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. +

icon
Related questions
Question

Please help me with this one. 

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.
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.
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 2 steps with 1 images

Blurred answer