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qUESTIONS

11th-jee

The composition of two simple harmonic motions of equal periods at right angle to each other and with a phase difference of a results in the displacement of the particle along

11th-jee

The resultant of two rectangular simple harmonic motions of the same frequency and unequal amplitudes but differing in phase by π/2 is

11th-jee

The motion of a particle varies with time according to the relation y = a(sin wt + cost), then

11th-jee

A block of mass 500 g is connected to a spring of spring constant k = 312.5N / m on a frictionless table. The spring is held firmly at the other end. The block is pulled a distance of 5 cm and then released to make SHM. Calculate the time period of its oscillations

11th-jee

Two identical springs of constant K are connected in series and parallel as shown in figure. A mass m is suspended from them. The ratio of their frequencies of vertical oscillations will be

11th-jee

A spring has a certain mass suspended from it and its period for vertical oscillation is T. The spring is now cut into two equal halves and the same mass is suspended from one of the halves. The period of vertical oscillation is now

11th-jee

If a spring extends by x on loading, then energy stored by the spring is (if T is the tension in the spring and K is the spring constant)

11th-jee

If the length of a pendulum is made 9 times and mass of the bob is made 4 times, then the value of time period becomes

11th-jee

A simple pendulum is made of a body which is a hollow sphere containing mercury suspended by means of a wire. If a little mercury is drained off, the period of pendulum will

11th-jee

A simple pendulum, suspended from the ceiling of a stationary van, has time period T. If the van starts moving with a uniform velocity the period of the pendulum will be

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