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The rich and fascinating history of the scientific revolution of the Victorian Era, leading to transformative advances in the twentieth and twenty-first centuries. The Victorians invented the idea of the future. They saw it as an undiscovered country, one ripe for exploration and colonization. And to get us there, they created a new way of ordering and transforming nature, built on grand designs and the mass-mobilization of the resources of the British Empire. With their expert culture of accuracy and precision, they created telegraphs and telephones, electric trams and railways, built machines that could think, and devised engines that could reach for the skies. When Cyrus Field’s audacious plan to lay a telegraph cable across the Atlantic finally succeeded in 1866, it showed how science, properly disciplined, could make new worlds. As crowds flocked to the Great Exhibition of 1851 and the exhibitions its success inaugurated, they came to see the future made fact—to see the future being built before their eyes. In this rich and absorbing book, a distinguished historian of science tells the story of how this future was made. From Charles Babbage’s dream of mechanizing mathematics to Isambard Kingdom Brunel’s tunnel beneath the Thames to George’s Cayley’s fantasies of powered flight and Nikola Tesla’s visions of an electrical world, it is a story of towering personalities, clashing ambitions, furious rivalries and conflicting cultures—a rich tapestry of remarkable lives that transformed the world beyond recognition and ultimately took mankind to the Moon
'Terrific and enthralling' New Scientist Fifty years ago, in July 1969, Apollo 11 became the first manned mission to land on the Moon, and Neil Armstrong the first man to step on to its surface. He and his crewmates, Buzz Aldrin and Michael Collins, were the latest men to risk their lives in this extraordinary scientific, engineering and human venture that would come to define the era. In Apollo 11: The Inside Story, David Whitehouse reveals the true drama behind the mission, putting it in the context of the wider space race and telling the story in the words of those who took part – based around exclusive interviews with the key players. This enthralling book takes us from the early rocket pioneers to the shock America received from the Soviets' launch of the first satellite, Sputnik; from the race to put the first person into space to the iconic Apollo 11 landing and beyond, to the agonising drama of the Apollo 13 disaster and the eventual winding-up of the Apollo program. Here is the story as told by the crew of Apollo 11 and the many others who shared in their monumental endeavour. Astronauts, engineers, politicians, NASA officials, Soviet rivals – all tell their own story of a great moment of human achievement.
'[This] crisply succinct, beautifully synthesized study brings to life Tesla, his achievements and failures...and the hopeful thrum of an era before world wars.' - Nature Nikola Tesla is one of the most enigmatic, curious and controversial figures in the history of science. An electrical pioneer as influential in his own way as Thomas Edison, he embodied the aspirations and paradoxes of an age of innovation that seemed to have the future firmly in its grasp. In an era that saw the spread of power networks and wireless telegraphy, the discovery of X-rays, and the birth of powered flight, Tesla made himself synonymous with the electrical future under construction but opinion was often divided as to whether he was a visionary, a charlatan, or a fool. Iwan Rhys Morus examines Tesla's life in the context of the extraordinary times in which he lived and worked, colourfully evoking an age in which anything seemed possible, from capturing the full energy of Niagara to communicating with Mars. Shattering the myth of the 'man out of time', Morus demonstrates that Tesla was in all ways a product of his era, and shows how the popular image of the inventor-as-maverick-outsider was deliberately crafted by Tesla - establishing an archetype that still resonates today.
Long before the European Enlightenment, scholars and researchers working from Samarkand in modern-day Uzbekistan to Cordoba in Spain advanced our knowledge of astronomy, chemistry, engineering, mathematics, medicine and philosophy. From Musa al-Khwarizmi who developed algebra in 9th century Baghdad to al-Jazari, a 13th-century Turkish engineer whose achievements include the crank, the camshaft and the reciprocating piston, Ehsan Masood tells the amazing story of one of history's most misunderstood yet rich and fertile periods in science, via the scholars, research, and science of the Islamic empires of the middle ages.
Francis Bacon - a leading figure in the history of science - never made a major discovery, provided a lasting explanation of any physical phenomena or revealed any hidden laws of nature. How then can he rank as he does alongside Newton? Bacon was the first major thinker to describe how science should be done, and to explain why. Scientific knowledge should not be gathered for its own sake but for practical benefit to mankind. And Bacon promoted experimentation, coming to outline and define the rigorous procedures of the 'scientific method' that today from the very bedrock of modern scientific progress. John Henry gives a dramatic account of the background to Bacon's innovations and the sometimes unconventional sources for his ideas. Why was he was so concerned to revolutionize the attitude to scientific knowledge - and why do his ideas for reform still resonate today?
Having escaped domestic servitude in Germany by teaching herself to sing, and established a career in England, Caroline Herschel learned astronomy while helping her brother William, then Astronomer Royal. Soon making scientific discoveries in her own right, she swept to international scientific and popular fame. She was awarded a salary by George III in 1787 – the first woman in Britain to make her living from science. But, as a woman in a male-dominated world, Herschel's great success was achieved despite constant frustration of her ambitions. Drawing on original sources – including Herschel's diaries and her fiery letters – Claire Brock tells the story of a woman determined to win independence and satisfy her astronomical ambition.
Riddled with jealousy, rivalry, missed opportunities and moments of genius, the history of the atom's discovery is as bizarre, as capricious, and as weird as the atom itself. John Dalton gave us the first picture of the atom in the early 1800s. Almost 100 years later the young misfit New Zealander, Ernest Rutherford, showed the atom consisted mostly of space, and in doing so overturned centuries of classical science. It was a brilliant Dane, Neils Bohr, who made the next great leap - into the incredible world of quantum theory. Yet, he and a handful of other revolutionary young scientists weren't prepared for the shocks Nature had up her sleeve. This 'insightful, compelling' book ( New Scientist) reveals the mind-bending discoveries that were destined to upset everything we thought we knew about reality and unleash a dangerous new force upon the world. Even today, as we peer deeper and deeper into the atom, it throws back as many questions at us as answers.
Medicine, anatomy, astronomy, mathematics and cosmology, science began with the Greeks, and Plato, Aristotle, Pythagoras, Archimedes and Hippocrates were amongst its stars. That man ever managed to develop a 'scientific' attitude to the natural world at all is one of the true wonders of human thought. Eureka! shows how, free from intellectual and religious dogma, these early thinkers rejected myths and capricious gods and, in distinguishing between the natural and supernatural, effectively discovered nature. Andrew Gregory, Professor of History and Philosophy of Science at University College London, unravels the genesis of science in this fascinating exploration of the origins of Western civilisation, and our desire for a rational, legitimating system of the world.
Tracing uranium's past, and how it intersects with our understanding of other radioactive elements, this book aims to disentangle our attitudes and to unpick the atomic mindset. Chain Reactions looks at the fascinating, often-forgotten, stories that can be found throughout the history of the element. Ranging from glassworks to penny stocks; medicines to weapons; something to be feared to a powerful source of energy, this global history not only explores the development of our scientific understanding of uranium, but also shines a light on its cultural and social impact. By understanding our nuclear past, we can move beyond the ideological opposition to atomic technology and encourage a more nuanced dialogue about whether it is feasible - and desirable - to have a genuinely nuclear-powered future.
The only scientist to ever appear on the British twenty pound note, Michael Faraday is one of the most recognisable names in the history of science. Faraday's forte was electricity, a revolutionary force in nineteenth-century society. The electric telegraph had made mass-communication possible and inventors looked forward to the day when electricity would control all aspects of life. By the end of the century, this dream was well on its way to being realised. But what was Faraday's role in all this? How did his science come to have such an impact on the lives of the Victorians (and ultimately on us)? Iwan Morus tells the story of Faraday's upbringing in London and his apprenticeship at the Royal Institution under the supervision of the flamboyant chemist, Sir Humphry Davy, all set against the backdrop of a vibrant scientific culture and an empire near the peak of its power.