A space traveller weighs herself on Earth at a location where the acceleration due to gravity is 9.82 m/s² and finds a value of 583 N. What is her mass m? m= 59.37
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![A space traveller weighs herself on Earth at a location where the acceleration due to gravity is 9.82 m/s² and finds a value of
583 N. What is her mass m?
m =
59.37](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Feaed00ab-3a94-4222-bcd8-6aeefbebab90%2F69c6d89c-fde0-4ec2-8f39-f8d0566228a5%2F5lhben_processed.jpeg&w=3840&q=75)
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- (a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.25 ✕ 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.) ___m/s2 (c) What is the planet's acceleration (in m/s2) toward the moon? (Enter the magnitude.) ___m/s2A newly discovered planet has the same acceleration due to gravity as Earth with a value of g. If the new planet has twice the radius of Earth, what must be its mass? a me/4 b 4me c 2me d me/√2 e √2 me f me/2A 1.16 kg book in space has a weight of 4.52 N. What is the value of gravitational field at that location? Answer in units of N/kg.
- (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/s²A 1000 kg rocket is drifting in space and it will crash into the surface of Venus. What is the gravitational force pulling the rocket into Venus when the rocket is 10^9km away from Venus? Assume the mass of the earth is 6 ×10^24 kg.A very dense UFS (Unidentified Flying Sphere) has radius 1370_m and acceleration due to gravity 9.4 m/s at its surface. Find the mass of the sphere. (Note that the mass is given in exagrams or Eg, and 1 Eg = 1018 grams.) 310.6 Eg 252.4 Eg 276.5 Eg 264.5_Eg 290 Eg 300.4 Eg А. D. В. Е. С. F.
- The mass of the Earth is 5.98 × 1024 kg.A 3.87 kg bowling ball initially at rest isdropped from a height of 4.76 m.The acceleration of gravity is 9.8 m/s2. What is the speed of the Earth coming upto meet the ball just before the ball hits theground?A mass m is suspended from a massless spring of natural length 90 cm with the spring constant k = 10 Nm and causes the spring to extend by 7.9 cm. Assuming the gravitational field strength g = 9.8 ms², calculate the value of the mass on the spring. Give your answer in Sl units. Answer: Choose... +An astronaut is doing a spacewalk on a long tether at 0.1 km away from the International Space Station (mass of 420,000 kg). His spacesuit includes a very sensitive gravitometer, which indicates the gravitational force acting on the astronaut and his spacesuit from the ISS is 7.0 E−7 N. What is the mass of the astronaut in his suit if G = 6.67 E−11 N*m2/kg2? 1. 150 kg 2. 200 kg 3. 250 kg 4. 300 kg
- The 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 mass of the Earth is 5.98 × 10^24 kg. A 9.29 kg bowling ball initially at rest is dropped from a height of 3.59 m. The acceleration of gravity is 9.8 m/s^2. What is the speed of the Earth coming up to meet the ball just before the ball hits the ground? Answer in units of m/s.