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Show that the capacitance of a spherical...

Show that the capacitance of a spherical capacitor is `(4piepsi_(0)b^(2))/((b-a))` when the outer sphere is charged and the inner earthed.

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A spherical capacitor consists of two concentric spherical conductors, held in position by suitable insulating supports (Fig). Show that the capacitance of a spherical capacitor is given by C=(4piepsi_0r_1r_2)/(r_1-r_2) where r_1 and r_2 are the radii of outer and inner spheres , respectively.

A spherical capacitor consists of two concentric spherical conductors, held in position by suitable insulating supports (Fig. 2.34). Show that the capacitance of a spherical capacitor is given by C = (4 pi epsilon_(0)r_(1)r_(0))/(r_(1)-r_(2)) where r_(1) and r_(2) are the radii of outer and inner spheres, respectively.

A spherical capacitor consists of two concentric spherical conductors, held in position by suitable insulating supports (Fig. 2.34). Show that the capacitance of a spherical capacitor is given by C = (4 pi epsilon_(0)r_(1)r_(0))/(r_(1)-r_(2)) where r_(1) and r_(2) are the radii of outer and inner spheres, respectively.

A spherical capacitor consists of two concentric spherical conductors held in position by suitable insulating supports. Show that the capacitance of a spherical capacitor is given by C = (4pi epsilon_0 r_1 r_2) / (r_1-r_2) . Where are r_1 and r_2 are the radii of outer and inner spheres respectively.

A spherical capacitor consists of two concentric spherical conductors, held in position by suitable insulating supports. Show that the capacitance of this spherical capacitor is given by C = (4pi in_(0) r_(1) r_(2))/(r_(1) - r_(2)) , Where r_(1) and r_(2) are radial of outer and inner spheres respectively.

A sperical capacitor consists of two concentric spherical conductors, held in position by suitable insulating supports. Show that the capacitance of this spherical capacitor is given by C = (4pi in_(0) r_(1) r_(2))/(r_(1) - r_(2)) , Where r_(1) and r_(2) are radill of outer and inner spheres respectively.

Capacity of a spherical capacitor is C_(1) when inner sphere is charged and outer sphere is earthed and C_(2) when inner sphere is earthed and outer sphere charged. Then (C_(1))/(C_(2)) is (a = radius of inner sphere b = radius of outer sphere)

Capcity of a spherical capacitor is C_(1) when in sphere is charged and outer sphere is earthed and when inner sphere is earthed and outer sphere charged. Then (C_(1))/(C_(2)) is (a = radius of inner sphere b = radius of outer sphere)