II. Electric field A. In the tutorial Charge, you explored the region around a charged rod with a pith ball that had a charge of the same sign as the rod. Sketch vectors at each of the marked points to represent the electric force exerted on the ball at that location. Rod Side view X X X Rod Would the ratio F/qtest change? If so, how? If not, explain why not. X X Top view A X How does the magnitude of the force exerted on the ball at point A compare to the magnitude of the force on the ball at point B? B. Suppose that the charge, q test, on the pith ball were halved. Would the electric force exerted on the ball at each location change? If so, how? If not, explain why not. XB C. The quantity Flatest evaluated at any point is called the electric field E at that point. How does the magnitude of the electric field at point A compare to the magnitude of the electric field at point B? Explain.
II. Electric field A. In the tutorial Charge, you explored the region around a charged rod with a pith ball that had a charge of the same sign as the rod. Sketch vectors at each of the marked points to represent the electric force exerted on the ball at that location. Rod Side view X X X Rod Would the ratio F/qtest change? If so, how? If not, explain why not. X X Top view A X How does the magnitude of the force exerted on the ball at point A compare to the magnitude of the force on the ball at point B? B. Suppose that the charge, q test, on the pith ball were halved. Would the electric force exerted on the ball at each location change? If so, how? If not, explain why not. XB C. The quantity Flatest evaluated at any point is called the electric field E at that point. How does the magnitude of the electric field at point A compare to the magnitude of the electric field at point B? Explain.
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