Physics - Modern Physics: Einstein's General Theory of Relativity
Modern Physics: Einstein's General Theory of Relativity consists of twelve lectures taught by Professor Leonard Susskind. The topics covered in this course focus on Einstein's general theory of relativity: Newton's theory of gravity, gravitational field, Gauss's theorem, gravity acceleration equivalence principle, light in an accelerated field, tensors, flat and curved space, space-time, Riemann curvature tensor, the field equations of relativity, wave motion extension to curved space, black hole, and space-time diagrams.
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Lecture 1 | Modern Physics: Einstein's Theory
Newton, Gauss, Kepler, Tidal Forces - Newton's theory of gravity, tidal forces, gravitational field, Gauss's theorem, Newton's gravitational mass of a sphere.
Lecture 2 | Modern Physics: Einstein's Theory
Gravity Acceleration Equivalence, Gauss's Law - note on dark energy, Gauss's law, gravity within a sphere, gravity acceleration equivalence principle, light in an accelerated field.
Lecture 3 | Modern Physics: Einstein's Theory
Math Transforms, Tensors, Metrics, Curved Space - basic transformation formulas, tensors, metric tensors, flat and curved space.
Lecture 4 | Modern Physics: Einstein's Theory
Math Tensors, indices, Co-Contravariant, Coordinates - review of covariant/contravariant vectors, contracting indices, raising lowering indices, space-time.
Lecture 5 | Modern Physics: Einstein's Theory
Tensor Calculus, Geodescics, Curves, Coordinates - tensor scalar field, coordinates and tensor vector fields, covariant differentiation.
Lecture 6 | Modern Physics: Einstein's Theory
Curvature, Parallel Transport, Curved Space - the "rest-frame" of the Universe, space-time, intervals, curvature, define parallel transport.
Lecture 7 | Modern Physics: Einstein's Theory
Parallel Transport, Tensors Riemann, Ricci, Gamma, Curvature, Energy, Momentum
Lecture 8 | Modern Physics: Einstein's Theory
Parallel Transport, Commutators, Newtonian Approximation to GR Tensors
Lecture 9 | Modern Physics: Einstein's Theory
Field Equations, Tensor - metric tensor manipulations, the field equations of relativity, formulating the Stress-Energy tensor from Newtonian Mechanics.
Lecture 10 | Modern Physics: Einstein's Theory
Energy, Tensor, Wave Motion, SR, 5-D, BHole - possibilities of special dimensions other than three, wave motion extension to curved space, the energy density.
Lecture 11 | Modern Physics: Einstein's Theory
Geodesics, Coordinate Transforms, Black Hole - integrated curvature, geodesic coordinates, accelerated reference frame diagrams, coordinate transformation to polar coordinates.
Lecture 12 | Modern Physics: Einstein's Theory
Schwartzchild Black Hole - summary of space-time diagrams, the Schwartzchild solution, note on black hole horizon.
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liangdanni | 2011/01/22 00:33:53 |
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NO········跪求字幕啊····那怕是英文字幕·····N多专业名词你用中文说我都不一定能听的懂,更何况是英文!!!那位大大可怜可怜我这没文化的人吧···
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