3. Ah, and of course! our most favorite person of all time, Carl Friedrich Gauss. Known for his distaste for teaching and the acknowledgement of physics students all alike! He is a close family friend of ours, in his ghostly spirit! (a) Describe Guass's law for electric fields. Begin first by defining flux and then describing Guass's law. When is there the advantage of applying Gauss's law? and when there is not? (b) Determine the electric field with Guass's law from the previous problem. Careful! we must think about the statement of Gauss's law now.

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3. Ah, and of course! our most favorite person of all time, Carl Friedrich Gauss.
Known for his distaste for teaching and the acknowledgement of physics students
all alike! He is a close family friend of ours, in his ghostly spirit!
(a) Describe Guass's law for electric fields. Begin first by defining flux and
then describing Guass's law. When is there the advantage of applying
Gauss's law? and when there is not?
(b) Determine the electric field with Guass's law from the previous problem.
Careful! we must think about the statement of Gauss's law now.
Transcribed Image Text:3. Ah, and of course! our most favorite person of all time, Carl Friedrich Gauss. Known for his distaste for teaching and the acknowledgement of physics students all alike! He is a close family friend of ours, in his ghostly spirit! (a) Describe Guass's law for electric fields. Begin first by defining flux and then describing Guass's law. When is there the advantage of applying Gauss's law? and when there is not? (b) Determine the electric field with Guass's law from the previous problem. Careful! we must think about the statement of Gauss's law now.
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