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Distribution of charges samples. The potential inside a conducting sphere of radius R is a. directly proportional to radius r of the Gaussian Surface. b.

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Distribution of charges samples.

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The potential inside a conducting sphere of radius R is a. directly proportional to radius "r" of the Gaussian Surface. b. Inversely proportional to the radius "r" of the Gaussian surface. C C. a constant. d. zero. O e. inversely proportional to the square of the radius "r" of the Gaussian surface. O F. infinite.8) A negative charge, if free, tries to move A) in the direction of the electric field. B) from low potential to high potential. C) from high potential to low potential. D) away from infinity. E) toward infinity. 9) Gaussian surfaces A and B enclose the same positive charge +Q. The area of Gaussian surface A is three times larger than that of Gaussian surface B. The flux of electric field through Gaussian surface A is A) nine times larger than the flux of electric field through Gaussian surface B. B) unrelated to the flux of electric field through Gaussian surface B. C) equal to the flux of electric field through Gaussian surface B. D) three times smaller than the flux of electric field through Gaussian surface B. 10) If the electric field is in the positive x direction and has a magnitude given by E = Cx, where C is a constant, then the electric potential is given by V= A) 2Cx B) -2Cx C) Cx3/3 D) -CP3/3 E) -3Cx 27. (4 pts) The figure shows four Gaussian surfaces surrounding a distribution of charges. +24 d (a) Which Gaussian surfaces have an electric flux of +q/ep through them? Circle all that apply a b C d (b) Which Gaussian surfaces have no electric flux through them? Circle all that apply a b C d

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