The simple answer is that Special Relativity can be described with simple algebraic processes. General Relativity involves much more complex mathematics, including tensor calculus, for its mathematical description.
Please visit the following sites for details explaining the difference between the two: http://archive.ncsa.illinois.edu/Cyberia/NumRel/GenRelativity.html http://archive.ncsa.illinois.edu/Cyberia/NumRel/SpecialRel.html
Relativity has two parts: General relativity and special relativity, general relativity describes gravity as a geometric property of spacetime and special relativity is the physical theory of measurement in inertial frames of reference. Now quantum mechanics, in it's wave formulation, deals with describing things on the atomic scale as a wavefunction.
twin paradox appears and is solvable with only special relativity, gravitational time dialation requires general relativity.
Albert Einstein worked out the Theory of General Relativity between 1905 and 1919. General Relativity is, as the name suggests, a more generalized extension of Special Relativity, which described the relationship between motion, space, and time, but did not include the effects of gravitation. General Relativity includes Gravitation, but is thought to be incomplete because its rules apply only to the macro universe, and fall apart at the subatomic level.
The attraction between masses.
Special relativity General relativity Photons as real entities, not just mathematical curiosities Heat capacity of low temperature solids Answer to the question, "Why is the sky blue?"
The scientific Theories of General and Special Relativity were first proposed by Albert Einstein.Special Relativity in 1906 and General Relativity in 1916.
General Relativity - book - was created in 1984.
Yes. In the limit where the velocity difference between two observers gets ever closer to zero, the equations of spacial relativity reduce to the Newtonian equations. Indeed, if this were not true, then special relativity would be *wrong*. Similarly, general relativity gives the same answers as Newtonian gravity for the cases in which Newtonian gravity applies.
E=mc^2 Edit : That equation is part of "special relativity" not "general relativity".
General Relativity - book - has 491 pages.
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