Livros sobre o tema "Quantum space-times"

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1

Feynman. New York: First Second, 2011.

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2

Hawking, S. W. The illustrated A brief history of time. New York: Bantam Books, 1996.

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3

Hawking, S. W. A brief history of time: From the big bang to black holes. Toronto: Bantam Books, 1988.

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4

Hawking, S. W. A brief history of time: From the big bang to black holes. Oxford: ISIS Large Print, 1989.

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5

Hawking, S. W. Shi jian jian shi: Cha tu ban. Changsha Shi: Hunan ke xue ji shu chu ban she, 2007.

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6

Hawking, S. W. A brief history of time. New York: Bantam Books, 1998.

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7

Hawking, S. W. A brief history of time: From the big bang to black holes. New York: Bantam Books, 1989.

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8

Hawking, S. W. Kratka︠i︡a istori︠i︡a vremeni: Ot bolʹshogo vzryva do chernykh dyr. Sankt-Peterburg: Amfora, 2009.

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9

Hawking, S. W. Dal Big Bang ai buchi neri. Milano: Rizzoli, 2000.

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10

Hawking, S. W. A Brief History of Time: From the Big Bang to Black Holes. London, UK: Bantam Books Ltd, 1995.

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11

Hawking, S. W. Lươc sử thời gian =: A brief history of time. Thành phố Hồ Chí Minh: NXB Trẻ, 2009.

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12

Hawking, S. W. A brief history of time: From the big bang to black holes. London: Guild, 1988.

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13

Hawking, S. W. Tu jie shi jian jian shi. Taibei Shi: Da kuai wen hua chu ban gu fen you xian gong si, 2012.

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14

Hawking, S. W. Historia del tiempo: Del big bang a los agujeros negros. Barcelona: Crítica, 2011.

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15

Hawking, S. W. A brief history of time: From the big bang to black holes. London: Bantam Press, 1988.

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16

Hawking, S. W. Dal Big Bang ai buchi neri. Milano: Rizzoli, 1990.

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17

Hawking, S. W. Une brève histoire du temps: Du Big Bang aux trous noirs. Paris: France Loisirs, 1989.

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18

Hawking, S. W. A brief history of time: From the big bang to black holes. Toronto: Bantam Books, 1990.

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19

Hawking, S. W. A brief history of time. London: BCA, 1998.

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20

Hawking, S. W. A brief history of time: From the big bang to black holes. Boston, Mass: G.K. Hall, 1989.

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21

Hawking, S. W. A briefhistory of time: From the big bang to black holes. Toronto: Bantam Books, 1988.

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22

Hawking, S. W. Historia del tiempo: Del big bang a los agujeros negros. Barcelona: Editorial Crítica, 1988.

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23

Hawking, S. W. A brief history of time: From the big bang to black holes. London: Guildn, 1988.

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24

Hawking, S. W. Dal Big Bang ai buchi neri: Breve storia del tempo. Milano: Rizzoli, 2007.

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25

Hawking, S. W. Shi jian jian shi xu bian. Changsha Shi: Hu nan ke xue ji shu chu ban she, 1996.

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26

Hawking, S. W. Historia del tiempo: Del Big Bang a los agujeros negros. Caracas: Crítica, 1989.

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27

Hawking, S. W. A brief history of time. Prince Frederick, MD: Recorded Books, 2014.

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28

Hawking, S. W. Mei tian du yi dian shi jian jian shi. 2a ed. Haikou Shi: Nanhai chu ban gong si, 2010.

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29

Hawking, S. W. Shi jian jian shi. 3a ed. Taibei Xian: Yi wen yin shu guan, 1990.

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30

Hawking, S. W. Breve historia del tiempo: Un compañero del lector. México, D.F: Editorial Planeta Mexicana, 2004.

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31

Hawking, S. W. A brief history of time: From the big bang to black holes. London: Bantam, 1988.

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32

Belnap, Nuel, Thomas Müller e Tomasz Placek. Branching Space-Times. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780190884314.001.0001.

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This book develops a rigorous theory of indeterminism as a local and modal concept. Its crucial insight is that our world contains events or processes with alternative, really possible outcomes. The theory aims at clarifying what this assumption involves, and it does it in two ways. First, it provides a mathematically rigorous framework for local and modal indeterminism. Second, we support that theory by spelling out the philosophically relevant consequences of this formulation and by showing its fruitful applications in metaphysics. To this end, we offer a formal analysis of modal correlations and of causation, which is applicable in indeterministic and non-local contexts as well. We also propose a rigorous theory of objective single-case probabilities, intended to represent degrees of possibility. In a third step, we link our theory to current physics, investigating how local and modal indeterminism relates to issues in the foundations of physics, in particular, quantum non-locality and spatio-temporal relativity. The book also ventures into the philosophy of time, showing how the theory’s resources can be used to explicate the dynamic concept of the past, present, and future based on local indeterminism.
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33

Kachelriess, Michael. Quantum fields in curved spacetime. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198802877.003.0023.

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After a review of conformal symmetry, this chapter covers the quantisation of fields in curved space-times. It is shown that field operators defined with respect to different vacua are related by a Bogolyubov transformation and that the mixing of positive and negative frequencies determines the amount of particle production. The Unruh effect is explained and it is shown that in a space-time with an event horizon, a thermal spectrum of particles is created close to the horizon.
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34

Susskind, Leonard. Black Hole War: My Battle with Stephen Hawking to Make the World Safe for Quantum Mechanics. Little Brown & Company, 2008.

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35

A Conjuring of Light. New York, USA: Tor, 2018.

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36

A Conjuring of Light. New York, USA: Tor Books, 2017.

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37

Susskind, Leonard. The Black Hole War: My Battle with Stephen Hawking to Make the World Safe for Quantum Mechanics. Little, Brown and Company, 2008.

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38

Susskind, Leonard. The Black Hole War: My Battle with Stephen Hawking to Make the World Safe for Quantum Mechanics. Back Bay Books, 2009.

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39

Avshalumov, Alexander Shamailovich. Theory of the Stationary Self-Consistent Universe. Publishing House Triumph, 2021. http://dx.doi.org/10.32986/978-5-94472-045-0-2021-3-92.

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Since the creation of GR and subsequent works in cosmology, the question of the curvature of space in the Universe is considered one of the most important and debated to this day. This is evident, because the curvature of space depends whether the Universe expands, contracts or is static. These discussions allowed the author to propose a paradoxical idea: simultaneous existence in the Universe of three interconnected space-times (positive, negative and zero curvature) and on this basis, to develop a theory in which each space-time plays its own role and develops in a strict accordance with its sign of curvature. The three space-time model of the structure of the Universe, proposed by the author, allows to solve many fundamental problems of modern cosmology and theoretical physics and creates the basis for building a unified physical theory (including one that unites GR and quantum physics).
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40

Susskind, Leonard. Trous noirs : La guerre des savants. Robert Laffont, 2010.

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41

Der Krieg um das Schwarze Loch: Wie ich mit Stephen Hawking um die Rettung der Quantenmechanik rang. Berlin, Germany: Suhrkamp Verlag, 2010.

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42

Wolf, E. L. Introduction. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198769804.003.0001.

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An introduction to long-term climate-neutral energy makes clear that most arises from the Sun or the motions of the Sun-Earth system. Quantum physics is an essential part of understanding the Sun’s energy source, nuclear fusion. The expected depletion times of oil and other fossil fuels are discussed. The most recent 500,000 years of Earth temperature and sea level are surveyed and shown to correlate closely with carbon dioxide levels in the atmosphere. Sea level and temperature are correlated and move together on time scales of five thousand years. The definition of sustainable energy, the topic of this textbook, is very straightforward. This is the energy that will be available on (after) a timescale set by the earliest benchmarks of our civilization, let us say the timescale of the earliest pyramids or the Chinese Wall, visible from space.
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43

Myrick, Leland, e Jim Ottaviani. Feynman. First Second, 2013.

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44

Campbell, John, Joey Huston e Frank Krauss. Hard Scattering Formalism. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199652747.003.0002.

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The hard scattering formalism is introduced, starting from a physical picture based on the idea of equivalent quanta borrowed from QED, and the notion of characteristic times. Contact to the standard QCD treatment is made after discussing the running coupling and the Altarelli–Parisi equations for the evolution of parton distribution functions, both for QED and QCD. This allows a development of a space-time picture for hard interactions in hadron collisions, integrating hard production cross sections, initial and final state radiation, hadronization, and multiple parton scattering. The production of a W boson at leading and next-to leading order in QCD is used to exemplify characteristic features of fixed-order perturbation theory, and the results are used for some first phenomenological considerations. After that, the analytic resummation of the W boson transverse momentum is introduced, giving rise to the notion of a Sudakov form factor. The probabilistic interpretation of the Sudakov form factor is used to discuss patterns in jet production in electron-positron annihilation.
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45

Blum, Deborah, Ashley Smart e Tom Zeller Jr., eds. A Tactical Guide to Science Journalism. Oxford University Press, 2022. http://dx.doi.org/10.1093/oso/9780197551509.001.0001.

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Abstract A Tactical Guide to Science Journalism is a compendium of advice, insights, and lessons about how to do excellent and thoughtful science journalism from some of the best science journalists working today. With chapters from more than 40 leading practitioners from around the world, representing publications from the New Yorker to the BBC, Science magazine to the New York Times, the book includes sections on storytelling craft and basics, investigative reporting, digital media, international journalism, and specialty beats, ranging from infectious disease to cyberterrorism. A sample of chapters includes Paige Williams, of the New Yorker on magazine writing; Helen Branswell of STAT on infectious disease reporting; Thomas Lin, editor of Quanta, on digital magazines; Dan Fagin, author of the Pulitzer Prize–winning book Tom’s River, on book authorship; Martin Enserink, international editor of Science, on cross-border narratives; Apoorva Mandavilli of the New York Times on dealing with mistrust; Pallab Ghosh of the BBC on the art of the interview; Maggie Koerth of FiveThirtyEight on statistics reporting; Nadia Drake of National Geographic on astronomy and space journalism; and Sarah Kaplan, of the Washington Post, on climate and environment reporting. The book, packed full of beautifully told and compelling essays on key issues in science journalism, also explores ethical challenges and decision-making by experienced journalists, resulting in a product both practical and full of philosophical insights into the profession.
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46

Hawking, S. W. A Brief History of Time. Barnes & Noble, 2003.

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47

(Narrator), Michael Jackson, ed. A Brief History of Time: From the Big Bang to the Black Holes. Audio Literature, 2001.

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48

Hawking, S. W. Eine kurze Geschichte der Zeit. 2a ed. Rowohlt Taschenbuch Verlag GmbH, 2011.

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49

(Contributor), Michael Jackson, ed. A Brief History of Time. Audio Literature, 1988.

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50

Hawking, S. W. Illustrated Brief History of Time. Penguin Random House, 2018.

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