a tall tower of circular cross section is reinforced by horizontal circular disks (like large coins), one meter apart and of negligible thickness. the radius of the disk at height n is 1/(ninn) (n2 4 -3 assuming that the tower is of infinite height (a) wil the total area of the disks be finite or not? hint: can you compare the (b) (c) explain why there is not a contradiction between your answers in (a) and (b) series with a simpler one? if the disks are strengthened by wires going around their circumferences like tires, wi the total length of wire required be finite or not? that is, how is it possible to start with a set of disks of finite area, remove a little strip around the circumference of each, and get an infinite total length of these strips? hint: think about units you can't compare area and length. consider two cases: (1) make the width of each strip equal to one percent of the radius of the disk from which you cut it. now the total length is infinite but what about the total area? (2) try to make the strips all the same width
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Four objects each with charge +2.0ร10โ7c are located at the corners of a square whose sides are 2.0 m long. part a what quantities can be determined using this information? check all that apply. the electric force on a charged object placed at the center of the square. the mass of each object. the total electric potential energy of the system consisting of the four charged objects. part b find the electric force on a charged object placed at the center of the square.
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a tall tower of circular cross section is reinforced by horizontal circular disks (like large...
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