The electric field everywhere on the surface of a thin, spherical she radius 0.700 m is of magnitude 855 N/C and points radially toward center of the sphere. (a) What is the net charge within the sphere's surface? 1.16e-8 If a positive charge exists inside the sphere, what direction wo electric field point outside the sphere? nC (b) What is the distribution of the charge inside the spherical s O The positive charge has a spherically symmetric charge dis O The negative charge has a spherically symmetric charge

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The electric field everywhere on the surface of a thin, spherical shell of
radius 0.700 m is of magnitude 855 N/C and points radially toward the
center of the sphere.
(a) What is the net charge within the sphere's surface?
1.16e-8
If a positive charge exists inside the sphere, what direction would the
electric field point outside the sphere? nC
(b) What is the distribution of the charge inside the spherical shelI?
O The positive charge has a spherically symmetric charge distribution.
O The negative charge has a spherically symmetric charge
distribution.
O The negative charge has an asymmetric charge distribution.
O The positive charge has an asymmetric charge distribution.
Transcribed Image Text:The electric field everywhere on the surface of a thin, spherical shell of radius 0.700 m is of magnitude 855 N/C and points radially toward the center of the sphere. (a) What is the net charge within the sphere's surface? 1.16e-8 If a positive charge exists inside the sphere, what direction would the electric field point outside the sphere? nC (b) What is the distribution of the charge inside the spherical shelI? O The positive charge has a spherically symmetric charge distribution. O The negative charge has a spherically symmetric charge distribution. O The negative charge has an asymmetric charge distribution. O The positive charge has an asymmetric charge distribution.
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