(d) If the particle is very close to the origin (x approximated as that of a simple harmonic oscillator. What is the angular frequency, w, of this oscillation? You may need to use eaa 1+ax for small x. 0), show that the potential energy can be

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0), show that the potential energy can be
(d) If the particle is very close to the origin (x =
approximated as that of a simple harmonic oscillator. What is the angular frequency, w, of this
oscillation? You may need to use ea 2 1+ ax for small x.
Transcribed Image Text:0), show that the potential energy can be (d) If the particle is very close to the origin (x = approximated as that of a simple harmonic oscillator. What is the angular frequency, w, of this oscillation? You may need to use ea 2 1+ ax for small x.
A particle of mass m is moving along the x axis. The potential energy of the particle is given by
the function U(x) = Eo(1 – e¯) where Eo is a positive constant.
Transcribed Image Text:A particle of mass m is moving along the x axis. The potential energy of the particle is given by the function U(x) = Eo(1 – e¯) where Eo is a positive constant.
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