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1. For the figure shown to the right, what is the electric field (magnitude and direction) and electric potential at points 1, 2, and 3 if a= 1 m and q= 1 nC?

1549_Q.png

2. A fixed, rigid rod with no net charge attracts a suspended pith ball as shown below. What is the sign of the net charge on the pith ball?

2252_Untitled.png

A. Positive
B. Negative
C. Neutral
D. We don't have enough information to determine the sign

3. Rank in order from largest-to-smallest the change in electric potential energy as a proton moves from point 1 to point 2 (ΔU_12), from point 1 to point 3 (ΔU_13), and from point 2 to point 3 (ΔU_23)) in the figure shown to the right. Use symbols such as >, <, and = in your ranking.

1547_energy.png

4. A proton moves near a stationary alpha particle along the arc shown below. Rank, in order from largest to-smallest, the speed of the proton at points 1 (v_1), 2 (v_2), and 3 (v_3). Use symbols such as >, <, and = in your ranking.

1475_charges.png

5. Which of the following integrals will correctly calculate the electric potential at a point P a distance aabove a uniformly charged thin rod of length L and linear charge density λ?

2360_points.png

234_Ab.png

6. Two very long and very thin glass rods are uniformly charged with a linear charge density of λ= 10 nC/m and placed side-by-side a distance a=8.0 cm apart. What are the electric field vectors at points 1, 2, and 3 located at distances of a/4, a/2, and 3a/4 to the right of rod A? What would be the force vector exerted on a proton placed at point 3?

1946_electric.png

7. Two charged dust particles are a distance of 8.0 cm apart, as shown below. What amount of work would be required to move an electron from location 1 to location 2? If the electron is released from rest at location 1, what must its speed be at location 2?

1459_move.png

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