What is the electric field at the center of a sphere of radius R whose volume is uniformly filled with charge (total charge Q)? For this sphere, how does the electric field at a distance r1=R/4 from the center compare to the electric field at a distance r2=3R/4 from the center? Give your answer in the form E(r1)=(some constant)E(r2). For this sphere, how does the electric field at a distance r1=R from the center compare to the electric field at a distance r2=2R from the center? Give your answer in the form E(r1)=(some constant)E(r2).
What is the electric field at the center of a sphere of radius R whose volume is uniformly filled with charge (total charge Q)? For this sphere, how does the electric field at a distance r1=R/4 from the center compare to the electric field at a distance r2=3R/4 from the center? Give your answer in the form E(r1)=(some constant)E(r2). For this sphere, how does the electric field at a distance r1=R from the center compare to the electric field at a distance r2=2R from the center? Give your answer in the form E(r1)=(some constant)E(r2).
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What is the electric field at the center of a sphere of radius R whose volume is uniformly filled with charge (total charge Q)?
For this sphere, how does the electric field at a distance r1=R/4 from the center compare to the electric field at a distance r2=3R/4 from the center? Give your answer in the form E(r1)=(some constant)E(r2).
For this sphere, how does the electric field at a distance r1=R from the center compare to the electric field at a distance r2=2R from the center? Give your answer in the form E(r1)=(some constant)E(r2).
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