(2) a) b) The motion of an oscillating crank is defined by relation: 0=0, sin(xt/T)-(0.500) sin(2t/T) where 8 is in radians and t in s. Knowing that 0o =6 rad and T = 4 s, determine the angular coordinates, the angular velocity, and the angular acceleration of the crank when: t = 0 t = 2.0 s.

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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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The motion of an oscillating crank is defined by relation:
0=0o sin(xt/T)-(0.500) sin(2t/T)
where 0 is in radians and t in s. Knowing that 0o = 6 rad and T = 4 s, determine the angular coordinates,
the angular velocity, and the angular acceleration of the crank when:
a) t=0
b)
t = 2.0 s.
Transcribed Image Text:The motion of an oscillating crank is defined by relation: 0=0o sin(xt/T)-(0.500) sin(2t/T) where 0 is in radians and t in s. Knowing that 0o = 6 rad and T = 4 s, determine the angular coordinates, the angular velocity, and the angular acceleration of the crank when: a) t=0 b) t = 2.0 s.
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