A particle mass 0.1 kg is held between two rigid supports by two springs of force constant 8 N/m and 2 N/m . If the particle is displaced along the direction of the length of the springs
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One end of a long metallic wire of length L is tied to the ceiling. The other end is tied to massless spring of spring constant K. A mass m hangs freely from the free end of the spring. The area of cross section and the young’s modulus of the wire are A and Y respectively. If the mass is slightly pulled down and released, it will oscillated with a time period T equal to.
08
Nov
One end of a long metallic wire of length L is tied to the ceiling. The other end is tied to massless spring of spring constant K. A mass m hangs freely from the free end of the spring. The area of cross section and the young’s modulus of the wire are A and Y [...]
A weightless spring of length 60 cm and force constant 100 N m^−1 is kept straight and unstretched on a smooth horizontal table and its ends are rigidly fixed. A mass of 0.25 kg is attached at the middle of the spring and is slightly displaced along the length. The time period of the oscillation of the mass is:
08
Nov
A weightless spring of length 60 cm and force constant 100 N m^−1 is kept straight and unstretched on a smooth horizontal table and its ends are rigidly fixed. A mass of 0.25 kg is attached at the middle of the spring and is slightly displaced along the length. The time period of the oscillation [...]
A particle mass 0.1 kg is held between two rigid supports by two springs of force constant 8 N/m and 2 N/m . If the particle is displaced along the direction of the length of the springs, its frequency of vibration is
08
Nov
A particle mass 0.1 kg is held between two rigid supports by two springs of force constant 8 N/m and 2 N/m . If the particle is displaced along the direction of the length of the springs, its frequency of vibration is A particle mass 0.1 kg is held between two rigid supports by two [...]