The equation of gravity

    • [DOCX File]Gravitation - Georgetown ISD

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      WORKSHEET – Universal Law of Gravitation For an object to have weight, it must interact with another object. In other words, weight is dependent upon the surroundings. Any two masses will exert a mutual, attractive force, upon each other, called the gravitational force.

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    • [DOC File]The Acceleration Due to Gravity

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      Aug 04, 2013 · You have to derive the equation for centripetal force and set it equal to the force of gravity from Newton’s law of gravity. Then you solve for the velocity. This gives you the orbital velocity. To find the period, you use the equation for velocity, and the . equation for the orbital velocity we just found.

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

      Determine the force of gravity between two 3.0 kg masses held 1.0 m apart. Determine the force of gravity between the Earth (5.98 × 1024 kg) and a 70 kg person standing on Earth’s surface. The radius of Earth is 6.38 × 106 m. Compare this value to the person’s weight. The mass of the Moon is 7.34 × 1022 kg and its radius is 1.74 × 106 m.

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    • [DOC File]The Acceleration Due to Gravity - SMU Physics

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      We will assume that the only acceleration present is due to the force of gravity so that we can set a = g. We then obtain the relation that describes the distance the object falls as a function of time. x(t) = (1/2) gt2 . (6) Equation (6) provides a means to measure g.

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    • [DOC File]Name______________________

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      Use the Bernoulli equation to calculate the velocity of the water exiting the nozzle. (Hint: The density of water is 1000 kg/m3 and gravity . g. is 9.8 m/s2. Pay attention to units!)] TeachEngineering.org – Free STEM Curriculum for K-12. Answer: 1 2 ρv 1 2 + ρg h 1 + P 1 = 1 2 ρv 2 2 + ρg h 2 + P 2 .

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    • [DOCX File]WORKSHEET -- UNIVERSAL GRAVITATION

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      Looking at Equation (1) and equating F to the gravitational force (Fg), we see that: ma = = mg , (4) where. g = . This quantity g is a special acceleration and is itself a constant because it depends on quantities that do not change with time. We call this special acceleration the . gravitational acceleration

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    • [DOC File]AP Physics – Applying Forces

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      we can match equation (1) to this form by letting x = t2, m = 1/2*g & b=0. Notice that the slope of the line would be half the acceleration due to gravity, so we would have to find the slope and then double our value. However, if we were to plot y vs. then when we match this to the formula for a straight line we find that:. (3)

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