A simple generator consists of a loop rotating inside a constant magnetic field. If the loop is rotatingwith frequency f, the magnetic flux is given by (t) = BAcos(2 ft). If B 1.00 T and A = 1.00 mr, what must the value of f be for the maximum induced potential difference to be 110.
A simple generator consists of a loop rotating inside a constant magnetic field. If the loop is rotatingwith frequency f, the magnetic flux is given by (t) = BAcos(2 ft). If B 1.00 T and A = 1.00 mr, what must the value of f be for the maximum induced potential difference to be 110.
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
Transcribed Image Text:A simple generator consists of a loop rotating inside a
constant magnetic field. If the loop is rotatingwith
frequency f, the magnetic flux is given by (t) = BAcos(2
ft). If B 1.00 T and A = 1.00 mr, what must the
value of f be for the maximum induced potential
difference to be 110.
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