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Use the worked example above to help you solve this problem, An AC generator consists of eight turns of wire, each having area A =
Use the worked example above to help you solve this problem, An AC generator consists of eight turns of wire, each having area A = 0.0930 m', with a total resistance of 12.9 0. The loop rotates in a magnetic field of 0.409 T at a constant frequency of 63.7 Hz. (a) Find the maximum induced em!. X Your response differs from the correct answer by more than 10%. Double check your calculations, (b) What is the maximum induced current? A (c) Determine the induced emf and current as functions of time. V]sin(rog) 1 - Alsin(on) (d) What maximum torque must be applied to keep the coll turning? N . mM STUCK! An AC generator is to have a maximum output of 314 V. Each coll has an area of 0.106 m and a resistance of 15.7 02 and rotates in a magnetic field of 0.797 T with a frequency of 42.9 Hz, with the axis of rotation perpendicular to the direction of the magnetic field. (a) How many turns of wire should the coil have to produce the desired emf? N turns (b) Find the maximum current induced in the coil. max (c) Determine the induced emf as a function of time. V)sin
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