interest in the role of representations in learning to argue for a pedagogical practice based on students actively generating and exploring representations. The book describes a sustained inquiry in which the authors worked with primary and secondary teachers of science, on key topics identified as problematic in the research literature. Data from classroom video, teacher interviews and student artifacts were used to develop and validate a set of pedagogical principles and explore student learning and teacher change issues. The authors argue the theoretical and practical case for a representational focus. The pedagogical approach is illustrated and explored in terms of the role of representation to support quality student learning in science. Separate chapters address the implications of this perspective and practice for structuring sequences around different concepts, reasoning and inquiry in science, models and model based reasoning, the nature of concepts and learning, teacher change, and assessment. The authors argue that this representational focus leads to significantly enhanced student learning, and has the effect of offering new and productive perspectives and approaches for a number of contemporary strands of thinking in science education including conceptual change, inquiry, scientific literacy, and a focus on the epistemic nature of science.

Toward a Visually-Oriented School Mathematics Curriculum

Author : Ferdinand Rivera
Publisher : Springer Science & Business Media
Page : 316 pages
File Size : 54,6 Mb
Release : 2011-01-06
Category : Education
ISBN : 9789400700147

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Toward a Visually-Oriented School Mathematics Curriculum by Ferdinand Rivera Pdf

What does it mean to have a visual representation of a mathematical object, concept, or process? What visualization strategies support growth in mathematical thinking, reasoning, generalization, and knowledge? Is mathematical seeing culture-free? How can information drawn from studies in blind subjects help us understand the significance of a multimodal approach to learning mathematics? Toward a Visually-Oriented School Mathematics Curriculum explores a unified theory of visualization in school mathematical learning via the notion of progressive modeling. Based on the author’s longitudinal research investigations in elementary and middle school classrooms, the book provides a compelling empirical account of ways in which instruction can effectively orchestrate the transition from personally-constructed visuals, both externally-drawn and internally-derived, into more structured visual representations within the context of a socioculturally grounded mathematical activity. Both for teachers and researchers, a discussion of this topic is relevant in the history of the present. The ubiquity of technological tools and virtual spaces for learning and doing mathematics has aroused interest among concerned stakeholders about the role of mathematics in these contexts. The book begins with a prolegomenon on the author’s reflections on past and present visual studies in mathematics education. In the remaining seven chapters, visualization is pursued in terms of its role in bringing about progressions in mathematical symbolization, abduction, pattern generalization, and diagrammatization. Toward a Visually-Oriented School Mathematics Curriculum views issues surrounding visualization through the eyes of a classroom teacher-researcher; it draws on findings within and outside of mathematics education that help practitioners and scholars gain a better understanding of what it means to pleasurably experience the symmetric visual/symbolic reversal phenomenon – that is, seeing the visual in the symbolic and the symbolic in the visual."

Science Education

Author : Keith S. Taber,Ben Akpan
Publisher : Springer
Page : 606 pages
File Size : 40,6 Mb
Release : 2016-12-27
Category : Education
ISBN : 9789463007498

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Science Education by Keith S. Taber,Ben Akpan Pdf

"This book comprises a wide range of scholarly essays introducing readers to key topics and issues in science education. Science education has become a well established field in its own right, with a vast literature, and many active areas of scholarship. Science Education: An International Course Companion offers an entry point for students seeking a sound but introductory understanding of the key perspectives and areas of thinking in science education. Each account is self-contained and offers a scholarly and research-informed introduction to a particular topic, theme, or perspective, with both citations to key literature and recommendations for more advanced reading. Science Education: An International Course Companion allows readers (such as those preparing for school science teaching, or seeking more advanced specialist qualifications) to obtain a broad familiarity with key issues across the field as well as guiding wider reading about particular topics of interest. The book therefore acts as a reader to support learning across courses in science education internationally. The broad coverage of topics is such that that the book will support students following a diverse range of courses and qualifications. The comprehensive nature of the book will allow course leaders and departments to nominate the book as the key reader to support students – their core ‘course companion’ in science education."

Strategies for Deep Learning with Digital Technology

Author : Robert Zheng
Publisher : Unknown
Page : 0 pages
File Size : 43,6 Mb
Release : 2018
Category : Education
ISBN : 1536131822

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Strategies for Deep Learning with Digital Technology by Robert Zheng Pdf

How to utilize digital technology to engage learners in deep learning is an issue that warrants significant attention in 21st century education. Deep learning refers to learners engagement in critical and creative thinking, making inferences and transferring knowledge. Modern technologies like virtual reality, artificial intelligence, and 3D visualization provide the platform for deep learning in an educational setting more effectively. This book presents a collection of essays on the relationship between digital technologies and deep learning. The edited volume focuses on cognitive, metacognitive and affective processes in digital technology-based deep learning. A unique feature of the book is its emphasis on bridging the theories with practice where the practice of deep learning with digital technology is well-grounded in relevant theories and theoretical frameworks. Moreover, the book includes case studies to effectively promote the application of digital technology in deep learning. As such, the book is rightly poised to address current issues facing deep learning and digital technology in education. The audience will find this book a useful companion as they will soon discover that this book provides helpful information on both theoretical and practical aspects in deep learning with digital technology. It also serves as an excellent resource for researchers and individual professionals who seek to understand the relationship between deep learning and digital technology in education.

Science Teachers' Use of Visual Representations

Author : Billie Eilam,John K. Gilbert
Publisher : Unknown
Page : 348 pages
File Size : 44,7 Mb
Release : 2014-07-31
Category : Electronic
ISBN : 3319065270

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Science Teachers' Use of Visual Representations by Billie Eilam,John K. Gilbert Pdf

Modelling-based Teaching in Science Education

Author : John K. Gilbert,Rosária Justi
Publisher : Springer
Page : 264 pages
File Size : 52,9 Mb
Release : 2016-05-30
Category : Science
ISBN : 9783319290393

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Modelling-based Teaching in Science Education by John K. Gilbert,Rosária Justi Pdf

This book argues that modelling should be a component of all school curricula that aspire to provide ‘authentic science education for all’. The literature on modelling is reviewed and a ‘model of modelling’ is proposed. The conditions for the successful implementation of the ‘model of modelling’ in classrooms are explored and illustrated from practical experience. The roles of argumentation, visualisation, and analogical reasoning, in successful modelling-based teaching are reviewed. The contribution of such teaching to both the learning of key scientific concepts and an understanding of the nature of science are established. Approaches to the design of curricula that facilitate the progressive grasp of the knowledge and skills entailed in modelling are outlined. Recognising that the approach will both represent a substantial change from the ‘content-transmission’ approach to science teaching and be in accordance with current best-practice in science education, the design of suitable approaches to teacher education are discussed. Finally, the challenges that modelling-based education pose to science education researchers, advanced students of science education and curriculum design, teacher educators, public examiners, and textbook designers, are all outlined.

Knowledge Visualization and Visual Literacy in Science Education

Author : Ursyn, Anna
Publisher : IGI Global
Page : 431 pages
File Size : 48,9 Mb
Release : 2016-05-31
Category : Education
ISBN : 9781522504818

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Knowledge Visualization and Visual Literacy in Science Education by Ursyn, Anna Pdf

Effective communication within learning environments is a pivotal aspect to students’ success. By enhancing abstract concepts with visual media, students can achieve a higher level of retention and better understand the presented information. Knowledge Visualization and Visual Literacy in Science Education is an authoritative reference source for the latest scholarly research on the implementation of visual images, aids, and graphics in classroom settings and focuses on how these methods stimulate critical thinking in students. Highlighting concepts relating to cognition, communication, and computing, this book is ideally designed for researchers, instructors, academicians, and students.