6.4 Conductors in Electrostatic Equilibrium 60. An uncharged conductor with an intenal cavity is shown in the following figure. Use the closed surface S along with Gauss' law to show that when a charge q is placed in the cavity a total charge -q is induced on the inner surface of the conductor. What is the charge on the outer surface of the conductor? Metal E = 0 Cavity +g Figure 6.46 A charge inside a cavity of a metal. Charges at the outer surface do not depend on how the charges are distributed at the inner surface since E field inside the body of the metal is zero. +
6.4 Conductors in Electrostatic Equilibrium 60. An uncharged conductor with an intenal cavity is shown in the following figure. Use the closed surface S along with Gauss' law to show that when a charge q is placed in the cavity a total charge -q is induced on the inner surface of the conductor. What is the charge on the outer surface of the conductor? Metal E = 0 Cavity +g Figure 6.46 A charge inside a cavity of a metal. Charges at the outer surface do not depend on how the charges are distributed at the inner surface since E field inside the body of the metal is zero. +
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![6.4 Conductors in Electrostatic Equilibrium
60. An uncharged conductor with an internal cavity is
shown in the following figure. Use the closed surface S
along with Gauss' law to show that when a charge q is
placed in the cavity a total charge -q is induced on the inner
surface of the conductor. What is the charge on the outer
surface of the conductor?
Metal
E = 0
Cavity
+q
Figure 6.46 A charge inside a cavity of a metal. Charges at
the outer surface do not depend on how the charges are
distributed at the inner surface since E field inside the body of
the metal is zero.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1e02df79-f0c1-4a96-b434-39bc4a6c50d4%2F02d61845-7228-4703-9a6f-69daa2cbe0e1%2Focgmjp_processed.png&w=3840&q=75)
Transcribed Image Text:6.4 Conductors in Electrostatic Equilibrium
60. An uncharged conductor with an internal cavity is
shown in the following figure. Use the closed surface S
along with Gauss' law to show that when a charge q is
placed in the cavity a total charge -q is induced on the inner
surface of the conductor. What is the charge on the outer
surface of the conductor?
Metal
E = 0
Cavity
+q
Figure 6.46 A charge inside a cavity of a metal. Charges at
the outer surface do not depend on how the charges are
distributed at the inner surface since E field inside the body of
the metal is zero.
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