How to Calculate Natural Circular Frequency of Shaft Fixed at Both Ends and Carrying Uniformly Distributed Load?
Natural Circular Frequency of Shaft Fixed at Both Ends and Carrying Uniformly Distributed Load calculator uses Natural Circular Frequency = sqrt((504*Young's Modulus*Moment of inertia of shaft*Acceleration due to Gravity)/(Load per unit length*Length of Shaft^4)) to calculate the Natural Circular Frequency, Natural Circular Frequency of Shaft Fixed at Both Ends and Carrying Uniformly Distributed Load formula is defined as the rate at which a shaft fixed at both ends and carrying a uniformly distributed load vibrates naturally when it is subjected to free transverse vibrations, providing insight into the shaft's dynamic behavior. Natural Circular Frequency is denoted by ωn symbol.
How to calculate Natural Circular Frequency of Shaft Fixed at Both Ends and Carrying Uniformly Distributed Load using this online calculator? To use this online calculator for Natural Circular Frequency of Shaft Fixed at Both Ends and Carrying Uniformly Distributed Load, enter Young's Modulus (E), Moment of inertia of shaft (Ishaft), Acceleration due to Gravity (g), Load per unit length (w) & Length of Shaft (Lshaft) and hit the calculate button. Here is how the Natural Circular Frequency of Shaft Fixed at Both Ends and Carrying Uniformly Distributed Load calculation can be explained with given input values -> 13.36585 = sqrt((504*15*1.085522*9.8)/(3*3.5^4)).