Two masses (m1 = 5x105 kg and m2 = 5 x105 kg ) are separated by 1 m. What is the magnitude of the force of gravity acting on each mass (in Newtons)?
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A: Write the given values with suitable variables. M=7.75×1024 kgm=2.75×1022 kgr=2.9×108 m Here, M, m,…
Q: 10.0 kg 10.0 КС O 5.0cm 5.0 cm 20.0cm 20.0Kg
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Q: A)Find the magnitude of the gravitational force (in N) between a planet with mass 8.75 ✕ 1024 kg and…
A: It is given that, mp=8.75×1024 kgmm=2.30×1022 kgr=2.40×108 m
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.25 ✕ 1024 kg…
A: planet with mass, m1 = 7.25 ✕ 1024 kg its moon, with mass , m2 = 2.25 ✕ 1022 kg, the average…
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A: Given data: Mass of the planet (M1) = 8.00×1024 kg Mass of the moon (M2) = 2.50×1022 kg Distance…
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Q: (A) Find the magnitude of the gravitational force (in N) between a planet with mass 7.75 ✕ 1024 kg…
A: (a) The magnitude of gravitational force is given by,
Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.75 x 1024 kg…
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Q: A)Find the magnitude of the gravitational force (in N) between a planet with mass 8.75 ✕ 1024kg and…
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Two masses (m1 = 5x105 kg and m2 = 5 x105 kg ) are separated by 1 m. What is the magnitude of the force of gravity acting on each mass (in Newtons)?
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- a)find the magnitude of the gravitational force (in N) between a planet with mass 9.00 ✕ 1024 kg and its moon, with mass 2.20 ✕ 1022 kg, if the average distance between their centers is 2.20 ✕ 108 m. = N b)What is the moon's acceleration (in m/s2) toward the planet? (Enter the magnitude.) What is the planet's acceleration (in m/s2) toward the moon? (Enter the magnitude.)Two wrestlers, 0.025 m apart, exert a 2.8 x 10-3 N gravitational force on each other. One has a mass of 157 kg. What is the other’s mass?Sphere A with mass 92 kg is located at the origin of an xy coordinate system; sphere B with mass 65 kg is located at coordinates (0.25 m, 0); sphere C with mass 0.50 kg is located at coordinates (0.19 m, 0.18 m). In unit-vector notation, what is the gravitational force on C due to A and B? Number i i+ i j Units eTextbook and Media
- Find the magnitude of the gravitational force (in N) between a planet with mass 7.25 ✕ 1024 kg and its moon, with mass 2.50 ✕ 1022 kg, if the average distance between their centers is 2.90 ✕ 108 m. N (b) What is the moon's acceleration (in m/s2) toward the planet? (Enter the magnitude.) m/s2 (c) What is the planet's acceleration (in m/s2) toward the moon? (Enter the magnitude.) m/s2In the book 2010: Odyssey Two, Chinese astronauts land on Europa, one of Jupiters Moons. Suppose one of these astronauts on Europa drops a tool 2 m above the ground. How long will it take for it to hit the ground? MEuropa = 4.7998×1022 kg, REuropa = 1.561×106(a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.75 x 1024 kg and its moon, with mass 2.50 × 1022 kg, if the average distance between their centers is 2.70 x 108 m. N (b) What is the moon's acceleration (in m/s²) toward the planet? (Enter the magnitude.) m/s² (c) What is the planet's acceleration (in m/s²) toward the moon? (Enter the magnitude.) m/s²
- A planet has a mass of 6.90 × 1023 kg and a radius of 2.89 × 106 m. (a) What is the acceleration due to gravity on this planet? (b) How much would a 74.8-kg person weigh on this planet?The distance between the centers of Earth and the Moon is D. If the mass of the Earth is Mg and the mass of the Moon is My, which of the following is a correct expression for the magnitude of the acceleration of an object that is located halfway between the two bodies, a distance D from their centers? (Мв — Мм) 4G 4G D D 2G (Мв + Mм) 2G (Mв — Мм) D2 (Мg+ Mм) G DThe separation distance between two 1.0 kg masses is changed. How is the mutual gravitational force affected in each case? (Assume F2 represents the new force and F1 represents the original force.) (a) The separation distance is two-fifths the original distance.F2 / F1 = (b) The separation distance is 8 times the original distance.F2 / F1 =
- (a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.00 x 1024 kg and its moon, with mass 2.20 x 1022 kg, if the average distance between their centers is 2.90 × 108 m. N (b) What is the moon's acceleration (in m/s2) toward the planet? (Enter the magnitude.) m/s² (c) What is the planet's acceleration (in m/s2) toward the moon? (Enter the magnitude.) m/s²The separation distance between two 1.0 kg masses is changed. How is the mutual gravitational force affected in each case? (Assume F2 represents the new force and F1 represents the original force.) (a) The separation distance is three-fourths the original distance.F2 / F1 = (b) The separation distance is 7 times the original distance.F2 / F1 =. The drawing represents two suspended spheres. The force of gravity between the two spheres is 12 N (newtons). If the mass of each sphere is doubled (2x), and the distance between the spheres remains constant, what will happen to the force of gravity?