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A Nonuniform Electric Field Is Directed Along the X-Axis at All

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A nonuniform electric field is directed along the x-axis at all points in space. This magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. The electric fields E1 and E2, at the ends of the cylindrical surface, have magnitudes of A nonuniform electric field is directed along the x-axis at all points in space. This magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. The electric fields E<sub>1</sub> and E<sub>2</sub>, at the ends of the cylindrical surface, have magnitudes of   and   respectively, and are directed as shown. (ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>)  The charge enclosed by the cylindrical surface is closest to   A)  -1.1 nC. B)  1.1 nC. C)  -2.4 nC. D)  -4.8 nC. E)  4.8 nC. and A nonuniform electric field is directed along the x-axis at all points in space. This magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. The electric fields E<sub>1</sub> and E<sub>2</sub>, at the ends of the cylindrical surface, have magnitudes of   and   respectively, and are directed as shown. (ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>)  The charge enclosed by the cylindrical surface is closest to   A)  -1.1 nC. B)  1.1 nC. C)  -2.4 nC. D)  -4.8 nC. E)  4.8 nC. respectively, and are directed as shown. (ε0 = 8.85 × 10-12 C2/N ∙ m2) The charge enclosed by the cylindrical surface is closest to A nonuniform electric field is directed along the x-axis at all points in space. This magnitude of the field varies with x, but not with respect to y or z. The axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. The electric fields E<sub>1</sub> and E<sub>2</sub>, at the ends of the cylindrical surface, have magnitudes of   and   respectively, and are directed as shown. (ε<sub>0</sub> = 8.85 × 10<sup>-12</sup> C<sup>2</sup>/N ∙ m<sup>2</sup>)  The charge enclosed by the cylindrical surface is closest to   A)  -1.1 nC. B)  1.1 nC. C)  -2.4 nC. D)  -4.8 nC. E)  4.8 nC.


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