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The book is an expanded autobiography of the famous theoretical physicist Isaak Khalatnikov. He worked together with L.D. Landau at the Institute for Physical Problems lead by P.L. Kapitza. He is the co-author of L.D. Landau in a number of important works. They worked together in the frame of the so-called Nuclear Bomb Project. After the death of L.D. Landau, I.M. Khalatnikov initiated the establishment of the Institute for Theoretical Physics, named in honour of L.D. Landau, within the USSR Academy of Sciences. He headed this institute from the beginning as its Director. The institute inherited almost all traditions of the Landau scientific school and played a prominent role in the development of theoretical physics. So, this is a story about how the institute was created, how it worked, and about the life of the physicists in the "golden age" of the Soviet science. A separate chapter is devoted to today ́s life of the institute and the young generation of physicists working now in science. It is an historically interesting book on the development of Soviet and Russian science and presents the background of the Soviet nuclear bomb program in the cold war age. In war times, Khalatnikov was a chief of the military staff of nuclear research. He writes about the internal conditions of Soviet society, the way of operating of the Soviet authorities and ways for scientists to interact with them. It gives many interesting insights into the development of superconductivity and superfluidity. The book is written by the most experienced and best informed person among the few living Russian scientists in the environment of Landau. Many stories of the book were never published before and considered as "top secret".
Here, for the first time, in a brilliant, panoramic portrait by the Pulitzer Prize-winning author of The Making of the Atomic Bomb, is the definitive, often shocking story of the politics and the science behind the development of the hydrogen bomb and the birth of the Cold War. Based on secret files in the United States and the former Soviet Union, this monumental work of history discloses how and why the United States decided to create the bomb that would dominate world politics for more than forty years.
This book presents fundamentals, equations, and methods of solutions of relativistic kinetic theory, with applications in astrophysics and cosmology.
'Political intrigue, the arms race, early developments of nuclear science, espionage and more are all present in this gripping book … The book is crisply written and well worth the read. The text includes a number of translated segments of official documents plus extracts from memoirs of some of the people involved. So, although Pondrom sprinkles his opinions throughout, there is sufficient material to permit readers to make their own judgements. 'CERN The book describes the lives of the people who gave Stalin his weapon — scientists, engineers, managers, and prisoners during the early post war years from 1945-1953. Many anecdotes and vicissitudes of life at that time in the Soviet Union accompany considerable technical information regarding the solutions to formidable problems of nuclear weapons development. The contents should interest the reader who wants to learn more about this part of the history and politics in 20th century physics. The prevention of nuclear proliferation is a topic of current interest, and the procedure followed by the Soviet Union as described in this book will help to understand the complexities involved.
From July to December in 1945, ten German scientists, Bagge, Diebner, Gerlach, Hahn, Harteck, Heisenberg, Korsching, von Laue, von Weizsacker, and Wirtz, were held and clandestinely recorded by the British. The scientists discuss their progress and react to the bombing of Hiroshima.
This volume provides a compact presentation of modern statistical physics at an advanced level, from the foundations of statistical mechanics to the main modern applications of statistical physics. Special attention is given to new approaches, such as quantum field theory methods and non-equilibrium problems. This second, revised edition is expanded with biographical notes contextualizing the main results in statistical physics.
Questions traditional explanations for Jewish excellence in science in the United States, the Soviet Union, and Palestine in the twentieth century. Scholars have struggled for decades to explain why Jews have succeeded extravagantly in modern science. A variety of controversial theories—from such intellects as C. P. Snow, Norbert Wiener, and Nathaniel Weyl—have been promoted. Snow hypothesized an evolved genetic predisposition to scientific success. Wiener suggested that the breeding habits of Jews sustained hereditary qualities conducive for learning. Economist and eugenicist Weyl attributed Jewish intellectual eminence to "seventeen centuries of breeding for scholars." Rejecting the idea that Jews have done well in science because of uniquely Jewish traits, Jewish brains, and Jewish habits of mind, historian of science Noah J. Efron approaches the Jewish affinity for science through the geographic and cultural circumstances of Jews who were compelled to settle in new worlds in the early twentieth century. Seeking relief from religious persecution, millions of Jews resettled in the United States, Palestine, and the Soviet Union, with large concentrations of settlers in New York, Tel Aviv, and Moscow. Science played a large role in the lives and livelihoods of these immigrants: it was a universal force that transcended the arbitrary Old World orders that had long ensured the exclusion of all but a few Jews from the seats of power, wealth, and public esteem. Although the three destinations were far apart geographically, the links among the communities were enduring and spirited. This shared experience—of facing the future in new worlds, both physical and conceptual—provided a generation of Jews with opportunities unlike any their parents and grandparents had known. The tumultuous recent century of Jewish history, which saw both a methodical campaign to blot out Europe's Jews and the inexorable absorption of Western Jews into the societies in which they now live, is illuminated by the place of honor science held in Jewish imaginations. Science was central to their dreams of creating new worlds—welcoming worlds—for a persecuted people. This provocative work will appeal to historians of science as well as scholars of religion, Jewish studies, and Zionism.
The Natural Resources Defense Council once again provides the definitive account of the current status of Russian nuclear weapons. Taking advantage of previously unavailable information the authors describe the origins, growth, and decline of the massive Soviet nuclear weapons production complex-the places involved in the recent headline-making epi
One of the Best Books of 2020 — Financial Times One of the "Most 2020 Books of 2020" — Washington Post One of the Best Science Books of 2020 — The Times of London One of the Best Science Books of 2020 — The Guardian From ideas and infections to financial crises and fake news, an "utterly timely" look at why the science of outbreaks is the science of modern life These days, whenever anything spreads, whether it's a YouTube fad or a political rumor, we say it went viral. But how does virality actually work? In The Rules of Contagion, epidemiologist Adam Kucharski explores topics including gun violence, online manipulation, and, of course, outbreaks of disease to show how much we get wrong about contagion, and how astonishing the real science is. Why did the president retweet a Mussolini quote as his own? Why do financial bubbles take off so quickly? Why are disinformation campaigns so effective? And what makes the emergence of new illnesses -- such as MERS, SARS, or the coronavirus disease COVID-19 -- so challenging? By uncovering the crucial factors driving outbreaks, we can see how things really spread -- and what we can do about it. Whether you are an author seeking an audience, a defender of truth, or simply someone interested in human social behavior, The Rules of Contagion is an essential guide to modern life.
'The statuary and monuments catalogued in this impressive body of work are accompanied by descriptions of the subjects their work and achievements.'Chemistry WorldMoscow is the center of science and higher education of Russia and is also an international hub of science. There have been milestone achievements of science in Russia (and the Soviet Union), especially in the areas of physics, chemistry, mathematics, the conquest of space, various technologies and medicine. However, the scientists and inventors often created in isolation and have become less known than their discoveries would justify. At the same time, there is no other city in the world that has so many memorials honoring scientists as Moscow. There is a caveat in that political considerations have often influenced who was remembered and who was not. This book presents statues, memorial plaques, and historical buildings. Not only celebrated excellences are mentioned, but also some of the greats that perished during the years of terror. The book is full of human drama and 750 photos illustrate the narrative. Science in Moscow follows Budapest Scientific and New York Scientific and is the third in the series about memorials of scientists in great cities of the world.