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Teaching Science to Every Child proposes a fresh perspective for teaching school science and draws upon an extensive body of classroom research to meaningfully address the achievement gap in science education. Settlage and Southerland begin from the point of view that science can be thought of as a culture, rather than as a fixed body of knowledge. Throughout this book, the idea of culture is used to illustrate how teachers can guide all students to be successful in science while still being respectful of students' ethnic heritages and cultural traditions. By combining a cultural view of science with instructional approaches shown to be effective in a variety of settings, the authors provide elementary and middle school teachers with a conceptual framework as well as pedagogical approaches which support the science learning of a diverse array of students.
Using simple text this mini book offers an introduction to what's inside the body, written with the aim of helping to answer children's questions. It is one of a series of books about the natural and scientific world which offers safe and easy experiments to help clarify explanations.
Questions and answers explore the scientific aspects of the world around us.
Each book in this bright, exciting series for young children introduces an aspect of the natural or technological world, providing a wealth of fascinating information. The series explores a wide variety of subjects such as what makes a shadow, why flamingos are pink, what makes your tummy rumble and how fish breathe underwater. Where it is appropriate, there are safe and easy experiments to help clarify explanations. The simple text and detailed illustrations combine to answer the question of each title in clear, step-by-step stages. Young children who are just beginning to read will enjoy sharing these books with an adult, while more confident readers will have fun discovering for themselves.
The role of science in policymaking has gained unprecedented stature in the United States, raising questions about the place of science and scientific expertise in the democratic process. Some scientists have been given considerable epistemic authority in shaping policy on issues of great moral and cultural significance, and the politicizing of these issues has become highly contentious. Since World War II, most philosophers of science have purported the concept that science should be "value-free." In Science, Policy and the Value-Free Ideal, Heather E. Douglas argues that such an ideal is neither adequate nor desirable for science. She contends that the moral responsibilities of scientists require the consideration of values even at the heart of science. She lobbies for a new ideal in which values serve an essential function throughout scientific inquiry, but where the role values play is constrained at key points, thus protecting the integrity and objectivity of science. In this vein, Douglas outlines a system for the application of values to guide scientists through points of uncertainty fraught with moral valence.Following a philosophical analysis of the historical background of science advising and the value-free ideal, Douglas defines how values should-and should not-function in science. She discusses the distinctive direct and indirect roles for values in reasoning, and outlines seven senses of objectivity, showing how each can be employed to determine the reliability of scientific claims. Douglas then uses these philosophical insights to clarify the distinction between junk science and sound science to be used in policymaking. In conclusion, she calls for greater openness on the values utilized in policymaking, and more public participation in the policymaking process, by suggesting various models for effective use of both the public and experts in key risk assessments.
How does science work? Does it tell us what the world is “really” like? What makes it different from other ways of understanding the universe? In Theory and Reality, Peter Godfrey-Smith addresses these questions by taking the reader on a grand tour of more than a hundred years of debate about science. The result is a completely accessible introduction to the main themes of the philosophy of science. Examples and asides engage the beginning student, a glossary of terms explains key concepts, and suggestions for further reading are included at the end of each chapter. Like no other text in this field, Theory and Reality combines a survey of recent history of the philosophy of science with current key debates that any beginning scholar or critical reader can follow. The second edition is thoroughly updated and expanded by the author with a new chapter on truth, simplicity, and models in science.
Each book in this series provides an introduction to an aspect of the natural or scientific world, here illness, with lots of information to help answer children's questions about the world around them. They contain safe and easy experiments to help clarify explanations.
Bored of biology? Crushed by chemistry? Perplexed by physics? DOES SCIENCE REALLY MATTER ANYWAY? Oh, only for... JUST ABOUT EVERYTHING! From how to stop a virus to defy gravity, and from how to predict the future to how to see the past, this ebook shows you where science started, why it matters now, and the jaw-dropping places it may lead us to in the future. It will change the way you think about science FOREVER! Beautiful hand-drawn illustrations show you how history's most ingenious and daring scientists solved mysteries that had puzzled the ancient world for millennia, triggering an age of discovery that gave us telescopes, flying machines, steam engines, antibiotics, electricity, radio, space travel, and computers. Discover the amazing men and women who challenged conventional thinking and put their lives at risk to learn about everything, from planetary orbits and gold to germs, and from gunpowder to radioactivity. What's the Point of Science? explains in super-simple terms how science really works and why it changed the world. It's packed with surprising facts, tales of ingenuity and endeavour, and beautiful, unique illustrations. This ebook is about how scientists changed the world, one breakthrough at a time, and it is guaranteed to inspire, surprise, amuse, and entertain everybody who downloads it.
The best-selling guide to network science, the revolutionary field that reveals the deep links between all forms of human social life A cocktail party. A terrorist cell. Ancient bacteria. An international conglomerate. All are networks, and all are a part of a surprising scientific revolution. In Linked, Albert-Lálórabá, the nation's foremost expert in the new science of networks, takes us on an intellectual adventure to prove that social networks, corporations, and living organisms are more similar than previously thought. Barabá shows that grasping a full understanding of network science will someday allow us to design blue-chip businesses, stop the outbreak of deadly diseases, and influence the exchange of ideas and information. Just as James Gleick and the Erdos-Réi model brought the discovery of chaos theory to the general public, Linked tells the story of the true science of the future and of experiments in statistical mechanics on the internet, all vital parts of what would eventually be called the Barabá-Albert model.