How to Calculate Distance Traveled by Particle in SHM until Velocity becomes Zero?
Distance Traveled by Particle in SHM until Velocity becomes Zero calculator uses Maximum Displacement = sqrt((Velocity^2)/(Angular Frequency^2)+Displacement^2) to calculate the Maximum Displacement, Distance Traveled by Particle in SHM until Velocity becomes Zero formula is defined as a measure of the distance covered by a particle in simple harmonic motion from its mean position until its velocity becomes zero, which depends on the velocity, angular frequency, and initial distance of the particle. Maximum Displacement is denoted by Smax symbol.
How to calculate Distance Traveled by Particle in SHM until Velocity becomes Zero using this online calculator? To use this online calculator for Distance Traveled by Particle in SHM until Velocity becomes Zero, enter Velocity (V), Angular Frequency (ω) & Displacement (S) and hit the calculate button. Here is how the Distance Traveled by Particle in SHM until Velocity becomes Zero calculation can be explained with given input values -> 65.26126 = sqrt((60^2)/(10.28508^2)+65^2).