Home
Class 12
PHYSICS
A particle having mass 10 g oscillates a...

A particle having mass 10 g oscillates according to the equation x = (2.0 cm) sin `[(100 s^(-1)]t +(pi)/(6)].` Find (a) the amplitude, the time period and the force constant (b) the position, the velocity and the acceleration at t = 0.

Promotional Banner

Similar Questions

Explore conceptually related problems

A particle having mass 10 g oscillates according to the equation x=(2.0cm) sin[(100s^-1)t+pi/6] . Find a the amplitude the time period and the spring constant b. the position, the velocity and the acceleration at t=0.

A particle having mass 10 g oscillates according to the equation x=(2.0cm) sin[(100s^-1)t+pi/6] . Find the amplitude the time period and the spring constant

A particle having mass 10 g oscilltes according to the equatioi (x=(2.0cm) sin[(100sin^-1)t+pi/6] . Find a the amplitude the time period and the spring constant b. the position, the velociyt and the acceleration at t=0.

A particle having mass 10 g oscilltes according to the equatioi (x=(2.0cm) sin[100t+pi/3] . Find a the amplitude the time period and the spring constant b. the position, the velociyt and the acceleration at t=0.

A particle oscillates with S.H.M. according to the equation x = 10 cos ( 2pit + (pi)/(4)) . Its acceleration at t = 1.5 s is

A particle oscillates with S.H.M. according to the equation x = 10 cos ( 2pit + (pi)/(4)) . Its acceleration at t = 1.5 s is

The equation of particle executing simple harmonic motion is x = (5m) sin [(pis^(-1))t+(pi)/(3)] . Write down the amplitude, time period and maximum speed. Also find the velocity at t = 1 s .

The equation of particle executing simple harmonic motion is x = (5m) sin [(pis^(-1))t+(pi)/(4)] . Write down the amplitude, time period and maximum speed. Also find the velocity at t = 1 s .