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Gravitational field - Wikipedia
In physics, a gravitational field or gravitational acceleration field is a vector field used to explain the influences that a body extends into the space around itself. A gravitational field is used to explain gravitational phenomena, such as the gravitational force field exerted on another massive body. It has … See more
In classical mechanics, a gravitational field is a physical quantity. A gravitational field can be defined using Newton's law of universal gravitation. Determined in this way, the gravitational … See more
Embedding diagrams are three dimensional graphs commonly used to educationally illustrate gravitational potential by drawing gravitational potential fields as a gravitational topography, depicting the potentials as so-called gravitational wells, See more
17th centuryIsaac Newton proposes the law of universal gravitation as a force between point masses.18th centuryPierre-Simon Laplace attempts to model gravity as some kind of radiation field or fluid.Early 20th centuryAlbert Einstein develops general relativity, which describes gravity as the curvature of spacetime.1919Arthur Eddington confirms the deflection of light by gravity, which is one of the tests of general relativity.In general relativity, the Christoffel symbols play the role of the gravitational force field and the metric tensor plays the role of the gravitational potential.
In general relativity, … See moreWikipedia text under CC-BY-SA license Gravity - Wikipedia
Newton's law of universal gravitation - Wikipedia
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Gravitational Field — Isaac Physics
WEBNewton's Law of Gravitation becomes: F = r2GM m. The gravitational field is the gravitational force per unit mass that would be exerted on a small mass at that point. It is a vector field, and points in the direction of the …
Gravity | Definition, Physics, & Facts | Britannica
WEB4 days ago · gravitation. Key People: Kip Thorne. Isaac Newton. Galileo. John Archibald Wheeler. Simon Stevin. Related Topics: Lagrange point. supergravity. weight. Schwarzschild radius. gravity anomaly. On the …
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Gravity - Fields, Relativity, Theory | Britannica
WEBThere are two principal consequences of the geometric view of gravitation: (1) the accelerations of bodies depend only on their masses and not on their chemical or nuclear constitution, and (2) the path of a body or of light in …
13.2: Gravitational Field - Physics LibreTexts
WEBMay 19, 2021 · The gravitational field at any point is equal to the gravitational force on some test mass placed at that point divided by the mass of the test mass. The dimensions of the gravitational field are …
5: Gravitational Field and Potential - Physics LibreTexts
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