extension a. Show that, if the body is displaced vertically through a further small distance, it will oscillate with simple harmonic motion. (The máss of the spring may be neglected.) Given that the time period, T, of the body performing simple harmonic motion is given by the expression Mass of the body T = 2* Force on the body per unit displacemernt derive an expression for the period of oscillation of the body on the spring. Suggest how you wouid investigate experimentally whether the bob of a simple pendulum, when oscillating chrough a small angle, was executing simple harmonic motion. [L]

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Chapter14: Vibrations And Waves
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extension a. Show that, if the body is
displaced vertically through a further.
small distance, it will oscillate with
simple harmonic motion. (The mass of
the spring may be neglected.)
- Given that the time period,
body performing simple harmonic
motion is given by the expression
T, of the
Mass of the body
Force on the body per
unit displacement
T = 2n
derive an expression for the period of
oscillation of the body on the spring.
Suggest how you wouid investigate
experimentally whether the bob of a
simple pendulum, when oscillating
through a small angle, was executing
simple harmonic motion.
[L]
Transcribed Image Text:extension a. Show that, if the body is displaced vertically through a further. small distance, it will oscillate with simple harmonic motion. (The mass of the spring may be neglected.) - Given that the time period, body performing simple harmonic motion is given by the expression T, of the Mass of the body Force on the body per unit displacement T = 2n derive an expression for the period of oscillation of the body on the spring. Suggest how you wouid investigate experimentally whether the bob of a simple pendulum, when oscillating through a small angle, was executing simple harmonic motion. [L]
(b) One end of a spring is attached to a fixed
point and the other end carries a body of
small mass m which produces a static
Transcribed Image Text:(b) One end of a spring is attached to a fixed point and the other end carries a body of small mass m which produces a static
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