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A bird of weight W sits on a thin rope at its midpoint. The rope is almost horizontal and hasnegligible mass.

Question

A bird of weight W sits on a thin rope at its midpoint. The rope is almost horizontal and has negligible mass.

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Solution

Sure, let's analyze the situation step by step.

  1. Identify the forces acting on the bird:

    • The bird has a weight W W acting downwards due to gravity.
  2. Identify the forces acting on the rope:

    • The rope is almost horizontal, so the tension in the rope will have both vertical and horizontal components.
    • Since the rope is thin and has negligible mass, we can ignore its weight.
  3. Consider the equilibrium of the bird:

    • The bird is at rest, so the forces acting on it must be in equilibrium.
    • The vertical component of the tension in the rope must balance the weight of the bird.
  4. Analyze the tension in the rope:

    • Let T T be the tension in the rope.
    • Since the bird is at the midpoint, the rope forms two symmetrical angles with the horizontal.
    • Let θ \theta be the angle each half of the rope makes with the horizontal.
  5. Resolve the tension into components:

    • The vertical component of the tension in each half of the rope is Tsin(θ) T \sin(\theta) .
    • Since there are two halves of the rope, the total vertical component is 2Tsin(θ) 2T \sin(\theta) .
  6. Set up the equilibrium condition:

    • The total vertical component of the tension must equal the weight of the bird.
    • Therefore, 2Tsin(θ)=W 2T \sin(\theta) = W .
  7. Solve for the tension T T :

    • Rearrange the equation to solve for T T : T=W2sin(θ) T = \frac{W}{2 \sin(\theta)}

So, the tension in the rope is W2sin(θ) \frac{W}{2 \sin(\theta)} .

This problem has been solved

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