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Standard XII
Physics
Work Energy Theorem
A constant fo...
Question
A constant force acts on a particle and its displacement x (in cm) is related to the time (in s) by the equationt x+3, when the velocity of the particle is zero, its displacement (in cm) is
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Q.
The displacement
x
of a particle moving in one dimension under the action of a constant force is related to the time
t
by the equation
t
=
√
x
+
3
∀
t
∈
[
3
,
∞
)
, where
x
is in metres and
t
is in seconds.
The displacement of the particle when its velocity is zero is
Q.
The distance
x
of a particle moving in one-direction, under the action of a constant force is related to time by equation
t
=
√
x
+
3
where
x
is in metres,
t
is in seconds.
Find the displacement of the particle when its velocity is zero.
Q.
The displacement
x
of a particle moving in one dimension under the action of a constant force is related to time
t
by the equation
t
=
√
x
+
3
, where
x
is in meter and
t
is in second. Find the displacement of the particle when its velocity is zero.
Q.
The displacement
x
of a particle moving in one dimension, under the action of a constant force is related to time
t
by the equation
t
=
√
x
+
3
where x is in metre and t in second. Calculate
the displacement of the particle when its velocity is
z
e
r
o
.
Q.
The displacement x of a particle moving in one dimension under constant acceleration is related to the time t as
t
=
√
x
+
3
. The displacement of the particle when its velocity is zero is
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