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a> C 6. As shown in Fig. 7(a),(b), and (C), A point charge Q is placed inside an uniform spherical shell charge distribution (Fig. 6(a)
a> C 6. As shown in Fig. 7(a),(b), and (C), A point charge Q is placed inside an uniform spherical shell charge distribution (Fig. 6(a) and Fig. 6(c)), and a cubic shell charge distribution (Fig. 6(b)). Spherical Gaussian surfaces labelled Sq, S., and Sare defined in Fig 6(a), (b), and (c), respectively. The total charge of all shells is -Q. Let e,ACE,B ,and Oec be the total electric flux through the surface Sq, S., and S., respectively, and EEA, EE,B, Eec be the electric field distribution on the surface Sq, Sb, and S, respectively. Which of the following statement is correct? (A) EA=0, Ex=0, ,B=0, ER=0, 0e,c= 0, and Ec=0 (B) Pex=0, EX=0, DE,B= 0, EB=0, Ec= 0, and Ec# 0 (C) 0,2= 0, EX=0, 0,B= 0, E870, e c= 0, and E70 (D) 04,2=0, EA #0, 02,6= 0, E570, 0, 0, and E#0 (E) 0,2= 0, E470, ,870, E870, Pec=0, and EF 0 (F) PEA= 0, EA=0, VEB+0, E870, Pe.c0, and Ec# 0 (G) DEA= 0, E2=0, 02,8 70, E870, 0e,c = 0, and Ec#0 = EA EB = E,C a> C 6. As shown in Fig. 7(a),(b), and (C), A point charge Q is placed inside an uniform spherical shell charge distribution (Fig. 6(a) and Fig. 6(c)), and a cubic shell charge distribution (Fig. 6(b)). Spherical Gaussian surfaces labelled Sq, S., and Sare defined in Fig 6(a), (b), and (c), respectively. The total charge of all shells is -Q. Let e,ACE,B ,and Oec be the total electric flux through the surface Sq, S., and S., respectively, and EEA, EE,B, Eec be the electric field distribution on the surface Sq, Sb, and S, respectively. Which of the following statement is correct? (A) EA=0, Ex=0, ,B=0, ER=0, 0e,c= 0, and Ec=0 (B) Pex=0, EX=0, DE,B= 0, EB=0, Ec= 0, and Ec# 0 (C) 0,2= 0, EX=0, 0,B= 0, E870, e c= 0, and E70 (D) 04,2=0, EA #0, 02,6= 0, E570, 0, 0, and E#0 (E) 0,2= 0, E470, ,870, E870, Pec=0, and EF 0 (F) PEA= 0, EA=0, VEB+0, E870, Pe.c0, and Ec# 0 (G) DEA= 0, E2=0, 02,8 70, E870, 0e,c = 0, and Ec#0 = EA EB = E,C
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