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Q1. An electron starts from rest 75.5 cm from a fixed point charge with Q = -0.150 µC. How fast will the electron be moving when it is too far away?
Q2. A space station, in the form of a wheel 102 m in diameter, rotates to provide an "artificial gravity" of 3.50 m/s2 for persons who walk around on the inner wall of the outer rim. Find the rate of wheel's rotation in revolutions per minute that will produce this effect.
A 64-kg man standing on a scale in an elevator notes that as the elevator rises, the scale reads 834 N. What is the acceleration of elevator.
Calculate the coil's self-inductance. If the current decreases uniformly from 5.00 to 2.00 in 3.00, estimate the self-induced emf in the coil.
If the contact time with the sidewalk is 1800s, what is the magnitude of an average force exerted on the superball by the sidewalk.
A wheel 45.0 cm in diameter accelerates uniformly from 206rpm to 340 rpm in 7.0 s. How far will a point on edge of the wheel have travelled in this time.
A horse races once around a circular track in a time of 118s, with a speed of 17 m/s. What is the radius of the track? How do you go about solving this.
How to find out the magnitude of the acceleration
What are the original charges on each sphere
Then find the force between them as a function of distance h. describe why the sign of the force does (or does not) make sense to you.
Find distances between the lens and the film
Find out the vertical component of the reaction force
Find out the magnetic induction at a point
What is the time of oscillation of block
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