With a fixed pulley, the effort force would be equal to the weight being lifted (300kg) in this case. So, to lift 300kg using a fixed pulley, you would need to apply an effort force of 300 kg-force.
In a fixed pulley, the effort force is equal to the load force being lifted. The fixed pulley changes the direction of the force applied, but does not provide any mechanical advantage in terms of reducing the amount of effort needed to lift the load.
With a movable pulley system, you would need to exert an effort force equal to half the weight being lifted. In this case, to lift a 300kg weight, you would need to apply an effort force of 150kg. This is because movable pulleys provide a mechanical advantage of 2, reducing the amount of effort force needed.
In a fixed pulley, the resistance force is equal to the effort force when neglecting friction. This means that the input force required to lift a load is the same as the output force exerted by the load. The fixed pulley changes the direction of the force but does not provide any mechanical advantage.
Thew pulley changes the direction of the effort force.
A fixed pulley does NOT multiply the effort force or have a mechanical advantage. It only changes the direction of the effort force. A free pulley multiplies the effort by two. this means the free pulley has a mechanical advantage of 2.information from:www.mhscience02.com
In a fixed pulley, the effort force is equal to the load force being lifted. The fixed pulley changes the direction of the force applied, but does not provide any mechanical advantage in terms of reducing the amount of effort needed to lift the load.
With a movable pulley system, you would need to exert an effort force equal to half the weight being lifted. In this case, to lift a 300kg weight, you would need to apply an effort force of 150kg. This is because movable pulleys provide a mechanical advantage of 2, reducing the amount of effort force needed.
Fixed Pulley and Compound Pulley.
In a fixed pulley, the resistance force is equal to the effort force when neglecting friction. This means that the input force required to lift a load is the same as the output force exerted by the load. The fixed pulley changes the direction of the force but does not provide any mechanical advantage.
Thew pulley changes the direction of the effort force.
A fixed pulley does NOT multiply the effort force or have a mechanical advantage. It only changes the direction of the effort force. A free pulley multiplies the effort by two. this means the free pulley has a mechanical advantage of 2.information from:www.mhscience02.com
To make a single fixed pulley work, you need to apply an input force to one end of the rope. The pulley redirects the force in the opposite direction, allowing you to lift or move an object with less effort. The mechanical advantage of a single fixed pulley is 1, meaning the output force equals the input force.
The ideal mechanical advantage of a fixed pulley is 1, as it does not provide any mechanical advantage in terms of force. The direction of the input (effort) and output (load) for a fixed pulley is the same, as the pulley simply changes the direction of the force applied.
Using a single fixed pulley will not change the amount of effort needed to lift a load. You will need to exert a force equal to the weight of the load, in this case 10 newtons, to lift it. The fixed pulley only changes the direction of the force needed, not the amount of force required.
A movable pulley reduces the effort force required to lift an object by distributing the force between two sections of the pulley system. This means that you only need to apply half the force compared to a fixed pulley to lift the same load.
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A compound pulley increases your effort force by spreading it out over multiple rope segments and pulleys. This system allows you to lift heavier loads with less force compared to a single fixed pulley.