Two thin uniformly charged rods, each with length L and total charge +Q, are parallel and separated by a distance a. The first rod has one end at the origin and its other end on the positive y-axis. The second rod has its lower end on the positive x-axis. Part A Determine the a-component of the differential force dF, exerted on a small portion of the second rod, with length dyz and position Y2, by the first rod. (This requires integrating over differential portions the first rod, parameterized by dyı.) Express your answer in terms of some or all of variables Q, L, y2, dyz, a, and the electric constant eg. Hνα ΑΣφ ? dF2z =

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Two thin uniformly charged rods, each with length L and total
charge +Q, are parallel and separated by a distance a. The
first rod has one end at the origin and its other end on the
positive y-axis. The second rod has its lower end on the
positive a-axis.
Part A
Determine the x-component of the differential force dF, exerted on a small portion of the second rod, with length dy, and position y2, by the first
rod. (This requires integrating over differential portions of the first rod, parameterized by dy1.)
Express your answer in terms of some or all of variables Q, L, Y2, dy2, a, and the electric constant ep.
να ΑΣΦ7
dF22 =
Transcribed Image Text:Two thin uniformly charged rods, each with length L and total charge +Q, are parallel and separated by a distance a. The first rod has one end at the origin and its other end on the positive y-axis. The second rod has its lower end on the positive a-axis. Part A Determine the x-component of the differential force dF, exerted on a small portion of the second rod, with length dy, and position y2, by the first rod. (This requires integrating over differential portions of the first rod, parameterized by dy1.) Express your answer in terms of some or all of variables Q, L, Y2, dy2, a, and the electric constant ep. να ΑΣΦ7 dF22 =
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