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(Solved): The three small spheres shown in (Figure 1) carry charges Find the net electric flux through the c ...



The three small spheres shown in (Figure 1) carry charges
Find the net electric flux through the closed surface \( S_{1} \) sFind the net electric flux through the closed surface \( S_{4} \) shown in cross section in the figure. Express your answer i

The three small spheres shown in (Figure 1) carry charges Find the net electric flux through the closed surface \( S_{1} \) shown in cross section in the figure. \( q_{1}=4.25 \mathrm{nC}, q_{2}=-7.90 \mathrm{nC} \), and \( q_{3}=2.20 \mathrm{nC} \). Express your answer in newton times meters squared per coulomb. Part B Find the net electric flux through the closed surface \( S_{2} \) shown in cross section in the figure. Express your answer in newton times meters squared per coulomb. Figure 1 of 1 Part C Find the net electric flux through the closed surface \( S_{3} \) shown in cross section in the figure. Express your answer in newton times meters squared per coulomb. Find the net electric flux through the closed surface \( S_{4} \) shown in cross section in the figure. Express your answer in newton times meters squared per coulomb. Part E Find the net electric flux through the closed surface \( S_{5} \) shown in cross section in the figure. Express your answer in newton times meters squared per coulomb.


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Net electric flux through a gaussian loop is given by: electric flux = = Qnet/e0 e0 = 8.854*10^-12 Qnet = Net charge inside the surface/loop Part A. electric flux through surface S1 will be: = q1/e0 Si
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