Leonard Susskind: My friend Richard Feynman, Stanford Institute for Theoretical Physics, Perimeter Institute for Theoretical Physics, The Theoretical Minimum: What You Need to Know to Start Doing Physics, The Birth of the Universe and the Origin of Laws of Physics, "Susskind, Leonard: Distinguished Professor / School of Physics: Theoretical Particle Physics", "Father of String Theory Muses on the Megaverse", "Susskind wins prestigious Sakurai Prize in theoretical physics", "Leonard Susskind discusses duel with Stephen Hawking", Journal of Physics G: Nuclear and Particle Physics, "The Birth of the Universe and the Origin of Laws of Physics - CornellCast", "Smolin vs. Susskind: The Anthropic Principle", "The man who proved Stephen Hawking wrong", Leonard Susskind's Faculty Page (Stanford University), Radio Interview: Leonard Susskind discusses his life as a physicist, string theory and the holographic principle, Smolin vs. Susskind: The Anthropic Principle, https://en.wikipedia.org/w/index.php?title=Leonard_Susskind&oldid=1136450415, Stanford University Department of Physics faculty, Members of the United States National Academy of Sciences, J. J. Sakurai Prize for Theoretical Particle Physics recipients, CS1 maint: bot: original URL status unknown, Creative Commons Attribution-ShareAlike License 3.0, The independent discovery of the string theory model of particle physics, The theory of scaling violations in deep inelastic electroproduction, The theory of symmetry breaking sometimes known as ", The second, yet independent, theory of cosmological, Most recently, application of ideas from information and computation theory, such as the, Dynamical Electroweak Symmetry Breaking section cites two 1979 publications, one by. Trending. Like The Cosmic Landscape, The Black Hole War is aimed at the lay reader. One of the fathers of. He has been elected to the National Academy of Sciences and the American Academy of Arts and Sciences. Halyo, E., Kol, B., Rajaraman, A., Susskind, L. Rotational invariance in the M(atrix) formulation of type IIB theory. A quantum mechanical formulation of de Sitter cosmological spacetimes still eludes string theory. Kaunas is in Lithuania. 978-0316155793. You aint going to be no engineer, he said. Menu. Particle Physics 3: Super-symmetry and Grand Unification. Now, physicist Leonard Susskind has teamed up with data engineer Art Friedman to present the theory and associated . The Smolin-Susskind debate refers to the series of intense postings in 2004 between Lee Smolin and Susskind, concerning Smolins argument that the "Anthropic Principle cannot yield any falsifiable predictions, and therefore cannot be a part of science." The series commenced with What You Need to Know (above) reissued under the title Classical Mechanics: The Theoretical Minimum. Leonard Susskind: 'Sleeping during a lecture is a good thing'. His research interests include string theory, quantum field theory, quantum statistical mechanics and quantum cosmology. Although the exchanges ended in 2004, the animosity remains. More Buying Choices $25.73 (10 used & new offers) Real Science (2009): Los Angeles Times Festival of Books. His research interests include string theory, quantum field theory, quantum statistical mechanics, and quantum cosmology. A., Susskind, L., Toumbas, N., Brodie, J. H. The IR/UV connection in non-commutative gauge theories, Magnetic fields, branes, and noncommutative geometry, Space/time non-commutativity and causality, Strings in background electric field, space/time noncommutativity and a new noncritical string theory, Invasion of the giant gravitons from anti-de Sitter space, Negative energy, superluminosity, and holography. Reviews There are no reviews yet. Susskind was one of at least three physicists who independently discovered during or around 1970 that the Veneziano dual resonance model of strong interactions could be described by a quantum mechanical model of strings, and was the first to propose the idea of the string theory landscape. Leonard Susskind is the Felix Bloch professor of Theoretical physics at Stanford University. His current work on black hole firewalls is discussed in this New York Times article. Fischler, W., Nilles, H. P., Polchinski, J., Raby, S., Susskind, L. SIKIVIE, P., Susskind, L., Voloshin, M., Zakharov, V. FERMION REPRESENTATION FOR THE Z2 LATTICE GAUGE-THEORY IN 2+1 DIMENSIONS, BARYON ASYMMETRY IN THE VERY EARLY UNIVERSE, LATTICE MODELS OF QUARK CONFINEMENT AT HIGH-TEMPERATURE, STRONG-COUPLING EXPANSIONS AND PHASE-DIAGRAMS FOR THE O(2), O(3), AND O(4) HEISENBERG SPIN SYSTEMS IN 2 DIMENSIONS, DYNAMICS OF SPONTANEOUS SYMMETRY-BREAKING IN THE WEINBERG-SALAM THEORY, QUARK CONFINEMENT IN UNUSUAL ENVIRONMENTS, ORDER AND DISORDER IN GAUGE SYSTEMS AND MAGNETS, PHASES OF 2-DIMENSIONAL HEISENBERG SPIN SYSTEMS FROM STRONG-COUPLING EXPANSIONS, STRONG-COUPLING CALCULATIONS OF HADRON SPECTRUM OF QUANTUM CHROMODYNAMICS. After all, science doesnt know everything! In case the reader is unaware, Origin of Life research as would be expected has been a complete failure for the past 160 years. Further lecture courses in the Theoretical Minimum series have been delivered by Susskind, on these subjects (or with these titles): These are also available on-line as video recordings. He has been married twice, first in 1960, Leonard Susskind A Biography (last accessed August 12, 2007). His research interests include string theory, quantum field theory, quantum statistical mechanics and quantum cosmology. He recently gave alectureon the topic at the Kavli Institute for Theoretical Physics (UCSB), and co-authored apaperwith Juan Maldacenathat proposes Einstein-Rosen bridges as an alternative to black hole firewalls. 4.12 avg rating 10,516 ratings published 2008 34 editions. The Theoretical Minimum lectures later formed the basis for the books of the same name. It is written by theoretical physicist Leonard Susskind. He always told me he came from Latvia, but eventually he told me what city he came from, and it was Kaunas. He may be contacted at:[email protected]. Susskind has also made contributions in the following areas of physics: The story goes that "In 1970, a young physicist named Leonard Susskind got stuck in an elevator with Murray Gell-Mann, one of physics top theoreticians, who asked him what he was working on. Polchinski, J., Susskind, L., Toumbas, N. A note on discrete light cone quantization, Schwarzschild black holes from matrix theory. In the book, Susskind describes how the string theory landscape was an almost inevitable consequence of several factors, one of which was Steven Weinberg's prediction of the cosmological constant in 1987. Since 1979 he has been Professor of Physics at Stanford University, and since 2000 has held the Felix Bloch Professorship of Physics. The second, yet independent, theory of cosmological baryogenesis at APS J. J. Sakurai Prize website (last accessed August 12, 2007) (Sakharovs work was first, but was mostly unknown in the Western hemisphere. This brings us right back to where we started from: Will the real Dr. Leonard Susskind please stand up? View details for DOI 10.1103/PhysRevLett.92.191601, View details for Web of Science ID 000221540900007, View details for Web of Science ID 000186260900040, View details for Web of Science ID 000186879800028, View details for Web of Science ID 000186243500056, View details for Web of Science ID 000180642700037, View details for Web of Science ID 000180552900011, View details for Web of Science ID 000178999500045, View details for Web of Science ID 000169406900024, View details for Web of Science ID 000170648000003, View details for Web of Science ID 000170606000031, View details for Web of Science ID 000168162800003, View details for Web of Science ID 000168161600002, View details for Web of Science ID 000089311300065, View details for Web of Science ID 000168114600044, View details for Web of Science ID 000168114600021, View details for Web of Science ID 000168114600008, View details for Web of Science ID 000085383200017, View details for Web of Science ID 000166854900004, View details 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A1978FD00900013, View details for Web of Science ID A1978FW76800002, View details for Web of Science ID A1977DA59400024, View details for Web of Science ID A1976BL99900027, View details for Web of Science ID A1976BQ86300011, View details for Web of Science ID A1976CK35100002, View details for Web of Science ID A1975W222100023, View details for Web of Science ID A1975W199000023, View details for Web of Science ID A1975BC29900038, View details for Web of Science ID A1975AL64100024, View details for Web of Science ID A1975V892600018, View details for Web of Science ID A1974T663500027, View details for Web of Science ID A1974V313300034, View details for Web of Science ID A1974S734700023, View details for Web of Science ID A1974T663500015, View details for Web of Science ID A1973P948400011, Director, Stanford Institute for Theoretical Physics (2009 - Present), J. J. Sakurai Prize for Theoretical Particle Physics, American Physical Society (1998), Member, National Academy of Sciences (2000 - Present), Ph.D., Cornell University, Physics (1965), B.S., City College of New York, Physics (1962), De Sitter Holography: Fluctuations, Anomalous Symmetry, and Wormholes, The Python's Lunch: geometric obstructions to decoding Hawking radiation. It is like a scientist claiming that a Chevrolet Impala was not created by intelligent designers but rather it just evolved off an assembly line at a GM plant in Michigan. Leonard Susskind, Author . We conjecture that transition amplitudes between certain states with asymptotically supersymmetric flat vacua contain resonant pole characteristic metastable intermediate states. Please use the following structure: [email protected], Send me The Times of Israel Daily Edition. Movies. An entire series of courses of lectures on essential theoretical foundations of modern physics by Susskind is available on the iTunes platform from "Stanford on iTunes" [1] and YouTube from "StanfordUniversity's Channel" [2]. He also does not "believe" in. by. Carroll, A., Kogut, J., Sinclair, D. K., Susskind, L. QUANTITATIVE APPROACH TO LOW-ENERGY QUANTUM CHROMODYNAMICS, HAMILTONIAN FORMULATION OF WILSONS LATTICE GAUGE THEORIES, ASYMPTOTIC FREEDOM AND ABSENCE OF VECTOR-GLUON EXCHANGE IN WIDE-ANGLE HADRONIC COLLISIONS. Susskind, L. (1995). And if you have the temerity to inquire, Uh, where Sir, did you say that assembly line came from? He may well irritably respond, Well we dont know but were working on it; after all Science doesnt know everything!. Dr. Susskind makes it clear in the above cited passages, that when we speak from the perspective of the laws of physics, mathematical probability, and our observations about nature, unguided forces lead us to a dead end. Smolin obliged, and on July 28, 2004, Susskind responded, saying that the logic Smolin followed "can lead to ridiculous conclusions. Rabbi Moshe Averick is the author of The Confused World of Modern Atheism(Mosaica Press, 2016)available onAmazon and in fine bookstores and TheBookDepository.com. Smolin e-mailed Susskind asking for a comment. Please select it and press CTRL-ENTER, Welcome to JewAge!Learn about the origins of your family. Susskind was one of at least three physicists, alongside Yoichiro Nambu and Holger Bech Nielsen, who independently discovered during or around 1970 that the Veneziano dual resonance model of strong interactions could be described by a quantum mechanical model of oscillating strings,[16] and was the first to propose the idea of the string theory landscape. His research interests include string theory, quantum field theory, quantum statistical mechanics and quantum cosmology. Only 13 left in stock - order soon. He is a member of the National Academy of Sciences of the USA, and the American Academy of Arts and Sciences, an associate member of the faculty of Canada's Perimeter Institute for Theoretical Physics, and a distinguished professor of the Korea Institute for Advanced Study. Stanford Institute for Theoretical Physics ISBN. The Cosmic Landscape: String Theory and the Illusion of Intelligent Design. 2022 ARS Air, LLC. It took 28 years for Leonard Susskind to formulate his theory that would prove Hawking wrong. The theory of evolution does not even pretend to explain how life began. Leonard Susskind, the theoretical physicist who came up with the concept of string theory, says the "standard wisdom" about age and scientists held true for theoretical physics for a long time . The courses are intended for the mathematically literate[33] public as well as physical science/mathematics students. Roberts, D. A., Stanford, D., Susskind, L. Deconfinement transition as black hole formation by the condensation of QCD strings, Tree-like structure of eternal inflation: A solvable model. Want to Read. 'You ain't going to be no engineer,' he said. He has been married twice, first in 1960,[5] and he has four children. in physics in 1962. Copyright 2012-2020 Stories People All rights reserved, The independent discovery of the string theory model of particle physics, The development of Hamiltonian lattice gauge theory, The theory of scaling violations in deep inelastic electroproduction, The theory of symmetry breaking sometimes known as "technicolor theory". Leonard Susskind's 283 research works with 44,135 citations and 12,029 reads, including: A holographic wormhole traversed in a quantum computer He reviews the derivation of the creation and annihilation . Brown, A. R., Gharibyan, H., Streicher, A., Susskind, L., Thorlacius, L., Zhao, Y. Quantum complexity and negative curvature, Copenhagen vs Everett, Teleportation, and ER=EPR. "[36] It began on July 26, 2004, with Smolin's publication of "Scientific alternatives to the anthropic principle." The question addressed here is why our universe is fine-tuned for our existence. 71. 2023 The Times of Israel , All Rights Reserved. Video recordings of the complete lectures are available on-line. The SmolinSusskind debate refers to the series of intense postings in 2004 between Lee Smolin and Susskind, concerning Smolin's argument that the "anthropic principle cannot yield any falsifiable predictions, and therefore cannot be a part of science. in physics in 1962. If you left the pile of rust for another 500 years, you could be pretty sure it wouldnt turn back into a working BMW. Susskind was awarded the 1998 J. J. Sakurai Prize for his "pioneering contributions to hadronic string models, lattice gauge theories, quantum chromodynamics, and dynamical symmetry breaking." [10][11], Susskind was awarded the 1998 J. J. Sakurai Prize,[12] and the 2018 Oskar Klein Medal.[13]. Leonard Susskind is the Felix Bloch professor of Theoretical physics at Stanford University. His research interests include string theory, quantum field theory, quantum statistical mechanics and . In 1997,Susskindwas awarded the J.J. Sakurai Prize for his "pioneering contributions tohadronicstring models, latticegaugetheories, quantumchromodynamics, and dynamical symmetry breaking.". Having not had the chance to read the paper, Susskind requested a summarization of his arguments. The Theoretical Minimum is a book and a Stanford University-based continuing-education lecture series, which became a popular YouTube-featured content. Like The Cosmic Landscape, The Black Hole War is aimed at the lay reader. $39.71 $ 39. We argue that stable, maximally symmetric compactifications of string theory to 1+1 dimensions are in conflict with holography. Freivogel, B., Kleban, M., Martinez, M. R., Susskind, L. 't Hooft, G., Susskind, L., Witten, E., Fukugita, M., Randall, L., Smolin, L., Stachel, J., Rovelli, C., Ellis, G., Weinberg, S., Penrose, R. Framework for the string theory landscape, 1+1 dimensional compactifications of string theory. Core Course 3: Special Relativity and Classical Field Theory, Stanford Institute for Theoretical Physics, Solutions to The Theoretical Minimum, Classical Mechanics, Solutions to The Theoretical Minimum, Quantum Mechanics, https://en.wikipedia.org/w/index.php?title=The_Theoretical_Minimum&oldid=1136631105. Banks, T., Fischler, W., Klebanov, I. R., Susskind, L. Fischler, W., Halyo, E., Rajaraman, A., Susskind, L. Instantons, scale invariance and Lorentz invariance in matrix theory. Susskind gave 3 lectures "The Birth of the Universe and the Origin of Laws of Physics" April 28-May 1, 2014 in the Cornell Messenger Lecture series which are posted on a Cornell website.[35]. (January 9, 2012) Leonard Susskind provides an introduction to quantum mechanics. Dr. Leonard Susskind is a renowned professor of theoretical physics at Stanford University and is credited as being one of the fathers of string theory. Other articles where Leonard Susskind is discussed: string theory: Relativity and quantum mechanics: few years later, three physicistsLeonard Susskind of Stanford University, Holger Nielsen of the Niels Bohr Institute, and Yoichiro Nambu of the University of Chicagosignificantly amplified Veneziano's insight by showing that the mathematics underlying his proposal described the . He was the first to introduce the idea of the string theory landscape in 2003. Click the link in that email to complete registration so you can comment. (We are, for arguments sake, assuming the truth of the theory) In order for evolution to occur a living bacterial cell with a fully functioning DNA based genetic system must be in place. The fourth book in the series, General Relativity: The Theoretical Minimum was published in January 2023. Susskind was an Assistant Professor of Physics, then an Associate Professor at Yeshiva University (19661970), after which he went for a year at the University of Tel Aviv (197172), returning to Yeshiva to become a Professor of Physics (19701979). But let's see how we do in just a few pages.". 1,555 ratings150 reviews. A. CANONICAL QUANTIZATION OF 1+1 DIMENSIONAL GRAVITY, THE GAUGE HIERARCHY PROBLEM, TECHNICOLOR, SUPERSYMMETRY, AND ALL THAT, BREAKING OF SUPERSYMMETRY AT INTERMEDIATE ENERGY, MASS GENERATION BY NON-STRONG INTERACTIONS, ALTERNATIVE PATTERNS OF CHIRAL SYMMETRY-BREAKING IN QCD, VANISHING RENORMALIZATION OF THE D-TERM IN SUPERSYMMETRIC U(1) THEORIES. Susskind was awarded the 1998 J. J. Sakurai Prize for his "pioneering contributions to hadronic string models, lattice gauge theories, quantum chromodynamics, and dynamical symmetry breaking." During this discussion Stephen Hawking stated that the information inside a black hole is lost forever as the black hole evaporates. Banks, T., Fischler, W., SHENKER, S. H., Susskind, L. Number of states of two-dimensional critical string theory, Black hole complementarity versus locality. FREE international delivery. Freivogel, B., Sekino, Y., Susskind, L., Yeh, C. Observational consequences of a landscape. Leonard Susskind is the Felix Bloch Professor of Theoretical Physics at Stanford University, and Director of the Stanford Institute for Theoretical Physics. Leonard Susskind was born to a Jewish family from the South Bronx in New York City. He has been elected to the National Academy of Sciences and the American Academy of Arts and Sciences, and was awarded the 1998 Sakurai Prize for theoretical physics. sort by. Be the first one to, Leonard Susskind - All Stanford physics lectures, leonard-susskind-all-stanford-physics-lectures, Advanced embedding details, examples, and help, Leonard Susskind - All Stanford physics lectures in order, Advanced Quantum Mechanics Lecture 1-720p.mp4, Advanced Quantum Mechanics Lecture 10-720p.mp4, Advanced Quantum Mechanics Lecture 2-720p.mp4, Advanced Quantum Mechanics Lecture 3-720p.mp4, Advanced Quantum Mechanics Lecture 4-720p.mp4, Advanced Quantum Mechanics Lecture 5-720p.mp4, Advanced Quantum Mechanics Lecture 6-720p.mp4, Advanced Quantum Mechanics Lecture 7-720p.mp4, Advanced Quantum Mechanics Lecture 8-720p.mp4, Advanced Quantum Mechanics Lecture 9-720p.mp4, Demystifying the Higgs Boson with Leonard Susskind-720p.mp4, Einstein's General Theory of Relativity _ Lecture 1-240p.mp4, Einstein's General Theory of Relativity _ Lecture 10-360p.mp4, Einstein's General Theory of Relativity _ Lecture 11-360p.mp4, Einstein's General Theory of Relativity _ Lecture 12-360p.mp4, Einstein's General Theory of Relativity _ Lecture 2-240p.mp4, Einstein's General Theory of Relativity _ Lecture 3-240p.mp4, Einstein's General Theory of Relativity _ Lecture 4-360p.mp4, Einstein's General Theory of Relativity _ Lecture 5-240p.mp4, Einstein's General Theory of Relativity _ Lecture 6-240p.mp4, Einstein's General Theory of Relativity _ Lecture 7-240p.mp4, Einstein's General Theory of Relativity _ Lecture 8-240p.mp4, Einstein's General Theory of Relativity _ Lecture 9-240p.mp4, Lecture 1 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 1 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 1 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 1 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 1 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 1 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 1 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 1 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 1 _ String Theory and M-Theory-360p.mp4, Lecture 1 _ The Theoretical Minimum-720p.mp4, Lecture 1 _ Topics in String Theory-360p.mp4, Lecture 10 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 10 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 10 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 10 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 10 _ String Theory and M-Theory-360p.mp4, Lecture 10 _ The Theoretical Minimum-720p.mp4, Lecture 2 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 2 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 2 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 2 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 2 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 2 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 2 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 2 _ String Theory and M-Theory-360p.mp4, Lecture 2 _ The Theoretical Minimum-720p.mp4, Lecture 2 _ Topics in String Theory-360p.mp4, Lecture 3 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 3 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 3 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 3 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 3 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 3 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 3 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 3 _ String Theory and M-Theory-360p.mp4, Lecture 3 _ The Theoretical Minimum-720p.mp4, Lecture 3 _ Topics in String Theory-360p.mp4, Lecture 4 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 4 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 4 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 4 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 4 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 4 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 4 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 4 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 4 _ String Theory and M-Theory-360p.mp4, Lecture 4 _ The Theoretical Minimum-720p.mp4, Lecture 4 _ Topics in String Theory-360p.mp4, Lecture 5 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 5 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 5 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 5 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 5 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 5 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 5 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 5 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 5 _ String Theory and M-Theory-360p.mp4, Lecture 5 _ The Theoretical Minimum-720p.mp4, Lecture 5 _ Topics in String Theory-360p.mp4, Lecture 6 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 6 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 6 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 6 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 6 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 6 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 6 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 6 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 6 _ String Theory and M-Theory-360p.mp4, Lecture 6 _ The Theoretical Minimum-720p.mp4, Lecture 6 _ Topics in String Theory-360p.mp4, Lecture 7 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 7 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 7 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 7 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 7 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 7 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 7 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 7 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 7 _ String Theory and M-Theory-360p.mp4, Lecture 7 _ The Theoretical Minimum-720p.mp4, Lecture 7 _ Topics in String Theory-360p.mp4, Lecture 8 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 8 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 8 _ Modern Physics - Special Relativity (Stanford)-240p.mp4, Lecture 8 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 8 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 8 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 8 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 8 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 8 _ String Theory and M-Theory-360p.mp4, Lecture 8 _ The Theoretical Minimum-720p.mp4, Lecture 8 _ Topics in String Theory-360p.mp4, Lecture 9 _ Modern Physics - Classical Mechanics (Stanford)-240p.mp4, Lecture 9 _ Modern Physics - Quantum Mechanics (Stanford)-240p.mp4, Lecture 9 _ Modern Physics - Statistical Mechanics-360p.mp4, Lecture 9 _ New Revolutions in Particle Physics - Basic Concepts-360p.mp4, Lecture 9 _ New Revolutions in Particle Physics - Standard Model-360p.mp4, Lecture 9 _ Quantum Entanglements, Part 1 (Stanford)-240p.mp4, Lecture 9 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Lecture 9 _ String Theory and M-Theory-360p.mp4, Lecture 9 _ The Theoretical Minimum-720p.mp4, Lecture 9 _ Topics in String Theory-360p.mp4, Lectures 2 & 3 _ Quantum Entanglements, Part 3 (Stanford)-240p.mp4, Terms of Service (last updated 12/31/2014). 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