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A car is an example of a machine where friction can be both an advantage and a disadvantage. Friction between the tires and the road allows the car to accelerate, brake, and turn smoothly, providing traction. However, friction also causes wear and tear on the tires and causes the engine to work harder, leading to decreased fuel efficiency.

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What describes the relationship between friction and IMA for a simple machine?

Friction reduces the mechanical advantage (IMA) of a simple machine by causing energy losses in the form of heat. As friction increases, the effectiveness of the machine in transmitting force or lift decreases, ultimately lowering the mechanical advantage.


Which machine has an ima that is less than 1?

A machine with an ima (ideal mechanical advantage) less than 1 is called a disadvantage machine, meaning it doesn't amplify input force. An example is a system where the output force is less than the input force due to friction or other factors, such as a pulley system with multiple moving parts.


What happens to the mechanical advantage of a machine if friction is reduced through the use of oil or some other means?

Wear and tear of moving parts would be reduced. Less energy would be needed to run the machine, as there would be less friction to be overcome. A well lubricated machine is more efficient than a neglected machine with unoiled parts.


Reducing friction increases the ideal mechanical advantage of a machine?

Reducing friction helps to minimize energy loss, making the machine more efficient. This allows the machine to transfer more of its input force or energy into useful work, increasing its ideal mechanical advantage.


How does mechanical advantage differ from ideal mechanical advantage?

Mechanical advantage is determined by physical measurement of the input and output forces and takes into account energy loss due to deflection, friction, and wear. The ideal mechanical advantage, meanwhile, is the mechanical advantage of a device with the assumption that its components do not flex, there is no friction, and there is no wear.

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What describes the relationship between friction and IMA for a simple machine?

Friction reduces the mechanical advantage (IMA) of a simple machine by causing energy losses in the form of heat. As friction increases, the effectiveness of the machine in transmitting force or lift decreases, ultimately lowering the mechanical advantage.


Which machine has an ima that is less than 1?

A machine with an ima (ideal mechanical advantage) less than 1 is called a disadvantage machine, meaning it doesn't amplify input force. An example is a system where the output force is less than the input force due to friction or other factors, such as a pulley system with multiple moving parts.


Advantage and disadvantage of drilling machine?

it used fioe making drills


What happens to the mechanical advantage of a machine if friction is reduced through the use of oil or some other means?

Wear and tear of moving parts would be reduced. Less energy would be needed to run the machine, as there would be less friction to be overcome. A well lubricated machine is more efficient than a neglected machine with unoiled parts.


What is the formula to find mechanical advantage?

The mechanical advantage that a machine would have without friction or in another term is that you can find the IDEAL MECHANICAL ADVANTAGE (IMA) OF A MACHINE IS BY HAVING A MACHINE WITH NO FRICTION, ALSO BY MULTIPLYING YOUR EFFORT FORCE BY 2, HOWEVER BECAUSE OF FRICTION AND THE WEIGHT THE ACTUAL MA WILL BE LESS.


What is one advantage and one disadvantage of a bank?

Advantage - You can use your account for online bill pay. Disadvantage- The bank charges you Atm fee when you have to get money from another machine.


What are advantage and disadvantage of machine?

if you have a machine it will explode on your face when it gets explodid and your face will fall off! yasm! WEETABIX!


Reducing friction increases the ideal mechanical advantage of a machine?

Reducing friction helps to minimize energy loss, making the machine more efficient. This allows the machine to transfer more of its input force or energy into useful work, increasing its ideal mechanical advantage.


How does mechanical advantage differ from ideal mechanical advantage?

Mechanical advantage is determined by physical measurement of the input and output forces and takes into account energy loss due to deflection, friction, and wear. The ideal mechanical advantage, meanwhile, is the mechanical advantage of a device with the assumption that its components do not flex, there is no friction, and there is no wear.