Planet X is very large, having a mass and radius that are, respectively, 343 and 11.6 times that of earth. Suppose that an object falls from rest near the surface of each planet and that the acceleration due to gravity remains constant during the fall. Each object falls the same distance before striking the ground. Determine the ratio of the time of fall on planet x to that on earth.
Q: HINT (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.25 x 1024…
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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: Given value--- mass of planet = 7.25 × 1024 kg. mass of Moon = 2.30 × 1022 kg. distance between…
Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.00 ✕ 1024 kg…
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.00 ✕ 1024 kg…
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.00 ✕ 1024 kg…
A: The given data are listed below with suitable variables. Here, M denotes the planet’s mass, m…
Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.25 ✕ 1024 kg…
A: Mass of planet ,M = 7.25 ✕ 1024 kg Mass of moon ,m = 2.40 ✕ 1022 kg Distance , r = 2.90 ✕ 108 m To…
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
Q: a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.00 ✕ 1024 kg…
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.00 ✕ 1024 kg…
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 7.75 ✕ 1024 kg…
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.25 x 10" kg…
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Q: (a) Find the magnitude of the gravitational force (in N) between a planet with mass 8.00 ✕ 1024 kg…
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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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- A)Find the magnitude of the gravitational force (in N) between a planet with mass 8.75 ✕ 1024kg and its moon, with mass 2.30 ✕ 1022 kg, if the average distance between their centers is 2.40 ✕ 108 m. _______N B)What is the moon's acceleration (in m/s2) toward the planet? (Enter the magnitude.) __________m/s^2 C)What is the planet's acceleration (in m/s2) toward the moon? (Enter the magnitude.) _________m/s^2Suppose you could safely explore every terrestrial world in the solar system to conduct basic physics experiments. On your return from visiting several of these worlds, you realize that you forgot to label the data for the free fall acceleration experiments you performed. The following graph shows the vertical distance fallen (m) as a function of time (s) for a rock dropped from rest on the surface of one of the terrestrial worlds you visited in the solar system. A chart is included with known free fall accelerations of various terrestrial worlds. Where were the data collected?A planet orbiting a distant star has radius 3.54×106 mm. The escape speed for an object launched from this planet's surface is 7.65×103 m/sm/s. What is the acceleration due to gravity at the surface of the planet? Express your answer with the appropriate units.
- but your architects use the units You have negotiated with the Omicronians for a base on the planet Omicron Persei 7. The architects working with you to plan the base need to know the acceleration of a freely falling object at the surface of the planet in order to adequately design the structures. The Omicronians have told you flurg meter that the value is goP7 = = 7.29 and from your previous experience you know that both the Omicronians and your architects are terrible at unit conversion. Thus, it's up to you to do the unit conversion. Fortunately, you know the unit equality grom²¹ second² meter relationships: 5.24 flurg : 1 meter and 1 grom = 0.493 second. What is the value of gop7 in the units your architects will use, in second² VE ΑΣΦ SOP7 = ? meter second² " ?Two ships of equal mass are 105 m apart. What is the acceleration of either ship due to the gravitational attraction of the other? Treat the ships as particles and assume each has a mass of 39,000 metric tons. (Give the magnitude of your answer in m/s2.)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.)
- While visiting Planet Physics, you toss a rock straight up at 15 m/s and catch it 2.4 s later. While you visit the surface, your cruise ship orbits at an altitude equal to the planet's radius every 210 min.magnitude gravitational force (between a planet with mass 9.00 * 10 ^ 24 and moon, with 2.40 * 10 ^ 22 average distance between their canters 2.10 * 10 ^ 8* m b) ? is the moon's acceleration in m/s^ 2 ) toward the planet(Enter the magnitude. ) m/s^ 2 the planets acceleration (in m/s^ 2 ) the moon?Assume that we have a distant Star-Planet system with no other planets and the Star is the same as the Sun and the planet is the same as the Earth. This is called an "Earth analog system or "Earth twin". The masses and the orbits are the same except you can assume a perfectly circular orbit. A) Calculate the equation for the orbital velocity of a planet on a circular orbit. To do this use the equation for average speed: distance=rate x time. In a circular orbit, the speed is always the same, so you can use a time that is one full orbital period (1 year). What is the distance that a planet on a circular orbit travels in this time? Calculate the speed of the Earth twin in meters/second. Mass of the sun: 2 x 1030 kg. Mass of the Earth: 5.97 x 1024kg (Note: I think I understand how to use the distance= rate x time, but I'm not sure what to input for rate in this situation. I am also not sure how to calculate the speed of the Earth twin)
- In 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 = 1.561×106You are watching a TV news program when they switch to some scenes taken aboard the space shuttle which circles 500 miles above the Earth once every 95 minutes. To allow the audience to appreciate the distances involved, the announcer tells you that the radius of the Earth is about 4000 miles and the distance from the Earth to the Moon is about 250,000 miles. When an astronaut drops her pen it floats in front of her face. You immediately wonder how the acceleration of the dropped pen compares to the acceleration of a pen that you might drop here on the surface of the Earth.A 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/2