Prob.6 An insulating solid sphere of radius R = 6.0cm has a total positive charge Q uniformly distributed throughout its volume. The electric flux through the spherical Gaussian surface of radius r = 3.0cm is 2.26x105N.m2/C. R Q Gaussian surface [c] What is the magnitude (in units of 10°N/C) of the 2-field at surface of the sphere? (Example: If your answer is 3.4x10°N/C, enter 3.4 in the answer box).

University Physics Volume 2
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Chapter6: Gauss's Law
Section: Chapter Questions
Problem 75AP: (a) Calculate the electric flux through the open hemispherical surface due to the electric field E...
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Prob.6 An insulating solid sphere of radius R = 6.0cm has a total positive charge Q uniformly
distributed throughout its volume. The electric flux through the spherical Gaussian surface of
radius r = 3.0cm is 2.26x105N.m2/C.
Q
Gaussian surface
[c] What is the magnitude (in units of 10°N/C) of the 2-field at surface of the sphere?
(Example: If your answer is 3.4x10°N/C, enter 3.4 in the answer box).
Transcribed Image Text:Prob.6 An insulating solid sphere of radius R = 6.0cm has a total positive charge Q uniformly distributed throughout its volume. The electric flux through the spherical Gaussian surface of radius r = 3.0cm is 2.26x105N.m2/C. Q Gaussian surface [c] What is the magnitude (in units of 10°N/C) of the 2-field at surface of the sphere? (Example: If your answer is 3.4x10°N/C, enter 3.4 in the answer box).
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