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Question 2
A plank AB has mass 40 kg and length 3 m. A load of mass 20 kg is attached to the plank at B. The loaded plank is held in equilibrium, with AB horizontal, by two ver... show full transcript
Step 1
Answer
To find the tension in the rope at C, we begin by applying the principle of equilibrium. The equation of the forces in the vertical direction can be expressed as:
where:
Combining the terms:
Solving for :
Substituting the value of (approximately 9.81 m/s²):
Therefore, the tension at C is:
Calculating this:
Thus, the tension in the rope at C is approximately 441 N.
Step 2
Answer
To find the distance CB, we need to consider the moments about point B. The equation for moments can be given as:
where:
Rearranging the equation gives:
Subtracting this from the total length 3 m:
Therefore, the distance CB is approximately 1.875 m.
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