Boat Statics, Mastering phyics problem.

In summary: F and to the boat's center at point A, with a magnitude equal to F_{\rm AB}. This means that the force provided by the third rope is equal to 2 times the magnitude of F_{\rm AB} multiplied by the cosine of the angle theta.
  • #1
kenau_reveas
39
0
Information given:

boat owner pulls her boat into the dock shown, where there are six capstans to which to tie the boat. She has three ropes. She can tie the boat from the boat's center (A) to any of the capstans (B through G) along the dotted arrows shown.

Suppose the owner has tied three ropes: one rope runs to A from B, another to A from D, and a final rope from A to F. The ropes are tied such that F_{\rm AB} = F_{\rm AD}.

Extra Information given:

The following notation is used in this problem: When a question refers to, for example, F_AB_vec, this quantity is taken to mean the force acting on the boat due to the rope running to A from B, while F_AB is the magnitude of that force.

Question:

What is the magnitude of the force provided by the third rope, in terms of theta?

F_{\rm AB}\cos(\theta)
2 F_{\rm AB}\cos(\theta)
2 F_{\rm AB}\sin(\theta)
F_{\rm AB}\sin(\theta)
 
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  • #2
kenau_reveas said:
Information given:

boat owner pulls her boat into the dock shown, where there are six capstans to which to tie the boat. She has three ropes. She can tie the boat from the boat's center (A) to any of the capstans (B through G) along the dotted arrows shown.

Suppose the owner has tied three ropes: one rope runs to A from B, another to A from D, and a final rope from A to F. The ropes are tied such that F_{\rm AB} = F_{\rm AD}.

Extra Information given:

The following notation is used in this problem: When a question refers to, for example, F_AB_vec, this quantity is taken to mean the force acting on the boat due to the rope running to A from B, while F_AB is the magnitude of that force.

Question:

What is the magnitude of the force provided by the third rope, in terms of theta?

F_{\rm AB}\cos(\theta)
2 F_{\rm AB}\cos(\theta)
2 F_{\rm AB}\sin(\theta)
F_{\rm AB}\sin(\theta)

2 F_{\rm AB}\cos(\theta) is the answer
 

Related to Boat Statics, Mastering phyics problem.

1. What is Boat Statics?

Boat Statics is the study of forces and equilibrium on boats and other floating structures. It involves understanding the principles of physics and how they apply to the balance and stability of boats.

2. Why is Boat Statics important?

Understanding Boat Statics is important for ensuring the safety and stability of boats and other marine structures. It also plays a crucial role in the design and construction of boats, as well as in navigating and controlling them on the water.

3. What are the main components of Boat Statics?

The main components of Boat Statics include buoyancy, weight distribution, and forces such as gravity, buoyancy, and drag. These components work together to determine the equilibrium and stability of a boat.

4. How can I apply Boat Statics to real-life situations?

Boat Statics can be applied to real-life situations in various ways, such as calculating the maximum load a boat can carry, determining the best weight distribution for stability, and predicting how different weather conditions may affect a boat's equilibrium.

5. How can I solve problems related to Boat Statics?

Solving problems related to Boat Statics involves applying the principles of physics and using mathematical equations to analyze and determine the forces and equilibrium of a boat. It also requires understanding the various factors that can affect the stability of a boat and how to adjust them accordingly.

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