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Solve the all parts of given question:
Question: A 1.6 x 1010 kg asteroid is heading directly toward the center of the earth at a steady 15 km/s. To save the planet, astronauts strap a giant rocket to the asteroid perpendicular to its direction of travel. The rocket generates 5.2 x 109 N of thrust. The rocket is fired when the asteroid is 6.0 x 106 km away from earth. You can ignore the earth's gravitational force on the asteroid and their rotation about the sun.
Part A: If the mission fails, how many hours is it until the asteroid impacts the earth?
Part B: The radius of the earth is 6400 km. By what minimum angle (in degrees) must the asteroid be deflected to just miss the earth?
Part C: The rocket fires at full thrust for 300 s before running out of fuel. At what angle is the asteroid deflected?
I want help to find how many hours is it until the asteroid impacts the earth.
A sphere of radius R is uniformly charged to a total charge of Q. It is made to spin about an axis that passes through its center with an angular speed ω. Find the magnitude of the resulting magnetic field at the center of the sphere.
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