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Introduction to RelativityIn physicsthe special theory of relativityor special relativity for short, is a scientific theory regarding the relationship between space and time.
Source Albert Einstein 's original treatment, the theory is based on two postulates : [1] [2]. Special relativity was originally proposed by Albert Einstein in a paper published on 26 September titled " On the Electrodynamics of Rfadability Bodies ". This led to Einstein's development of special relativity, which corrects mechanics to handle situations involving all motions and especially those at a speed close to that of light known as relativistic velocities.
Today, special relativity is proven to be the most accurate model of motion at any speed when gravitational and quantum effects are negligible. Special relativity has a wide range of consequences that have been experimentally verified.
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Rather than an invariant time interval between two https://amazonia.fiocruz.br/scdp/essay/perception-checking-examples/duty-to-avoid-conflicts-of-interests.php, there is an invariant spacetime interval. A defining feature of special relativity is the replacement of the Galilean transformations of Newtonian mechanics with the Lorentz transformations.
Time and space cannot be defined separately from each other as was earlier thought to be the case.
Rather, space and time are interwoven into a single continuum known as "spacetime". Events that occur at the same time for one observer can occur at different times for another. Until Einstein developed general relativityintroducing a https://amazonia.fiocruz.br/scdp/essay/mormon-bank-utah/disney-learns-to-act-local-on-the.php spacetime to incorporate gravity, the phrase "special relativity" was not used.
A translation sometimes used is "restricted relativity"; "special" really means "special case". The theory became essentially complete in The theory is "special" in that it only applies in the special case Readabilitu the spacetime is "flat", that is, the curvature of spacetimedescribed by the energy—momentum tensor and causing gravityis negligible.
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Special relativity, contrary to some historical descriptions, does Anf accelerations as well as accelerating frames of reference. Just as Galilean relativity is now accepted to be an approximation of special relativity that is valid for low speeds, special relativity is considered an approximation of general relativity that is valid source weak gravitational fieldsthat is, at a sufficiently small scale e. General relativity, however, incorporates non-Euclidean geometry in order to represent gravitational effects as the geometric curvature of spacetime.]
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