In the figure, the block of mass m, attached to the springs of stiffness k is in contact…
Physics · JEE Advanced · NTA Exams — Oscillations and Waves
In the figure, the block of mass m, attached to the springs of stiffness k is in contact with the completely elastic wall, and the compression in the spring is x. The spring is compressed further by x by displacing the block towards left and is then released. If the collision between the block and the wall is completely elastic then the time period of oscillations of the block will be:
\[\text { innon- }\]
\[\text { innon- }\]
- \(\frac{2 \pi}{3} \sqrt{\frac{m}{k}}\)
- \(2 \pi \sqrt{\frac{m}{k}}\)
- \(\frac{\pi}{3} \sqrt{\frac{m}{k}}\)
- \(\frac{\pi}{6} \sqrt{\frac{m}{k}}\)
Answer
(A) 2 3 m k
Sign up free on Edukali to view the step-by-step worked solution and practice thousands of similar questions.
Related practice questions
- A closed organ pipe and an open organ pipe of same length produce 2 beats when they are set into vibrations…
- Two independent harmonic oscillators of equal mass are oscillating about the origin with angular frequencies…
- The total length of a sonometer wire between fixed ends is 110 cm. Two bridges are placed to divide the…
- A wave equation which gives the displacement along the y -direction is given by y = 10 –4 sin(60 t + 2 x )…
- The variation of the acceleration a of the particle executing S.H.M. with displacement x is as shown in the…
- A hollow pipe of length 0.8 m is closed at one end. At its open end a 0.5 m long uniform string is vibrating…
- Particle displacements (in cm) in a standing wave are given by y (x, t) = 2 sin (0.1 x) cos (100 t). The…
- A small block of mass m is fixed at upper end of a massive vertical spring of spring constant k = 4 mg/L and…
More Oscillations and Waves questions · Browse all practice questions