A plastic rod 1.4 m long is rubbed all over with wool, and acquires a charge of -5e-08 coulombs. We choose the center of the rod to be the origin of our coordinate system, with the x-axis extending to the right, the y-axis extending up, and the z-axis out of the page. In order to calculate the electric field at location A = < 0.7, 0, 0 > m, we divide the rod into 8 pieces, and approximate each piece as a point charge located at the center of the piece. A j zero magnitude (a) What is the length of one of these pieces? m (b) What is the location of the center of piece number 2? m. (c) How much charge is on piece number 2? (Remember that the charge is negative.) coulombs
A plastic rod 1.4 m long is rubbed all over with wool, and acquires a charge of -5e-08 coulombs. We choose the center of the rod to be the origin of our coordinate system, with the x-axis extending to the right, the y-axis extending up, and the z-axis out of the page. In order to calculate the electric field at location A = < 0.7, 0, 0 > m, we divide the rod into 8 pieces, and approximate each piece as a point charge located at the center of the piece. A j zero magnitude (a) What is the length of one of these pieces? m (b) What is the location of the center of piece number 2? m. (c) How much charge is on piece number 2? (Remember that the charge is negative.) coulombs
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The plastic rod, 1.4 m total in length, is rubbed with a piece of wool. Doing so, the plastic rod acquires a charge, by the transfer of the electrons from the wool to the rod, thus giving the plastic rod a charge of
As this rod acquires a negative charge, it will also radiate an electric field, that will be directed inwards towards the rod, since the charge is negative.
For simplicity reasons, the rod is divided into 8 equal small length elements, such that each length element behaves like a point charge.
And the charge on each such element will also be equally distributed, such that the total charge on the rod is divided into 8 equal point charges.
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