*** 27. Two circular discs form the plates of a capacitor that is placed in a circuit in which a current I = 3 amps is going to the right. Each plate has an area of 10-2 m2. The distance between the plates is 1 cm.

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*** 27. Two circular discs form the plates of a capacitor that is placed in a circuit in which
a current I = 3 amps is going to the right. Each plate has an area of 10-2 m2. The distance
between the plates is 1 cm.
Sy bno 0E dignsilollon
a) At a time when the charge on the plates is 6 C, find the electric field in the region
between the plates.
b) If a positive current is flowing, the charge on the capacitor will be increasing. Use
the appropriate right-hand rule to find the direction of the magnetic field in the region
between the plates of the capacitor.
C) Find the magnitude of the magnetic field between the two plates at a distance r = 3 cm
from the centerline of the circular plates, as shown. [Hint: You may assume that the
magnetic field is constant along the dashed circular path of radius r shown in the figure
and that it is everywhere tangent to the circle.]
Transcribed Image Text:*** 27. Two circular discs form the plates of a capacitor that is placed in a circuit in which a current I = 3 amps is going to the right. Each plate has an area of 10-2 m2. The distance between the plates is 1 cm. Sy bno 0E dignsilollon a) At a time when the charge on the plates is 6 C, find the electric field in the region between the plates. b) If a positive current is flowing, the charge on the capacitor will be increasing. Use the appropriate right-hand rule to find the direction of the magnetic field in the region between the plates of the capacitor. C) Find the magnitude of the magnetic field between the two plates at a distance r = 3 cm from the centerline of the circular plates, as shown. [Hint: You may assume that the magnetic field is constant along the dashed circular path of radius r shown in the figure and that it is everywhere tangent to the circle.]
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