Why Increasing Pully B's Diameter is Incorrect

In summary, according to the book, increasing the diameter of pulley A decreases the amount of force required to pull rope A, while increasing the size of pulley B does not have the same effect. This is because the pulley system works by reducing the torque from the mass and increasing the torque from the user. Therefore, decreasing the size of pulley B (or increasing the size of pulley A) has the same effect as increasing the size of pulley A. This can also be thought of as a simple lever on a pivot in the center.
  • #1
syang9
61
0
http://dl.getdropbox.com/u/119319/pully-1.jpg

the book says the answer is C because 'increasing the diameter of the pully decreases the amount of force required to pull rope A'. I don't understand why increasing the diameter of pully B does not have the same effect (i.e., why D is incorrect.)
 
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  • #2
If pulley A and B were the same size the force on the ropes would be the same - the machine wouldn't be doing anything.
So making pulley B larger (ie closer in size to A ) does what to the force?

What would you have to do to pulley B to make the force on A smaller (if you left pulley A the same size)
 
  • #3
okay, i understand now.. the pulley system works because it reduces the torque that the mass exerts on the center rotation point, and increases the torque that the user (pulling on rope a) exerts on the center rotation point. increasing pulley B diameter would increase the clockwise torque from the mass, so decreasing the size of pulley B (and keeping the size of A constant) would have the same effect as increasing the size of pulley A.
 
  • #4
Exactly - you can also think of it as just a simple lever on a pivot in the centre.
 

Related to Why Increasing Pully B's Diameter is Incorrect

1. Why is increasing Pully B's diameter incorrect?

Increasing Pully B's diameter can lead to a higher mechanical advantage, which means less force is required to lift an object. This may seem beneficial, but it can also result in an increased load on the system and cause it to fail. Additionally, increasing the diameter of Pully B can cause the belt to slip, reducing the efficiency of the system.

2. Can increasing Pully B's diameter improve the system's performance?

No, increasing Pully B's diameter can actually decrease the system's performance. This is because it can lead to an increased load on the system and result in a higher chance of failure. It can also cause the belt to slip, reducing the efficiency of the system.

3. Is it better to have a larger or smaller diameter for Pully B?

Neither is necessarily better. The diameter of Pully B should be chosen based on the specific needs and requirements of the system. Increasing the diameter can lead to a higher mechanical advantage but can also cause the system to fail. On the other hand, decreasing the diameter can result in a lower mechanical advantage but can also improve the system's efficiency.

4. What are the consequences of increasing Pully B's diameter?

The consequences of increasing Pully B's diameter include an increased load on the system, which can lead to failure. It can also cause the belt to slip, reducing the efficiency of the system. Additionally, if the system is not designed to handle a larger diameter pulley, it can cause damage and require costly repairs.

5. Can increasing Pully B's diameter save energy?

No, increasing Pully B's diameter does not necessarily save energy. While it may result in a higher mechanical advantage, it can also lead to an increased load on the system and cause it to fail. This can result in the need for more energy to repair or replace the system. Additionally, if the belt slips due to the increased diameter, it can decrease the efficiency of the system and require more energy to operate.

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