1. If a Gaussian sphere encloses no charge, does it follow that E = 0 on the surface of the Gaussian sphere? Justify your answer with 1-2 sentences.
1. If a Gaussian sphere encloses no charge, does it follow that E = 0 on the surface of the Gaussian sphere? Justify your answer with 1-2 sentences.
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![1. If a Gaussian sphere encloses no charge, does it follow that E = 0 on the surface of the
Gaussian sphere? Justify your answer with 1–2 sentences.
2. Charge is uniformly distributed on the surface of a non-conducting spherical shell. The
sphere is then dented. Is the electric field inside of the shell different after it is dented?
Justify your answer with 1–2 sentences.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F82ff8a7a-ce9a-47b7-8cf7-14200e3f0743%2Fea82926f-6f33-44f1-8031-00bb3a6f4b9b%2Fb24whj_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. If a Gaussian sphere encloses no charge, does it follow that E = 0 on the surface of the
Gaussian sphere? Justify your answer with 1–2 sentences.
2. Charge is uniformly distributed on the surface of a non-conducting spherical shell. The
sphere is then dented. Is the electric field inside of the shell different after it is dented?
Justify your answer with 1–2 sentences.
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