11 Suppose that a parallel-plate capacitor has circular plates with radius R= 30 mm and a plate separation of 5.0 mm. Suppose also that a sinusoidal potential difference with a maxi- mum value of 150 V and a frequency of 60 Hz is applied across the plates; that is, V = (150 V) sin[2(60 Hz)t]. |(a) Find Bmax(R), the maximum value of the induced magnetic field that occurs at r = R. (b) Plot Bmar(r) for 0

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11 Suppose that a parallel-plate capacitor has circular plates
with radius R= 30 mm and a plate separation of 5.0 mm.
Suppose also that a sinusoidal potential difference with a maxi-
mum value of 150 V and a frequency of 60 Hz is applied across
the plates; that is,
V = (150 V) sin[2(60 Hz)t].
|(a) Find Bmax(R), the maximum value of the induced magnetic field
that occurs at r = R. (b) Plot Bmar(r) for 0 <r< 10 cm.
Transcribed Image Text:11 Suppose that a parallel-plate capacitor has circular plates with radius R= 30 mm and a plate separation of 5.0 mm. Suppose also that a sinusoidal potential difference with a maxi- mum value of 150 V and a frequency of 60 Hz is applied across the plates; that is, V = (150 V) sin[2(60 Hz)t]. |(a) Find Bmax(R), the maximum value of the induced magnetic field that occurs at r = R. (b) Plot Bmar(r) for 0 <r< 10 cm.
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