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A conducting rod with a mass of 0.016 [lag] is in contact with two vertical conducting rails separated by a distance 0081 [m]. The entire
A conducting rod with a mass of 0.016 [lag] is in contact with two vertical conducting rails separated by a distance 0081 [m]. The entire system is immersed in a uniform magnetic eld of magnitude 0.156 [T] pointing out of the plane of the page. The rod slides without friction and forms a complete circuit With a resistance of 5.600 [9]. What is the terminal velocity that the conducting rod will fall at? Note: when falling at its terminal velocity, the weight of the rod cancels the magnetic force on the induced current through the rod. 13
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