Simple Harmonic Motion
Simple Harmonic Motion - In the preceding sections, the motion of a body when acted upon by a constant force was considered. The motion is one of constant acceleration. In this section, the motion of a body subjected to a variable force is..
Simple Harmonic Motion
In the preceding sections, the motion of a body when acted upon by a constant force was considered. The motion is one of constant acceleratio..
The Simple Pendulum
) and then to extreme position (OA) and back to (OC) through (OB). Thus the bob of the simple pendulum keeps moving to and fro between the two extreme positions A and C about the mean position (OB). Such a to and fro motion which repeats itself at regular intervals of time about..
Newton's First Law of Motion
Every body continues in its state of rest or of uniform motion in a straight line unless compelled by some external force to act otherwise. It is a matter of common experience that objects at rest do not begin to move of their own accord. If we place an object in a certain place we expect..
Period of a Simple Pendulum
Applying the formula s = r q for the arc PP 1 , we get The motion is approximately simple harmonic. Comparing this equation with the standard equation from SHM, namely F = -Kx, we get The period in SHM is given ..
Applying the formula s = r q for the arc PP 1 , we get The motion is approximately simple harmonic. Comparing this equation with the standard equation from SHM, namely F = -Kx, we get The period in SHM is given ..Simple Pendulum Time Period of Oscillation Varies with Time
i.e., time period is directly proportional to the square root of the length of the pendulum and i.e., the time period of the pendulum is inversely proportional to the square root of the acceleration due to gravity. From the equation (1), we conclude that time period of a pendulum does not depend on..
i.e., time period is directly proportional to the square root of the length of the pendulum and i.e., the time period of the pendulum is inversely proportional to the square root of the acceleration due to gravity. From the equation (1), we conclude that time period of a pendulum does not depend on..Intensity of a Wave
In all progressive waves, energy travels through the medium in the direction in which the wave travels. Each particle of the medium has energy of vibration and passes energy on to succeeding particles. In simple harmonic motion, the energy of the vibrating particle cha..
In all progressive waves, energy travels through the medium in the direction in which the wave travels. Each particle of the medium has energy of vibration and passes energy on to succeeding particles. In simple harmonic motion, the energy of the vibrating particle cha..Characteristics of Stationary Waves
In stationary waves, there are certain points called nodes where the particles are permanently at rest and certain other points called antinodes where the particles vibrate with maximum amplitude. The nodes and antinodes are formed alternately. All the particles of the medium except those at t..
Expression for Acceleration in SHM
Conclusion: A particle in simple harmonic motion has zero acceleration at the mean position and maximum acceleration at the extreme positio..
Conclusion: A particle in simple harmonic motion has zero acceleration at the mean position and maximum acceleration at the extreme positio..Derivation of de-Broglie Relationship
The relationship may be derived by combining the mass-energy relationship proposed by Max Planck and Einstein. According to Planck, photon of light having energy E is associated with a wave of frequency n as: E = h n .....(1) According to Einstein, mass and energy are related as: E = mc 2..
The relationship may be derived by combining the mass-energy relationship proposed by Max Planck and Einstein. According to Planck, photon of light having energy E is associated with a wave of frequency n as: E = h n .....(1) According to Einstein, mass and energy are related as: E = mc 2..See what our Users say :
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