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Exact solutions in general relativity and Static spherically symmetric perfect fluid

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Exact solutions in general relativity and Static spherically symmetric perfect fluid

Exact solutions in general relativity vs. Static spherically symmetric perfect fluid

In general relativity, an exact solution is a Lorentzian manifold equipped with tensor fields modeling states of ordinary matter, such as a fluid, or classical nongravitational fields such as the electromagnetic field. In metric theories of gravitation, particularly general relativity, a static spherically symmetric perfect fluid solution (a term which is often abbreviated as ssspf) is a spacetime equipped with suitable tensor fields which models a static round ball of a fluid with isotropic pressure.

Similarities between Exact solutions in general relativity and Static spherically symmetric perfect fluid

Exact solutions in general relativity and Static spherically symmetric perfect fluid have 5 things in common (in Unionpedia): Cambridge University Press, Einstein field equations, Fluid solution, General relativity, Vacuum solution (general relativity).

Cambridge University Press

Cambridge University Press (CUP) is the publishing business of the University of Cambridge.

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Einstein field equations

The Einstein field equations (EFE; also known as Einstein's equations) comprise the set of 10 equations in Albert Einstein's general theory of relativity that describe the fundamental interaction of gravitation as a result of spacetime being curved by mass and energy.

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Fluid solution

In general relativity, a fluid solution is an exact solution of the Einstein field equation in which the gravitational field is produced entirely by the mass, momentum, and stress density of a fluid.

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General relativity

General relativity (GR, also known as the general theory of relativity or GTR) is the geometric theory of gravitation published by Albert Einstein in 1915 and the current description of gravitation in modern physics.

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Vacuum solution (general relativity)

In general relativity, a vacuum solution is a Lorentzian manifold whose Einstein tensor vanishes identically.

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The list above answers the following questions

Exact solutions in general relativity and Static spherically symmetric perfect fluid Comparison

Exact solutions in general relativity has 89 relations, while Static spherically symmetric perfect fluid has 22. As they have in common 5, the Jaccard index is 4.50% = 5 / (89 + 22).

References

This article shows the relationship between Exact solutions in general relativity and Static spherically symmetric perfect fluid. To access each article from which the information was extracted, please visit:

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