After an unfortunate accident occurred at a local warehouse, you were contracted to determine the cause. A jib crane collapsed and injured a worker. An image of this type of crane is shown in the figure.The horizontal steel beam had a mass of 80.00 kg per meter of length, and the tension in the cable was T = 12560 N. The crane was rated for a maximum load of %3D 500 kg. If d = 5.580 m, s = 0.522 m, x 1.350 m, and %3D h = 1.890 m, what was the magnitude of W (the load on the %3D crane) before the collapse? The acceleration due to gravity is g = 9.810 m/s?. WL = %3D What was the magnitude of force Fp at the attachment point P? Fp =

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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After an unfortunate accident occurred at a local warehouse,
you were contracted to determine the cause. A jib crane
collapsed and injured a worker. An image of this type of crane
is shown in the figure.The horizontal steel beam had a mass of
80.00 kg per meter of length, and the tension in the cable was
T = 12560 N. The crane was rated for a maximum load of
%3D
500 kg. If d = 5.580 m, s 0.522 m, x 1.350 m, and
h = 1.890 m, what was the magnitude of W (the load on the
%3D
crane) before the collapse? The acceleration due to gravity
is g = 9.810 m/s².
%3D
What was the magnitude of force Fp at the attachment
point P?
Fp =
N
Transcribed Image Text:After an unfortunate accident occurred at a local warehouse, you were contracted to determine the cause. A jib crane collapsed and injured a worker. An image of this type of crane is shown in the figure.The horizontal steel beam had a mass of 80.00 kg per meter of length, and the tension in the cable was T = 12560 N. The crane was rated for a maximum load of %3D 500 kg. If d = 5.580 m, s 0.522 m, x 1.350 m, and h = 1.890 m, what was the magnitude of W (the load on the %3D crane) before the collapse? The acceleration due to gravity is g = 9.810 m/s². %3D What was the magnitude of force Fp at the attachment point P? Fp = N
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