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+clc
+//Given that
+m = 2e-3 // mass of linear harmonic oscillator in kg
+k = 100 // spring constant in N/m
+h = 6.6e-34 // Plank's constant
+//Sample Problem 15 page No. 142
+printf("\n\n\n # Problem 15 # \n")
+printf("\n Standard formula Used \n f = sqrt(k / m ) \n U = 1/2* h * nu ")
+ nu = sqrt(k / m ) / (2 * %pi) //calculation of frequency of linear harmonic oscillator
+U = 1/2* h * nu //calculation of Zero point energy of a linear harmonic oscillator
+printf ("\n Zero point energy of a linear harmonic oscillator is %e J.", U )
+