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Standard XII
Physics
Electric Field Due to a Sphere and Thin Shell
The potential...
Question
The potential inside a charged hollow conducting sphere is-
A
constant
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B
proportional to the distance from centre
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C
inversely proportional to the distance from centre
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D
inversely proportional to the square of the distance from centre
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Solution
The correct option is
C
inversely proportional to the distance from centre
The potential inside a charged hollow conducting sphere is
V
α
1
r
Inversely proportional to the distance from centre.
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Similar questions
Q.
Match the following.
Column - I
Column - II
a) Electric field outside a conducting charged sphere
e) Constant
b)Electric potential outside a conducting charged sphere
f) directly proportional to distance from centre
c) Electric field inside a non-conducting charged sphere
g) inversely proportional to distance from center
d) Electric potential inside a charged conducting sphere
h) inversely proportional to the square of distance from center
Q.
A non-conducting spherical ball of radius
R
contains a spherically symmetric charge with volume charge density
ρ
=
k
r
n
, where
r
is the distance from the centre of the ball and
n
is a constant. What should be
n
such that the electric field inside the ball is directly proportional to the square of distance from the centre?
Q.
The electric field inside a sphere which carries a charge density proportional to the distance from the centre
ρ
=
α
r
(
α
is a constant) is?
Q.
A sphere of radius
r
has electric charge uniformly distributed in its entire volume. At a distance
d
from the centre inside the sphere
(
d
<
r
)
the electric field intensity is directly proportional to
Q.
Potential (V) due to a charged conducting hollow spherical shell varies with distance (r) from centre as
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