3. Show that the frequency of a harmonic oscillation of a body on a spring is ( 2/2n, so that the period is 2n/So/g, where so is the elongation in Fig. 39.

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Unstretched
spring
- (y = 0) --
System in
static
equilibrium
System in
motion
(a)
(b)
(c)
Fig. 39. Mechanical system under consideration
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Transcribed Image Text:Unstretched spring - (y = 0) -- System in static equilibrium System in motion (a) (b) (c) Fig. 39. Mechanical system under consideration www.
3. Show that the frequency of a harmonic oscillation of a body on a spring is (4/21, so that the
period is 2n /So/g, where so is the elongation in Fig. 39.
Transcribed Image Text:3. Show that the frequency of a harmonic oscillation of a body on a spring is (4/21, so that the period is 2n /So/g, where so is the elongation in Fig. 39.
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