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Q: Would a 9-n force applied 2 meter from the fulcrum lift the weight?
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Evaluate would a 9n force applied 2m from the fulcrum lift the wight explain?

A 9-N force cannot be applied 2 m from the fulcrum lift the weight because it wouldn't balance


Would a 9-N force applied 2 m from the fulcrum lift the weight?

NOPE


Would a nine meter force applied 2 meter from the fulcrum lift the weight?

No sweat. Piece o' cake. Bring it on! What's a "nine meter force" ? ?


Where are the input force and output force on a pair of scissors?

The input force or the effort on a pair of scissors would be the force applied by your hands on the handles. The output force or load would be the blades of the pair of scissors.


Does a lever pivot on a fulcrum or a torque?

Fulcrum. Torque is the force applied to move the lever


Where is the fulcrum resistance force and the effort force on a shovel?

The effort force is applied at the handle of the shovel. The fulcrum is where your other hand goes, lower down the shaft, and the fulcrum resistance would be where the load goes on the shovel, I.E the flat bit that you hit people with!


What is the part of a lever on which the effort force is applied is called?

Fulcrum


Levers explain how the force applied by a lever is affected by its distance from the fulcrum?

On the side on which the force is being applied, the distance and force are directly proportional. On the other side of the lever, they are inversely proportional. If 1 pound of force is applied to a lever at 1 foot on the left side of the fulcrum, the lever will apply 1 pound of force 1 foot from the right side of the fulcrum. If 1 pound of force is applied 2 feet left of the fulcrum, the lever will apply 2 pounds of force 1 foot from the right side. If 1 pound is applied 4 feet left of the fulcrum, the lever will apply 4 pounds of force 1 foot to the right of the fulcrum. If 1 pound of force is applied 1 foot left of the fulcrum, at 2 feet on the right side, the force will be 1/2 pound. At four feet, it will be 1/4 pound. Etc,


Point around which a lever rotates?

The fulcrum. A Lever is a rigid rod to which a force can be applied to overcome a resistance. The point at which a lever pivots is called the fulcrum.


What do fulcrums help?

A fulcrum is the point of tuning for a lever. Since a fulcrum is essential for a lever, it does not help but rather is needed. The lever and fulcrum are used to move or hold objects. Levers can be used change the amount of force needed to alter a system of load, lever, and effort. The position of the fulcrum determines the force needed to change the natural equilibrium. There are three classes of levers divided in accordance to the position of the fulcrum. The first class of lever is typically used in a gravitational field with a load at one end of the lever, the fulcrum closer to the load than the middle of the lever, and a force applied near the other end of the lever. The important point is that the fulcrum is between the two forces and on the opposite side. If the lever is longer on the force side, the force needed to move the load is less than the weight of the load, but the load travels a smaller distance than the applied force point moves. This would be used possibly to lift an heavy object. By placing the fulcrum close to the point of force, the load moves farther than the applying force. This can be demonstrated by observing a trebuchet (commonly referred to as a catapult) The second class of lever places the load and the force on the same side of the fulcrum with the load closer to the fulcrum than the applied force. An example of this is the wheelbarrow. Again, the force needed to lift the load is less than the weight of the load. The third class of lever places the force between the fulcrum and the load. Examples of uses for this are chopsticks or ice tongs.


What is the advantage on the position of fulcrum?

The fulcrum is a point where something pivots around, so the position of the fulcrum is where ever the object is pivoting around.


A 150 pound man is standing on a lever one foot from the fulcrum. How much effort must be used to lift the man if the effort is applied six feet from the fulcrum?

6 x 150 pounds. 900 pounds of force would have to be applied.