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Which factors have been influential in developing science teaching and learning for the three to thirteen age group in the last twenty years? How might these factors have an impact on the future direction of science teaching and learning for this age range into the 21st century? How can teachers cope with the changes? Science 3-13 explores some of the historical antecedents of the current position of science in the lives of younger children. It covers the various influences, both from within and outside the teaching profession, that have shaped the current science curriculum. Current practice is examined and, on this basis, speculations are made about the future position and direction of this important subject. The contributors each cover a particular aspect of science for the 3-13 age range but common themes emerge such as the influence of government intentions, particularly through the development of the National Curriculum. The role of research groups and the impact of ICT on the teaching profession as to what is important to teach and how science and science teaching should be viewed within society are shown to be important factors in the mix that contributes to change. This book forms part of a series of key texts which focus on a range of topics related to primary education and schooling. Each book in the Primary Directions Series will review the past, analyse current issues, suggest coping strategies for practitioners and speculate on the future.
Learning objectives clearly lay down the expected outcome of each chapter.Emphasis is given on understanding concepts using very simple explanations and language. Multiple Choice Questions (MCQs) are included in exercises as recommended in CCE.
International Journal of Neutrosophic Science (IJNS) is a peer-review journal publishing high quality experimental and theoretical research in all areas of Neutrosophic and its Applications. IJNS is published quarterly. IJNS is devoted to the publication of peer-reviewed original research papers lying in the domain of neutrosophic sets and systems. Papers submitted for possible publication may concern with foundations, neutrosophic logic and mathematical structures in the neutrosophic setting. Besides providing emphasis on topics like artificial intelligence, pattern recognition, image processing, robotics, decision making, data analysis, data mining, applications of neutrosophic mathematical theories contributing to economics, finance, management, industries, electronics, and communications are promoted.
Progress in Pacific Polymer Science 3 continues the record of the current status of major topics in polymer science. The invited lecturers cover the following topics: - Adding Value to Natural Polymers - Polymers and the Environment - Polymers in Mining and Mineral Processing - Multicomponent Polymer Systems - Characterization, Properties and Processing - Functional Polymers - Polymers for Medical Applications - Polymer Recycling - Polymer Surfaces of Biological Significance - New and Advanced Polymer Materials
A series of six books for Classes IX and X according to the CBSE syllabus
This three-volume book provides a comprehensive review of experiments in very strong magnetic fields that can only be generated with very special magnets. The first volume is entirely devoted to the technology of laboratory magnets: permanent, superconducting, high-power water-cooled and hybrid; pulsed magnets, both nondestructive and destructive (megagauss fields). Volumes 2 and 3 contain reviews of the different areas of research where strong magnetic fields are an essential research tool. These volumes deal primarily with solid-state physics; other research areas covered are biological systems, chemistry, atomic and molecular physics, nuclear resonance, plasma physics and astrophysics (including QED).