12 Figure 23-29 shows four Gaussian surfaces consisting of identical cylindrical midsections but different end caps. The surfaces are in a uniform electric field E that is directed parallel to the central axis of each cylindrical midsection. The end caps have these shapes: S,, con- vex hemispheres; S, concave hemispheres; S3, cones; S, flat disks. Rank the surfaces according to (a) the net electric flux through them and (b) the electric flux through the top end caps, greatest first.
12 Figure 23-29 shows four Gaussian surfaces consisting of identical cylindrical midsections but different end caps. The surfaces are in a uniform electric field E that is directed parallel to the central axis of each cylindrical midsection. The end caps have these shapes: S,, con- vex hemispheres; S, concave hemispheres; S3, cones; S, flat disks. Rank the surfaces according to (a) the net electric flux through them and (b) the electric flux through the top end caps, greatest first.
College Physics
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Transcribed Image Text:12 Figure 23-29 shows four Gaussian surfaces consisting of identical
cylindrical midsections but different end caps. The surfaces are in a
uniform electric field E that is directed parallel to the central axis of
each cylindrical midsection. The end caps have these shapes: S,, con-
vex hemispheres; S, concave hemispheres; S3, cones; S, flat disks.
Rank the surfaces according to (a) the net electric flux through them
and (b) the electric flux through the top end caps, greatest first.
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