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Course 38579

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Consider the following excavator and its loading condition. Folloing on form the Pre-Workshop video of this machine, determine the resultant force in the pin at point O. Provide your answer in kN to 4 decimal places. [2 marks]

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Consider the following excavator and its loading condition. Folloing on form the Pre-Workshop video of this machine, determine the resultant force in the pin at point O. Provide your answer in kN to 4 decimal places. [2 marks]

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A pair of 100-N forces are applied to the handles of the pliers as shown in the figure below. Determine the mechanical advantage of this plier. Provide your answer to 4 decimal places.

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Determine the force F required to keep the lever stationary as shown in the figure below. The mass of the object is 30 kg. Assume the gravitational acceleration to be 9.8 m/s2. Provide your answer in N to 4 decimal places.

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A pair of 100-N forces are applied to the handles of the pliers as shown in the figure below. Determine the mechanical advantage of this plier. Provide your answer to 4 decimal places.

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Determine the force F required to keep the lever stationary as shown in the figure below. The mass of the object is 30 kg. Assume the gravitational acceleration to be 9.8 m/s2. Provide your answer in N to 4 decimal places.

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Estimate the ductility for the printed PLA sample that you determined in question 3(b)?

Give your answer as a strain, to at least two significant figures

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Estimate the toughness for the printed PLA sample that you determined in question 3(b)?

Give your answer as a MJ/m3, to at least two significant figures

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What was the elastic modulus for the printed PLA sample that you determined in question 3(b)?

Give your answer in GPa, to at least two significant figures

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Which of the following correctly identifies the point of application (distance from A

)

of the equivalent resultant force

FEQ due to the distributed load acting on the beam shown in Figure P10? Take q = 17 kN/m , L1 = 2 m , and L2 = 3 m.

Figure P10. Simply supported beam with distributed load

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