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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 5 T/3. Then ratio of mM is :-

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Important Questions on Simple Harmonic Motion

MEDIUM
A mass M is suspended from a light spring. An additional mass $m$ added displaces the spring further by a distance X. Now the combined mass will oscillate on the spring with period
HARD
Two blocks of masses m1=1 kg and m2=2 kg are connected by a spring of spring constant 24 N m-1 and is placed on a horizontal frictionless surface. The block m1 is imparted an initial velocity 12 cm s-1 which produces maximum compression in the spring towards m2. The amplitude of oscillation is
EASY
A 10 Kg collar is attached to a spring (spring constant 600 N/m). It slides without friction over a horizontal rod. The collar is displaced from its equilibrium position by 20 cm and released. What is the speed of the oscillation?
EASY

Two identical springs of spring constant 2k are attached to a block of mass m and to fixed support (see figure). When the mass is displaced from equilibrium position on either side, it executes simple harmonic motion. The time period of oscillations of this system is :

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EASY
A spring whose unstrentches length is l has a force constant k. The spring is cut into two pieces of unstretches lengths l1 and l2 where, l1=nl2 and n is an integer. The ratio k1/k2  of the corresponding force constants, k1 and k2 will be:
EASY

In the given figure, a body of mass M is held between two massless springs, on a smooth inclined plane. The free ends of the springs are attached to firm supports. If each spring has spring constant k, the frequency of oscillation of given body is:

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HARD
An arrangement of spring, strings, pulley and masses is shown in the figure below.
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The pulley and the strings are massless and M>m. The spring is light with spring constant k. If the string connecting m to the ground is detached, then immediately after detachment
MEDIUM
A spring is stretched by 5 cm by a force 10 N. The time period of the oscillations when a mass of 2 kg is suspended by it is :
EASY
If the mass shown in figure is slightly displaced and then let go, then the system shall oscillate with a time period of
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EASY

A tray of mass 12 kg is supported by two identical springs as shown in figure. When the tray is pressed down slightly and then released, it executes SHM with a time period of 1.5 s. The spring constant of each spring is

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MEDIUM
If two similar springs each of spring constant K1 are joined in series, the new spring constant and time period would be changed by a factor:
HARD
Two bodies of masses 1 kg and 4 kg are connected to a vertical spring, as shown in the figure. The smaller mass executes simple harmonic motion of angular frequency 25 rad s-1, and amplitude 1.6 cm while the bigger mass remains stationary on the ground. The maximum force exerted by the system on the floor is (take g = 10 m s-2).
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EASY
Two particles A and B of equal masses are suspended from two massless springs of spring constants K1 and K2 respectively.If the maximum velocities during oscillations are equal, the ratio of the amplitude of A and B is
MEDIUM

In the given figure, a mass M is attached to a horizontal spring which is fixed on one side to a rigid support. The spring constant of the spring is k. The mass oscillates on a frictionless surface with time period T and amplitude A. When the mass is in equilibrium position, as shown in the figure, another mass m is gently fixed upon it. The new amplitude of oscillation will be:

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EASY
A mass 2 kg is suspended from two coupled springs connected in series. The force constants for springs are 24.5 N m-1 and 25.5 N m-1. The time period of the suspended mass is
MEDIUM
A heavy brass sphere is hung from a spring and it executes vertical vibrations with period T. The sphere is now immersed in a non-viscous liquid with a density (1/10)th  that of brass. When set into vertical vibrations with the sphere remaining inside liquid all the time, the time period will be
MEDIUM
A spring is stretched by 0.40 m when a mass of 0.6 kg is suspended from it. The period of oscillations of the spring loaded by 255 gm and put to oscillations is close to g=10 m s-2-
HARD

A particle of mass m is attached to four springs with spring constant k,k,2k and 2k as shown in the figure. Four springs are attached to the four corners of a square and a particle is placed at the center. If the particle is pushed slightly towards any side of the square and released, the period of oscillation will be

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MEDIUM
A silver atom in a solid oscillates in simple harmonic motion in some direction with a frequency of 1012 s-1 . What is the force constant of the bonds connecting one atom with the other? (Mole wt. of silver,=108 g mol-1 and Avogadro number =6.02×1023)
EASY
A body of mass, m is attached to the lower end of a spring whose upper end is fixed. The spring has negligible mass. When the mass  m is slightly pulled down and released, it oscillates with a time period of 3 s. When the mass  m is increased by 1 kg, the time period of oscillations becomes 5 s. The value of m in kg is