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Visualization: Theory and Practice in Science Education

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Release : 2007-12-05
Genre : Education
Kind : eBook
Book Rating : 677/5 ( reviews)

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Book Synopsis Visualization: Theory and Practice in Science Education by : John K. Gilbert

Download or read book Visualization: Theory and Practice in Science Education written by John K. Gilbert. This book was released on 2007-12-05. Available in PDF, EPUB and Kindle. Book excerpt: 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

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Release : 2006-03-30
Genre : Science
Kind : eBook
Book Rating : 132/5 ( reviews)

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Book Synopsis Visualization in Science Education by : John K. Gilbert

Download or read book Visualization in Science Education written by John K. Gilbert. This book was released on 2006-03-30. Available in PDF, EPUB and Kindle. Book excerpt: 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

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Author :
Release : 2010-09-02
Genre : Science
Kind : eBook
Book Rating : 164/5 ( reviews)

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Book Synopsis Visualization in Mathematics, Reading and Science Education by : Linda M. Phillips

Download or read book Visualization in Mathematics, Reading and Science Education written by Linda M. Phillips. This book was released on 2010-09-02. Available in PDF, EPUB and Kindle. Book excerpt: 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

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Release : 2009-02-28
Genre : Science
Kind : eBook
Book Rating : 728/5 ( reviews)

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Book Synopsis Multiple Representations in Chemical Education by : John K. Gilbert

Download or read book Multiple Representations in Chemical Education written by John K. Gilbert. This book was released on 2009-02-28. Available in PDF, EPUB and Kindle. Book excerpt: 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.

Visualization in Science Education

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Release : 2005-07-05
Genre : Education
Kind : eBook
Book Rating : 125/5 ( reviews)

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Book Synopsis Visualization in Science Education by : John K. Gilbert

Download or read book Visualization in Science Education written by John K. Gilbert. This book was released on 2005-07-05. Available in PDF, EPUB and Kindle. Book excerpt: Visualization, meaning both the perception of an object that is seen or touched and the mental imagery that is the product of that perception, is believed to be a major strategy in all thought. It is particularly important in science, which seeks causal explanations for phenomena in the world-as-experienced. Visualization must therefore play a major role in science education. This book addresses key issues concerning visualization in the teaching and learning of science at any level in educational systems. ‘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.

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