A planet is found to be 3.5 times as far from the sun as the earth. How long would it take to go around the sun?
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A: Using the given information from the question we can solve it easily.
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Q: Two satellites are in circular orbits around Jupiter. One, with orbital radius r, makes one…
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Q: A planet is found to be 3.5 times as far from the sun as the earth. How
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Q: When a falling meteoroid is at a distance above the Earth's surface of 3.30 times the Earth's…
A: Given data: A meteoroid is falling above the Earth's surface Altitude (h) = 3.30R Required: The…
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Q: NASA launches a satellite into orbit at a height above the surface of the Earth equal to the Earth's…
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Q: it of the moon about the earth is approximately circular, with a mean radius of 3.84 x 10% m. It…
A: Given- Radius of orbit of moon (R) = 3.84 x 108 m Time to complete an orbit (t) = 27.3 days Now we…
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A: Recall ar=ω2R=centripetal acceleration
Q: The moon revolves around the Earth in a circular orbit with a radius of 3.84×108 ?.?? ????? 27.3…
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Q: What centripetal acceleration do we undergo at the equator with respect to earth's center on account…
A: We know that centripetal acceleration is, ac = w2R where, w = angular speed and R = radius
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Q: The moon completes one (circular) orbit of the earth in 23.7 days. The distance from the earth to…
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Q: the period of a moving rock in a horizonal circle with a radio of 2m is 1.00s. find its tangential…
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Q: An artificial satellite circles the Earth in a circular orbit at a location where the acceleration…
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Q: Astronomers discover an exoplanet, a planet orbiting a star other than the Sun, that has an orbital…
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Q: A piece of space debris is travelling in an elliptical orbit around a planet. At its closest point…
A: The equation of conservation of angular momentum is mv1r1 = mv2r2This means that the angular…
Q: 1) A planet is orbiting a star at a distance of 1.20 x 10¹¹ m with a period of 0.750 Earth years.…
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Q: a planet has a moon which is 2.5x10^9 m away from the planet, the moon makes a circular orbit…
A: Given Data: The distance between the moon and the planet is, r=2.5×109 m The time period of…
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- A newly discovered planet moves in a circular orbit around the star at a constant speed. The direction of the planet's acceleration is:A race car is moving at 40.0 m/s around a circular racetrack of radius 265 m. Calculate (a) the period of the motion and (b) the car’s centripetal acceleration.The International Space Station orbits the Earth in a circle with a radius of approximately 6688185 m (which is only a few hundred miles above Earth's surface). At that distance, the acceleration due to gravity is only 8.87m / (s ^ 2) what is the velocity of the space station in this orbit? Your answer should be in units of m / s
- Astronomers discover an exoplanet, a planet orbiting a star other than the Sun, that has an orbital period of 1.50 Earth years in a circular orbit around its star, which has a measured mass of 3.80×10^30 kg.Determine the radius ? of the exoplanet's orbit.An artificial satellite circles the Earth in a circular orbit at a location where the acceleration due to gravity is 9.065 m/s2. Determine the orbital period of the satellite? Your answer should be a unit of time.A satellite is in circular polar orbit around Earth at an altitude of 450 km – meaning it passes directly overhead of the North and South Poles. What is the magnitude and direction of the displacement vector when it is directly over the North Pole to when it is at 40° latitude? Earth’s radius is 6,370 km.
- Astronomers discover an exoplanet, a planet orbiting a star other than the Sun, that has an orbital period of 3.87 Earth years in a circular orbit around its star, which has a measured mass of 3.77×10^30 kg. Find the radius r of the exoplanet's orbit.The orbit of the moon around the earth is approximately circular, with a mean radius of 3.85 x 108 m. It takes 27.3 days for the moon to complete one revolution around the earth. Find the average orbital speed of the moon.The radius of the Earth's very nearly ciruclar orbit around the sun is 1.5*10^11 m. Find the magnitude of the Earths's velocity. Assume a year of 365 days. Find the magnitude of the Earth's angular velocity. Find the magnitude of the Earths centripetal acceleration as it travels around the sun.