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In both Case 1 and Case 2, shown below, the block on the table (with a weight of 10 N) is accelerated by a tension force due to the attached string, which passes over a light and frictionless pulley. For Case 1 the tension is provided by a hanging block (also of weight 10 N), and for Case 2 a constant 10-N force is exerted by an external agent (the hand). What can you conclude about the magnitudes of the accelerations of the block on the table?
A. The acceleration for Case 2 is larger.
B. The accelerations for Case 1 and Case 2 are the same.
C. The acceleration for Case 1 is larger.
D. There is not enough information to make a conclusion.
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.
A resistor is in the shape of a cube, with each side of resistance R . Find the equivalent resistance between any two of its adjacent corners.
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