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Difficult Topic in easy way....
Simple Harmonic Motion Simple harmonic motion is typified by the motion of a mass on a spring when it is subject to the linear elastic restoring force given by Hooke's Law. The motion is sinusoidal in time and demonstrates a single resonant frequency.   Simple Harmonic Motion Equations The motion equation for simple harmonic motion contains a complete description of the motion, and other parameters of the motion can be calculated from it. The velocity and acceleration are given by The total energy for an undamped oscillator is the sum of its kinetic energy and potential energy, which is constant at Energy transformation in   more ...
submitted by shubham_sachdeva (1901 m) on 28 Sep 2007 11:38:53 IST (2 comments   315 views)
S.H.M
rate the following article if found useful and do pass ur comments:- 1.When a pendulum is kept in a car which is sliding down, then     T= 2 [L / gcos  ] where  is angle of inclination.   2.if a simple pendulum oscillates in a non-viscous liquid of density ,then its time      period is T=2 [ L / ( 1 - /  )  ]. 3.If the mass m attached to a spring oscillates in a non-viscous liquid of density ,    then its time period is given by T= 2 [ m/k (1- / )  ].=density of mass       suspended 4.If the time period of one spring is T1, an   more ...
submitted by ganesha1991 (1642 m) on 16 Feb 2008 20:51:58 IST (4 comments   285 views)
Simple harmonic motion
SIMPLE   HARMONIC   MOTION Oscillation .Oscillation is a periodic, to and fro, bounded motion about a reference, usually the position of equilibrium. Simple harmonic motion .A simple harmonic motion can be conceived as a "to and fro" motion along an axis (say x-axis). .A body will undergo SIMPLE HARMONIC MOTION when the force that tries to restore the object to its rest position is proportional to the displacement of the object. .In order to simplify the matter, we choose origin as the point of reference about which particle oscillates. .If we start our observation from positive extreme of the motion, then displacement of the particle "x   more ...      [ 1, 2 ]
submitted by srujana (3220 m) on 26 Jan 2008 21:38:32 IST (20 comments   780 views)
 
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