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The theory of relativity

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The special relativity theory was named as such because it only applies to select special cases. Tese include the reference frames in unchanging, cnstant motion. Dring the same time, Enstein also came up with a well-known equation that shows the equivalence of energy and mass. Te equation was: Enstein applied his relativity theory to gravity fields and came up with the idea of curved space-time continuum. Tis shows the dimensions related to time and space from a 2-dimensional surface perspective where large objects are responsible for creating dips as valleys on the surface.

Tis is one of the most important phenomena as it relates to explaining some of the most difficult topics that include the bending of the light around the sun. Mreover, tis idea also explains the CMB or the Cosmic Microwave Background Radiation as well as predicted the black holes. Te black holes are objects that have so much density and a strong gravitational attraction to the point that even light cannot escape from them (General Relativity). Te black holes were first predicted by Einstein in the Theory of Relativity.

Tere are currently three different types of black holes that include stellar black holes, itermediate black holes, ad supermassive black holes. Te relationship between the gravity and mass allows the black holes to have an extremely gravitational force capacity. Te immense power of the black holes makes it difficult for scientists to observe them as they do with the stars. Back holes are related to the theory of relativity in that they were predicted by this theory and they relate to the idea across Einstein such as the relationship between mass and space (Gene).

T understand the accuracy that emerges from the application of both theories of relativity, i is of importance to understand the basic ideas on both theories. Te special relativity theory, wich was published in the year 1905, mstly expounds the question of whether motion and rest are absolute or relative. A such, i is only valid for non-accelerating systems. Fom Newton’s second law, aceleration is a force; secial relativity, o the other hand, i only valid when are no acting.

Tis implies that the theory cannot be used when gravitational field is present. Te special relativity theory is based on two key postulates that are frequently contradictory especially in classical mechanics. Tese postulates incorporate. ..

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