(a) Find the electromagnetic momentum in the space between the plates. (b) Now a resistive wire is connected between the plates, along the z axis, so that the capacitor slowly discharges. The current through the wire will experience a magnetic force; what is the total impulse delivered to the system, during the discharge??

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Problem 8.6 A charged parallel-plate capacitor (with uniform electric field
E = E 2) is placed in a uniform magnetic field B = BÂ, as shown in Fig. 8.6.
B
A
B
d E E
FIGURE 8.6
Transcribed Image Text:Problem 8.6 A charged parallel-plate capacitor (with uniform electric field E = E 2) is placed in a uniform magnetic field B = BÂ, as shown in Fig. 8.6. B A B d E E FIGURE 8.6
(a) Find the electromagnetic momentum in the space between the plates.
(b) Now a resistive wire is connected between the plates, along the z axis, so that
the capacitor slowly discharges. The current through the wire will experience
a magnetic force; what is the total impulse delivered to the system, during the
discharge??
Transcribed Image Text:(a) Find the electromagnetic momentum in the space between the plates. (b) Now a resistive wire is connected between the plates, along the z axis, so that the capacitor slowly discharges. The current through the wire will experience a magnetic force; what is the total impulse delivered to the system, during the discharge??
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