A perfectly reflecting mirror of mass M mounted on a spring constitutes a spring-mass system of angular frequency n such that 4ΠΜΩ h h as Planck's constant. N photons of wavelength λ = 8 x 10 m strike the mirror simultaneously at normal incidence such that the mirror gets displaced by 1 μm. If the value of N is x x 10¹2, then the value of x is [Consider the spring as massless] =1024 m² with =

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Find x value.

A perfectly reflecting mirror of mass M mounted on a spring constitutes a
spring-mass system of angular frequency n such that
4ΠΜΩ
h
h as Planck's constant. N photons of wavelength λ = 8 x 10 m strike the
mirror simultaneously at normal incidence such that the mirror gets displaced
by 1 μm. If the value of N is x x 10¹2, then the value of x is
[Consider the spring as massless]
=1024 m² with
=
Transcribed Image Text:A perfectly reflecting mirror of mass M mounted on a spring constitutes a spring-mass system of angular frequency n such that 4ΠΜΩ h h as Planck's constant. N photons of wavelength λ = 8 x 10 m strike the mirror simultaneously at normal incidence such that the mirror gets displaced by 1 μm. If the value of N is x x 10¹2, then the value of x is [Consider the spring as massless] =1024 m² with =
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