A student abseils down the outside of a building using a rope - Scottish Highers Physics - Question 2 - 2019
Question 2
A student abseils down the outside of a building using a rope.
The mass of the student is 55 kg.
The rope, of negligible mass, is attached to a fixed point X at th... show full transcript
Worked Solution & Example Answer:A student abseils down the outside of a building using a rope - Scottish Highers Physics - Question 2 - 2019
Step 1
Calculate the weight W of the student.
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Answer
The weight W of the student can be calculated using the formula:
W=mg
Where:
m is the mass of the student (55 kg)
g is the acceleration due to gravity (approximately 9.8 m/s²)
Substituting the values:
W=55imes9.8=539extN(approximately540N)
Step 2
Determine the tension T in the rope.
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Answer
To determine the tension T in the rope, we need to consider the components of forces acting on the student. The vertical component of the tension balances the weight:
W=Ty
Where:
Ty=Timesextcos(15°)
From part (a), we know that W = 540 N:
540=Timesextcos(15°)
Solving for T:
T ≈ 560 ext{ N}$$
Step 3
As the student abseils down the building the angle the rope makes with the building decreases.
State whether the tension in the rope increases, decreases or stays the same.
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Answer
The tension in the rope decreases as the angle decreases. This is because the cosine of the angle decreases as the angle increases, leading to a decrease in the vertical component of the tension that balances the weight. As the angle of the rope decreases, the horizontal component of the force also decreases, which results in a lower value for the tension in the rope.
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