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Leg muscles typically produce more power output compared to arm muscles due to the larger muscle mass and strength in the legs. This difference is especially evident during activities like running or jumping, where the legs are primarily responsible for propulsion and generating force. However, arm muscles are important for tasks like lifting or pushing objects, but generally produce less power output than leg muscles.

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1y ago

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What is the input arm and the output arm on a lever?

The input arm, also known as the effort arm, is the distance from the pivot point to where the input force is applied. The output arm, also known as the load arm, is the distance from the pivot point to where the output force is exerted.


A lever has 36cm input arm and 6cm output arm. What is the MA?

The mechanical advantage (MA) of a lever is calculated by dividing the input arm length by the output arm length. In this case, the MA would be 36cm (input arm) divided by 6cm (output arm), resulting in a MA of 6.


What are the input arm output arm and fulcrum of a pulley?

The input arm is the distance between the input force and the fulcrum. The output arm is the distance between the output force and the fulcrum. The fulcrum is the fixed point around which the pulley rotates.


A lever has an input arm 50 centimeters and an output arm 40 centimeters long what is the machanical advantage of the lever?

The mechanical advantage of a lever is calculated by dividing the length of the input arm by the length of the output arm. In this case, the mechanical advantage would be 50 cm (input arm) divided by 40 cm (output arm), which equals 1.25. Therefore, the mechanical advantage of the lever is 1.25.


What is the mechanical advantage of a lever that has an input arm of 3 meters and an output arm of 2 meters?

The mechanical advantage of a lever is calculated by dividing the length of the input arm by the length of the output arm. In this case, the mechanical advantage would be 3/2, which simplifies to 1.5. This means that for every 1 unit of effort applied to the input arm, the lever can lift 1.5 units on the output arm.

Related Questions

What is an output arm?

What is an output arm?


The muscles of the arm are what to the skin of the arm?

The muscles of the arm are natural tighteners to the skin of the arm


What muscles are used in catching a ball?

the arm muscles which are called reflexs. the arm muscles which are called reflexs. the arm muscles which are called reflexs.


What muscles are used in cheering?

you use your leg muscles alot and your arm muscles. you use your leg muscles alot and your arm muscles.


How many muscles does the human arm have?

there about 50 muscles in your arm and hand and i don't know how many are in the sholder


What is the input arm and the output arm on a lever?

The input arm, also known as the effort arm, is the distance from the pivot point to where the input force is applied. The output arm, also known as the load arm, is the distance from the pivot point to where the output force is exerted.


What muscles do arm curls work?

Arm curls primarily work the biceps muscles in the front of the upper arm.


How many muscles in the arm?

There are approximately 20 muscles in the human arm that control its movements, including muscles in the shoulder, upper arm, forearm, and hand.


What are the names of the muscles in the arm?

The main muscles in the arm are the biceps, triceps, deltoid, and brachialis.


How many muscles are in a human arm?

There are around 20 muscles in the human arm, which include muscles that control movement in the shoulder, upper arm, forearm, and hand. These muscles work together to allow for a wide range of motions in the arm.


A lever has 36cm input arm and 6cm output arm. What is the MA?

The mechanical advantage (MA) of a lever is calculated by dividing the input arm length by the output arm length. In this case, the MA would be 36cm (input arm) divided by 6cm (output arm), resulting in a MA of 6.


What happens to muscles when you straighten your arm?

There are many arm muscles. The triceps (on the back of your upper-arm) contract when you straighten your arm, and the biceps (the front of the upper-arm) relaxes.