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Mechanical efficiency

quotient of mechanical output and input power

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Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionSep 20, 2026
Entity authorityQ2628085
Source-derived summary

In mechanical engineering, mechanical efficiency is a dimensionless ratio that measures the efficiency of a mechanism or machine in transforming the power input to the device to power output. A machine is a mechanical linkage in which force is applied at one point, and the force does work moving a load at another point. At any instant the power input to a machine is equal to the input force multiplied by the velocity of the input point, similarly the power output is equal to the force exerted on the load multiplied by the velocity of the load. The mechanical efficiency of a machine (often represented by the Greek letter eta η) is a dimensionless number between 0 and 1 that is the ratio between the power output of the machine and the power input

η

=

Power output

Power input

{\displaystyle \eta ={\frac {\text{Power output}}{\text{Power input}}}}

Since a machine does not contain a source of energy, nor can it store energy, from conservation of energy the power output of a machine can never be greater than its input, so the efficiency can never be greater than 1.

All real machines lose energy to friction; the energy is dissipated as heat. Therefore, their power output is less than their power input

Power output

=

Power input

Frictional power loss

{\displaystyle {\text{Power output}}={\text{Power input}}-{\text{Frictional power loss}}}

Therefore, the efficiency of all real machines is less than 1. A hypothetical machine without friction is called an ideal machine; such a machine would not have any energy losses, so its output power would equal its input power, and its efficiency would be 1 (100%).

For hydropower turbines the efficiency is referred to as hydraulic efficiency.

Editorial summary

The public source identifies “Mechanical efficiency” as quotient of mechanical output and input power. This brief keeps that definition visible, then builds a research path around Mechanical, efficiency and quotient.

Editorial reviewA practical starting point whose main value is the path it opens into stronger specialist and primary sources. The current 282-word lead offers orientation but no explicit four-digit date, so chronology should not be assumed. The selected authority fields contribute no independent date. Its value is orientation rather than verdict, with Mechanical, efficiency and quotient providing the first useful test.
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The citation trail is more important than the brevity of the summary: it shows where individual claims can be examined in context. The source revision retrieved here is dated Sep 20, 2026. The linked authority identifier is Q2628085. None of the 0 selected statements returned an explicit reference.

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This entry incorporates text from Mechanical efficiency” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.