Gravitational force formula

    • [DOC File]UNIT 2 UNIVERSAL GRAVITATION AND CIRCULAR MOTION

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      The gravitational force on the earth by the moon. _____ N. The centripetal acceleration of the moon around the earth, realizing that the gravitational force is also centripetal force. _____ m/s2. The speed of travel of the moon around the earth, using the formula for the speed of …

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    • [DOCX File]Universal Gravitation

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      force. of attraction is directly proportional to the product of the masses and inversely proportional to the square of the distance between them. Formula, Fg = GmM. R2. Fg = Force of gravity (N) G = Universal Gravitational Constant = 6.67x10-11 N.m2/kg2. M and m = masses in kilograms. R = distance between the masses from. center to center . in m. Fg. R. Example

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    • [DOCX File]WORKSHEET -- UNIVERSAL GRAVITATION

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      We need to use the general formula for Fg for any of the cases listed above: Where: -Fg is the force of gravity measured in Newtons (N)-m is the mass of an object in kg-r is the distance between the centers of the objects in m-G is the Gravitational Constant, equal to 6.67x10-11 Nm2/kg2 Unit Analysis: Eg. Alice and Bob are sitting beside each ...

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    • [DOC File]NEWTON’S LAW OF UNIVERSAL GRAVITATION

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      In this simulation, you will look at two massive objects and their gravitational force between them to observe . G, the constant of universal gravity that Cavendish investigated. Important Formula. s:

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    • [DOC File]Newton’s Universal Law of Gravitation

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      If the force were supplied by gravity, then it must be given by F = GMm/r2. ΣF = ma Assuming gravitational force is responsible and that the motion is circular yields. FG = m(v2/r) Substituting in Newton’s formula for gravitational force. GMm/r2 = mv2/r

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    • How to Calculate Force of Gravity: 10 Steps (with Pictures)

      In the formula, m. 1. and . m. 2. are the magnitudes of the masses and . r. is the distance between their centers as shown below. G is a number called the “Gravitational Constant”, which relates the gravitational force in Newtons to the masses in kilograms and the distance in meters. Its value is 6.67 x 10-11 Nm2 /kg2 .

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    • [DOC File]Dynamics - Bergen

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      Write the formula first: Find the force of gravitational attraction between a 70 kg student and a 1 kg physics book that are 1 meter apart. The force of gravitational attraction between a 70 kg physics student and the 1.99 x 1030 kg Sun is 0.42 N. What is the average distance between the Earth and the Sun

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