Black Holes, Tides, and Curved Spacetime: Understanding Gravity
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Black Holes, Tides, and Curved Spacetime: Understanding Gravity

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Gravity rules the universe. Without it, everything would dissolve into a gas of randomly interacting atoms. Yet gravity is one of the least understood forces in nature. Black Holes, Tides, and Curved Spacetime introduces you to key ideas in gravity research over the past 400 years. It's an awe-inspiring journey led by a prominent theoretical physicist.
20131シーズン
TV-PG
24 エピソード
  • 1『The Strangest Force』

    1『The Strangest Force』

    Begin your exploration of gravity with Isaac Newton and the famous story of the apple. Why was it such a breakthrough to connect a falling apple with the faraway moon? Review the essential characteristics of gravity and learn why small asteroids and large planets have such different shapes.
    Begin your exploration of gravity with Isaac Newton and the famous story of the apple. Why was it such a breakthrough to connect a falling apple with the faraway moon? Review the essential characteristics of gravity and learn why small asteroids and large planets have such different shapes.
    TV-PG
    33分
    2013年8月30日
  • 2『Free Fall and Inertia』

    2『Free Fall and Inertia』

    Review three great discoveries by the "grandfather" of gravity research, Galileo Galilei. His most famous experiment may never have happened, but his principle of inertia, law of free fall, and principle of relativity are the basis for everything that comes later in the science of gravity - including key breakthroughs by Einstein.
    Review three great discoveries by the "grandfather" of gravity research, Galileo Galilei. His most famous experiment may never have happened, but his principle of inertia, law of free fall, and principle of relativity are the basis for everything that comes later in the science of gravity - including key breakthroughs by Einstein.
    TV-PG
    29分
    2013年10月7日
  • 3『Revolution in the Heavens』

    3『Revolution in the Heavens』

    Drawing on ideas and observations of Nicolaus Copernicus and Tycho Brahe, Johannes Kepler achieved a great insight about gravity by discovering three laws of planetary motion, relating to the mathematics of orbits. The cause of planetary motion, he determined, must lie in the sun.
    Drawing on ideas and observations of Nicolaus Copernicus and Tycho Brahe, Johannes Kepler achieved a great insight about gravity by discovering three laws of planetary motion, relating to the mathematics of orbits. The cause of planetary motion, he determined, must lie in the sun.
    TV-PG
    28分
    2013年8月30日
  • 4『Universal Gravitation』

    4『Universal Gravitation』

    See how Newton was able to finish Kepler's revolution by formulating the law of universal gravitation, which says that every object exerts an attractive force on every other object. Also explore Newton's related discovery of the three laws of motion, which underlie the science of mechanics.
    See how Newton was able to finish Kepler's revolution by formulating the law of universal gravitation, which says that every object exerts an attractive force on every other object. Also explore Newton's related discovery of the three laws of motion, which underlie the science of mechanics.
    TV-PG
    28分
    2013年8月30日
  • 5『The Art of Experiment』

    5『The Art of Experiment』

    Learn how distances in the solar system were first determined. Then chart Henry Cavendish's historic experiment that found the value of Newton's gravitational constant. Cavendish's work allows almost everything in the universe to be weighed. Then see a confirmation of the equivalence principle, which says that gravitational and inertial mass are identical.
    Learn how distances in the solar system were first determined. Then chart Henry Cavendish's historic experiment that found the value of Newton's gravitational constant. Cavendish's work allows almost everything in the universe to be weighed. Then see a confirmation of the equivalence principle, which says that gravitational and inertial mass are identical.
    TV-PG
    30分
    2013年8月30日
  • 6『Escape Velocity, Energy, and Rotation』

    6『Escape Velocity, Energy, and Rotation』

    Begin to dig deeper into Newton's laws than Newton himself was able to go. Here, apply the key concepts of energy and angular momentum to study how gravity affects motion. As an example, use simple algebra to calculate the escape velocity from Earth.
    Begin to dig deeper into Newton's laws than Newton himself was able to go. Here, apply the key concepts of energy and angular momentum to study how gravity affects motion. As an example, use simple algebra to calculate the escape velocity from Earth.
    TV-PG
    29分
    2013年8月30日
  • 7『Stars in Their Courses--Orbital Mechanics』

    7『Stars in Their Courses--Orbital Mechanics』

    Newton was the first to realize that objects could, in theory, be sent into orbit around Earth. Explore how this works in practice, using the ideas of energy and angular momentum to study how satellites, moons, planets, and stars move through space.
    Newton was the first to realize that objects could, in theory, be sent into orbit around Earth. Explore how this works in practice, using the ideas of energy and angular momentum to study how satellites, moons, planets, and stars move through space.
    TV-PG
    29分
    2013年8月30日
  • 8『What Are Tides? Earth and Beyond』

    8『What Are Tides? Earth and Beyond』

    Trace the origin of tides to the simple fact that gravity varies from point to point in space. This leads not just to the rise and fall of the ocean, but to the gradual slowing of Earth's rotation, Saturn's spectacular ring system, volcanoes on Jupiter's moon Io, and many other phenomena.
    Trace the origin of tides to the simple fact that gravity varies from point to point in space. This leads not just to the rise and fall of the ocean, but to the gradual slowing of Earth's rotation, Saturn's spectacular ring system, volcanoes on Jupiter's moon Io, and many other phenomena.
    TV-PG
    30分
    2013年8月30日
  • 9『Nudge--Perturbations of Orbits』

    9『Nudge--Perturbations of Orbits』

    Begin your study of the effects of gravity on the motions of more than two bodies. Here, see how even very small orbital changes - small perturbations - are significant. Such effects have revealed the presence of unknown planets, both in our own solar system and around other stars.
    Begin your study of the effects of gravity on the motions of more than two bodies. Here, see how even very small orbital changes - small perturbations - are significant. Such effects have revealed the presence of unknown planets, both in our own solar system and around other stars.
    TV-PG
    28分
    2013年8月30日
  • 10『Resonance--Surprises in the Intricate Dance』

    10『Resonance--Surprises in the Intricate Dance』

    Resonance happens whenever a small periodic force produces a large effect on a periodic motion - for example, when you push a child on a swing. Learn how resonance due to gravitational interactions between three bodies can lead to amazing phenomena with planets, asteroids, and rings of planets.
    Resonance happens whenever a small periodic force produces a large effect on a periodic motion - for example, when you push a child on a swing. Learn how resonance due to gravitational interactions between three bodies can lead to amazing phenomena with planets, asteroids, and rings of planets.
    TV-PG
    29分
    2013年8月30日
  • 11『The Million-Body Problem』

    11『The Million-Body Problem』

    Consider the problem of gravitational interactions between millions of bodies, such as the countless stars in a galaxy. Amazingly, mathematics can reveal useful information even in these complicated cases. Discover how the analysis of the motions of galaxies led to the prediction of dark matter.
    Consider the problem of gravitational interactions between millions of bodies, such as the countless stars in a galaxy. Amazingly, mathematics can reveal useful information even in these complicated cases. Discover how the analysis of the motions of galaxies led to the prediction of dark matter.
    TV-PG
    32分
    2013年8月30日
  • 12『The Billion-Year Battle』

    12『The Billion-Year Battle』

    Explore the physics of stars, which are balls of gas in a billion-year battle between the inward pull of gravity and the outward pressure produced by nuclear fusion. Follow this story to its ultimate finish - the triumph of gravity in massive stars that end their lives as black holes.
    Explore the physics of stars, which are balls of gas in a billion-year battle between the inward pull of gravity and the outward pressure produced by nuclear fusion. Follow this story to its ultimate finish - the triumph of gravity in massive stars that end their lives as black holes.
    TV-PG
    30分
    2013年8月30日
  • 13『From Forces to Fields』

    13『From Forces to Fields』

    From here, focus on the revolutionary view of gravitation launched by Albert Einstein. Review new ideas about fields that allowed physics to extend beyond Newtonian mechanics. Then see how Einstein modified Newton's laws and created the special theory of relativity.
    From here, focus on the revolutionary view of gravitation launched by Albert Einstein. Review new ideas about fields that allowed physics to extend beyond Newtonian mechanics. Then see how Einstein modified Newton's laws and created the special theory of relativity.
    TV-PG
    31分
    2013年8月30日
  • 14『The Falling Laboratory』

    14『The Falling Laboratory』

    Einstein focused on gravity in his general theory of relativity. Hear about his "happiest thought" - the realization that a man in free fall perceives gravity as zero. This simple insight resolved a mystery going all the way back to Newton and led Einstein to the startling discovery that gravity affects light and time.
    Einstein focused on gravity in his general theory of relativity. Hear about his "happiest thought" - the realization that a man in free fall perceives gravity as zero. This simple insight resolved a mystery going all the way back to Newton and led Einstein to the startling discovery that gravity affects light and time.
    TV-PG
    31分
    2013年8月30日
  • 15『Spacetime in Zero Gravity』

    15『Spacetime in Zero Gravity』

    In an influential interpretation of relativity, Einstein's former mathematics professor Hermann Minkowski reformulated the theory in terms of four-dimensional geometry, which he called spacetime. Learn how to plot events in this coordinate system in cases where gravity is zero.
    In an influential interpretation of relativity, Einstein's former mathematics professor Hermann Minkowski reformulated the theory in terms of four-dimensional geometry, which he called spacetime. Learn how to plot events in this coordinate system in cases where gravity is zero.
    TV-PG
    29分
    2013年8月30日
  • 16『Spacetime Tells Matter How to Move』

    16『Spacetime Tells Matter How to Move』

    See how gravity affects Minkowski's spacetime geometry, discovering that motion in a gravitational field follows the straightest path in curved spacetime. The curvature in spacetime is not caused by gravity; it is gravity. This startling idea is the essence of Einstein's general theory of relativity.
    See how gravity affects Minkowski's spacetime geometry, discovering that motion in a gravitational field follows the straightest path in curved spacetime. The curvature in spacetime is not caused by gravity; it is gravity. This startling idea is the essence of Einstein's general theory of relativity.
    TV-PG
    31分
    2013年8月30日
  • 17『Matter Tells Spacetime How to Curve』

    17『Matter Tells Spacetime How to Curve』

    The curvature of spacetime depends upon matter - and tidal effects. See how ordinary tidal effects reveal a simplified form of Einstein's greatest discovery: the equation governing the curvature of spacetime by matter.
    The curvature of spacetime depends upon matter - and tidal effects. See how ordinary tidal effects reveal a simplified form of Einstein's greatest discovery: the equation governing the curvature of spacetime by matter.
    TV-PG
    30分
    2013年8月30日
  • 18『Light in Curved Spacetime』

    18『Light in Curved Spacetime』

    See how Einstein's general theory of relativity predicts the bending of light in a gravitational field, famously confirmed in 1919 by the British scientist Arthur Eddington. Learn how this phenomenon creates natural gravitational lenses - and how the bending of light reveals invisible matter in deep space.
    See how Einstein's general theory of relativity predicts the bending of light in a gravitational field, famously confirmed in 1919 by the British scientist Arthur Eddington. Learn how this phenomenon creates natural gravitational lenses - and how the bending of light reveals invisible matter in deep space.
    TV-PG
    30分
    2013年8月30日
  • 19『Gravitomagnetism and Gravitational Waves』

    19『Gravitomagnetism and Gravitational Waves』

    The general theory of relativity predicts new phenomena of gravity analogous to those of electromagnetism. Discover how ultra-sensitive experiments have detected the gravitomagnetism of the Earth, and follow the search for elusive gravitational waves that travel through space.
    The general theory of relativity predicts new phenomena of gravity analogous to those of electromagnetism. Discover how ultra-sensitive experiments have detected the gravitomagnetism of the Earth, and follow the search for elusive gravitational waves that travel through space.
    TV-PG
    31分
    2013年8月30日
  • 20『Gravity's Horizon--Anatomy of a Black Hole』

    20『Gravity's Horizon--Anatomy of a Black Hole』

    Plunge into the subject of black holes, which are massive objects that have collapsed completely under their own gravity. Learn how black holes distort spacetime and explore the supermassive black holes that lie at the hearts of galaxies. Then ask: Are there such things as micro-black holes?
    Plunge into the subject of black holes, which are massive objects that have collapsed completely under their own gravity. Learn how black holes distort spacetime and explore the supermassive black holes that lie at the hearts of galaxies. Then ask: Are there such things as micro-black holes?
    すべて
    34分
    2013年8月30日
  • 21『Which Universe Is Ours?』

    21『Which Universe Is Ours?』

    Investigate what Einstein called his "greatest mistake" - his rejection of his own theory's prediction that spacetime should be dynamic and evolving. Chart the work of a group of scientists, including Alexander Friedman, Georges Lemaître, and Edwin Hubble, who advanced the realization that our universe is expanding from an apparent big bang.
    Investigate what Einstein called his "greatest mistake" - his rejection of his own theory's prediction that spacetime should be dynamic and evolving. Chart the work of a group of scientists, including Alexander Friedman, Georges Lemaître, and Edwin Hubble, who advanced the realization that our universe is expanding from an apparent big bang.
    TV-PG
    30分
    2013年8月30日
  • 22『Cosmic Antigravity--Inflation and Dark Energy』

    22『Cosmic Antigravity--Inflation and Dark Energy』

    Using everything you've learned about gravity, investigate cosmic antigravity, starting with cosmic inflation, a phenomenon that exponentially increased the size of the universe during the big bang. Then, learn why dark matter cannot be made of ordinary protons and neutrons, and explore the recent discovery that the expansion of the universe is accelerating.
    Using everything you've learned about gravity, investigate cosmic antigravity, starting with cosmic inflation, a phenomenon that exponentially increased the size of the universe during the big bang. Then, learn why dark matter cannot be made of ordinary protons and neutrons, and explore the recent discovery that the expansion of the universe is accelerating.
    TV-PG
    32分
    2013年8月30日
  • 23『The Force of Creation』

    23『The Force of Creation』

    Use a black hole to test the laws of thermodynamics, looking at the capacity of gravity to pull matter together and increase entropy at the same time. Probe Stephen Hawking's most surprising discovery, and then learn that the same force that pulls the apple down and steers the stars in their courses is also nature's ultimate source of order and complexity.
    Use a black hole to test the laws of thermodynamics, looking at the capacity of gravity to pull matter together and increase entropy at the same time. Probe Stephen Hawking's most surprising discovery, and then learn that the same force that pulls the apple down and steers the stars in their courses is also nature's ultimate source of order and complexity.
    TV-PG
    29分
    2013年8月30日
  • 24『The Next Revolution』

    24『The Next Revolution』

    Survey the greatest unsolved problem in theoretical physics: the search for a quantum theory of gravity. Examine string theory, loop quantum gravity, and entropic gravity. Close with a deepened appreciation for the connection between everyday features of gravity and the most exciting questions in contemporary physics and cosmology.
    Survey the greatest unsolved problem in theoretical physics: the search for a quantum theory of gravity. Examine string theory, loop quantum gravity, and entropic gravity. Close with a deepened appreciation for the connection between everyday features of gravity and the most exciting questions in contemporary physics and cosmology.
    TV-PG
    32分
    2013年8月30日
  • Black Holes, Tides, and Curved Spacetime: Understanding Gravity
    20131シーズン
    Gravity rules the universe. Without it, everything would dissolve into a gas of randomly interacting atoms. Yet gravity is one of the least understood forces in nature. Black Holes, Tides, and Curved Spacetime introduces you to key ideas in gravity research over the past 400 years. It's an awe-inspiring journey led by a prominent theoretical physicist.
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    Benjamin Schumacher
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