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Why are simple machines not 100 efficient?

Why are simple machines not 100 efficient?

A machine cannot be 100 percent efficient because output of a machine is always less than input. A certain amount of work done on a machine is lost to overcome friction and to lift some moving parts of the machine.

Are all simple machines 100 efficient?

Simple machines always have efficiencies of less than 1.0 due to internal friction. Energy conservation. If work in equals work out, then the machine is 100\% efficient.

Why is efficiency not more than 100?

It is not possible to have an efficiency of greater than 1 or an efficiency percentage greater than 100\%. This would mean that more energy is being transferred than is being supplied, which would mean that energy is being created. This would break the law of conservation of energy.

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How could we increase the efficiency of a pulley system Why are machines never 100\% efficient?

It is important to remember that NO pulley system is 100\% efficient. This is due to friction of the ropes against the pulley wheels and the friction of the bearings of the pulley wheels as they rotate. … This type of pulley arrangement will always have the same mechanical advantage and velocity ratio.

Why is energy transformation not 100 efficient?

This means that when energy is converted to a different form, some of the input energy is turned into a highly disordered form of energy, like heat. Energy losses are what prevent processes from ever being 100\% efficient.

Does a heat engine with 100\% efficiency violate any of the laws of thermodynamics?

A heat engine that violates the second law converts 100 percent of this heat to work. This is physically impossible. . This heat engine violates the second law of thermodynamics.

How can the efficiency of a simple machine be increased?

Efficiency of a simple machine can be increased by reducing the friction. But oiling and greasing the machine is a useful way to increase the efficiency of a machine.

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Are energy transformations 100 efficient?

Conversions to thermal energy from other forms of energy may occur with 100\% efficiency. Conversion among non-thermal forms of energy may occur with fairly high efficiency, though there is always some energy dissipated thermally due to friction and similar processes.

What does it mean to say that a radio is not 100 efficient?

, former Former Production Engineer at Endurance Technologies. In practice no machine can achieve 100\% efficiency. When you mean 100\% efficiency it means your input energy should be completely transformed to output energy. This is against the thermodynamic law.

What does a mechanical efficiency of 100 percent mean for a hydraulic turbine?

A mechanical efficiency of 100\% for a hydraulic turbine means that the entire mechanical energy of the fluid is converted to mechanical (shaft) work.

Why can’t a machine be 100 percent efficient?

Man has relied on machines and their efficiency for years. So, why can’t a machine be 100 percent efficient? The short answer is: It can’t. Almost all machines require energy to offset the effects of gravity, friction, and air/wind resistance. Thus, no machine can continually operate at 100 percent efficiency.

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Why is the input energy of a machine less than 100\%?

Energy in equals energy out, so the input energy of the machine must equal the sum of all these energy losses plus the energy required to do its work. This requires the input to be greater than the output, making the efficiency less than 100\%. , Hardware Engineer.

Why can’t we create or destroy energy in a machine?

This doesn’t happen because some of the machine’s input energy is lost to its operating environment. This includes heat loss, friction between its moving parts, air resistance, electrical resistance, and thermal resistance. All these things require energy to happen, and you can’t create or destroy energy — it has to go s omewhere.

Can a machine convert all the energy it has to work?

No machine can convert all their fuel or input energy into work. Some are very efficient: a set of bicycle gears or a hydraulic engine can convert 95–99\% of the input energy to work. But some is always lost in other forms of energy such as heat and noise. The efficiency limit is a product of the technologies.