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Standard XII
Physics
Law of Conservation of Mechanical Energy
the dis†an ce...
Question
the dis†an ce of a particle moving on a circle of radius 12 m measured from a fixed point on the circle and measured along the circle is given by s=2t3 in metre the ratio of its †an gential to centripetal acceleration at t=2
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Q.
The distance of a particle moving on a circular path of radius
12
m
measured from a fixed point on the circle and measured along the circle is given by
S
=
2
t
3
(in metres). The ratio of its tangential to centripetal acceleration at
t
=
2
s
is
Q.
A particle of mass
M
is moving in a circle of fixed radius
R
in such a way that its centripetal acceleration at time
t
is given by
n
2
R
t
2
where
n
is a constant. The power delivered to the particle by the force acting on it, is:
Q.
A particle of mass
M
is moving in a circle of fixed radius
R
in such a way that its centripetal acceleration at time
t
is given by
n
2
R
2
t
2
where
n
is a constant. The power delivered to the particle by the force acting on it is:
Q.
A particle is revolving in a circle. Its angular speed increases from 2 rad/s to
40
rad/s in
19
sec. The radius of the circle is
20
c
m
. Compute the ratio of its centripetal acceleration to its tangential acceleration at the end of 40s.
Q.
Figure shows the total acceleration
a
=
32
m
/
s
2
of a moving particle moving clockwise in a circle of radius
R
=
1
m
. What are the centripetal acceleration
a
and speed
v
of the particle at given instant?
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