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This work presents new and past discoveries in science for laymen.
Originally published by Bodley Head, 2012.
Seventeenth-century Europe witnessed an extraordinary flowering of discoveries and innovations. This study, beginning with the Dutch-invented telescope of 1608, casts Galileo's discoveries into a global framework. Although the telescope was soon transmitted to China, Mughal India, and the Ottoman Empire, those civilizations did not respond as Europeans did to the new instrument. In Europe, there was an extraordinary burst of innovations in microscopy, human anatomy, optics, pneumatics, electrical studies, and the science of mechanics. Nearly all of those aided the emergence of Newton's revolutionary grand synthesis, which unified terrestrial and celestial physics under the law of universal gravitation. That achievement had immense implications for all aspects of modern science, technology, and economic development. The economic implications are set out in the concluding epilogue. All these unique developments suggest why the West experienced a singular scientific and economic ascendancy of at least four centuries.
New insights from the science of science Facts change all the time. Smoking has gone from doctor recommended to deadly. We used to think the Earth was the center of the universe and that the brontosaurus was a real dinosaur. In short, what we know about the world is constantly changing. Samuel Arbesman shows us how knowledge in most fields evolves systematically and predictably, and how this evolution unfolds in a fascinating way that can have a powerful impact on our lives. He takes us through a wide variety of fields, including those that change quickly, over the course of a few years, or over the span of centuries.
Curiosity is the foundation of childhood development and continues on into adulthood; it is the cornerstone of scientific discovery, art and play. In the past, the study of curiosity has been mainly restricted to the field of psychology. Recently, a new science of curiosity has emerged that is multidisciplinary, applicative, and transformative. In this book, some of the leading researchers of this emerging field give a comprehensive background description, explain in detail the state-of-the-art advances, and raise future-looking insights into curiosity. The book includes accounts of new neuroscientific research of curiosity, computational models of infant-like robots, thought-provoking insights into knowledge and wisdom, and curious social robots that play with curious children. Furthermore, applications of The New Science of Curiosity in art and game-design highlight the importance of these new approaches to fields outside science. The New Science of Curiosity also has a great impact on our day-to-day lives, described in the book regarding the medical profession and the educational system. The New Science of Curiosity holds great promise for a better, deeper, and more comprehensive understanding of this elusive, yet crucial, aspect of human cognition. Only a multi-disciplinary diverse approach, as presented in this book, holds the key to unlocking the mysteries of exploration, seeking and investigative experiences of our grandiose dreams and daily lives.
"Captures the excitement of the scientific revolution and makes a point of celebrating the advances it ushered in." —Financial Times A companion to such acclaimed works as The Age of Wonder, A Clockwork Universe, and Darwin’s Ghosts—a groundbreaking examination of the greatest event in history, the Scientific Revolution, and how it came to change the way we understand ourselves and our world. We live in a world transformed by scientific discovery. Yet today, science and its practitioners have come under political attack. In this fascinating history spanning continents and centuries, historian David Wootton offers a lively defense of science, revealing why the Scientific Revolution was truly the greatest event in our history. The Invention of Science goes back five hundred years in time to chronicle this crucial transformation, exploring the factors that led to its birth and the people who made it happen. Wootton argues that the Scientific Revolution was actually five separate yet concurrent events that developed independently, but came to intersect and create a new worldview. Here are the brilliant iconoclasts—Galileo, Copernicus, Brahe, Newton, and many more curious minds from across Europe—whose studies of the natural world challenged centuries of religious orthodoxy and ingrained superstition. From gunpowder technology, the discovery of the new world, movable type printing, perspective painting, and the telescope to the practice of conducting experiments, the laws of nature, and the concept of the fact, Wotton shows how these discoveries codified into a social construct and a system of knowledge. Ultimately, he makes clear the link between scientific discovery and the rise of industrialization—and the birth of the modern world we know.