b) Now you place a hollow conducting sphere of inner radius a = 0.5m and outer radius b= 2.0m. Calculate the net enclosed charge by the Gaussian surface of radius r. net enclosed charge by the Gaussian surface of radius T1 Give your answer up to at least three significance digits.

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Chapter18: Electric Charge And Electric Field
Section: Chapter Questions
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Use the following constants if necessary. Coulomb constant, k = 8.987 x 10° N - m² /C². Vacuum permitivity, eo = 8.854 x 10-12 F/m. Magnitude
of the Charge of one electron, e = -1.60217662 x 10-19 C. Mass of one electron, me = 9.10938356 x 10 31 kg. Unless specified otherwise, each
symbol carries their usual meaning. For example, uC means micro coulomb.
Suppose you have q = 20 µC charge placed at the orign of your coordinate system.
Transcribed Image Text:Use the following constants if necessary. Coulomb constant, k = 8.987 x 10° N - m² /C². Vacuum permitivity, eo = 8.854 x 10-12 F/m. Magnitude of the Charge of one electron, e = -1.60217662 x 10-19 C. Mass of one electron, me = 9.10938356 x 10 31 kg. Unless specified otherwise, each symbol carries their usual meaning. For example, uC means micro coulomb. Suppose you have q = 20 µC charge placed at the orign of your coordinate system.
b) Now you place a hollow conducting sphere of inner radius a = 0.5 m and outer radius b = 2.0 m. Calculate the net enclosed charge by the Gaussian
surface of radius r.
net enclosed charge by the Gaussian surface of radius ri
Give your answer up to at least three significance digits.
C
b
Transcribed Image Text:b) Now you place a hollow conducting sphere of inner radius a = 0.5 m and outer radius b = 2.0 m. Calculate the net enclosed charge by the Gaussian surface of radius r. net enclosed charge by the Gaussian surface of radius ri Give your answer up to at least three significance digits. C b
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