>
Rajasthan PMT
>
Physics
List of top Physics Questions on Waves and Oscillations asked in Rajasthan PMT
If the acceleration-displacement graph of simple harmonic motion of a particle is given, then the time period of the particle will be
Rajasthan PMT - 2009
Rajasthan PMT
Physics
Waves and Oscillations
A body executes simple harmonic motion. The potential energy (PE), the kinetic energy (KE) and total energy (TE) are measured as function of displacement x. Which of the following statements is true?
Rajasthan PMT - 2008
Rajasthan PMT
Physics
Waves and Oscillations
A mass M is suspended from a spring of negligible mass. The spring is pulled a little and then released so that the mass executes SHM of time period T. If the mass is increased by m, the time period becomes
$ \text{5T/3,} $
then the ratio of
$ \frac{m}{M} $
is
Rajasthan PMT - 2008
Rajasthan PMT
Physics
Waves and Oscillations
Amplitude of a pendulum is
$60 \,mm$
and angular velocity is
$2 \,rad\, s^{-1}$
. Find its velocity if its displacement is
$22 \,mm$
:
Rajasthan PMT - 2006
Rajasthan PMT
Physics
Waves and Oscillations
A particle executing SHM has amplitude
$0.01$
and frequency
$60\, Hz$
. The maximum acceleration of the particle is:
Rajasthan PMT - 2005
Rajasthan PMT
Physics
Waves and Oscillations
When the kinetic energy of a body executing S.H.M. is
$1 / 3$
of the potential energy. The displacement of the body is
$x$
percent of the amplitude, where
$x$
is :
Rajasthan PMT - 2005
Rajasthan PMT
Physics
Waves and Oscillations
A spring executes SHM with mass of
$10 \,kg$
attached to it. The force constant of spring is
$10\, N / m$
. If at any instant its velocity is
$40 \,cm / sec$
, the displacement will be (where amplitude is
$0.5 \,m$
) :
Rajasthan PMT - 2004
Rajasthan PMT
Physics
Waves and Oscillations
How is the time period of simple pendulum vary with its amplitude?
Rajasthan PMT - 2004
Rajasthan PMT
Physics
Waves and Oscillations
A mass of
$30 \,kg$
is suspended from a spring of spring constant
$15\, N/m$
. The time period of vertical oscillations of mass is
Rajasthan PMT - 2003
Rajasthan PMT
Physics
Waves and Oscillations
The velocity of a particle in S.H.M. at displacement y from mean position is ( $ a= $ amplitude $ \omega = $ angular frequency)
Rajasthan PMT - 2003
Rajasthan PMT
Physics
Waves and Oscillations