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The magnitude of the force required to compress an imperfect horizontal spring a distance x is given by f=kx+bx3 where k = 120 n/m and b = 18 n/m3. if you use a 3.5-kg block to compress the spring a distance
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Jan 20, 2020
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The magnitude of the force required to compress an imperfect horizontal spring a distance x is given by f=kx+bx3 where k = 120 n/m and b = 18 n/m3. if you use a 3.5-kg block to compress the spring a distance of 2.2 m and then let it go, what speed will the block have when it leaves the spring? assume the surfaces are smooth enough that any frictional forces can be neglected.
Physics
college
Dulani Wallace
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k = 120 N/m, b = 18 N/m³, m = 3.5 kg, xi = 2.2 m, xf = 0 m.
Integrating both the sides by dx, we get,
W =
x from 2.2 to 0 m,
W = -395.8152 J = ∆K.E. = -0.5mv²
v = √(2×395.8152/3.5)
v ≈ 15.03929 m/s.
Pavel Horal
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Jan 23, 2020
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Pavel Horal
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