Problem 10: Examine the three-dimensional conductor in the figure, that has a cavity in its interior. The conductor has an excess charge 3.6 µC on it. Part (a) What is the electric flux (in N m2/C) through the Gaussian surface S1 shown in the figure? P1 = Part (b) Now put a point of charge 27.7 µC inside the cavity of the conductor. What is the flux (in N m2/C) through the Gaussian surface S1? D'1 = Part (c) Now consider the Gaussian surface S2. With the charge still inside the cavity, what is the flux (in Nm2/C) through this surtace!

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Chapter1: Units, Trigonometry. And Vectors
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E6 P10

Problem 10: Examine the three-dimensional conductor in the figure, that has a cavity in its
interior. The conductor has an excess charge 3.6 µC on it.
S2
Part (a) What is the electric flux (in N•m2/C) through the Gaussian surface S, shown in the figure?
Part (b) Now put a point of charge 27.7 µC inside the cavity of the conductor. What is the flux (in N-m2/C) through the Gaussian surface S,?
D'1 =
Part (c) Now consider the Gaussian surface S. With the charge still inside the cavity, what is the flux (in Nm2/C) through this surtace?
O, =
Transcribed Image Text:Problem 10: Examine the three-dimensional conductor in the figure, that has a cavity in its interior. The conductor has an excess charge 3.6 µC on it. S2 Part (a) What is the electric flux (in N•m2/C) through the Gaussian surface S, shown in the figure? Part (b) Now put a point of charge 27.7 µC inside the cavity of the conductor. What is the flux (in N-m2/C) through the Gaussian surface S,? D'1 = Part (c) Now consider the Gaussian surface S. With the charge still inside the cavity, what is the flux (in Nm2/C) through this surtace? O, =
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