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The answer ERGS has 387 possible clue(s) in existing crosswords.
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The word ERGS is VALID in some board games. Check ERGS in word games in Scrabble, Words With Friends, see scores, anagrams etc.
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Definitions of ergs in various dictionaries:
noun - a cgs unit of work or energy
noun - a unit of work or energy
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|Possible Crossword Clues|
|Divisions of joules|
|___ per second (luminosity unit)|
|What solar flares are measured in|
|Bits of work|
|Amount of work|
|Units of work|
|Small energy units|
|Last Seen in these Crosswords & Puzzles|
|Jul 18 1999 New York Times|
|May 22 1999 New York Times|
|Jan 14 1999 New York Times|
|Aug 19 1998 New York Times|
|Jul 31 1997 Irish Times (Simplex)|
|Apr 9 1997 New York Times|
|Mar 23 1997 New York Times|
|Possible Dictionary Clues|
|Plural form of erg.|
|a unit of work or energy, equal to the work done by a force of one dyne when its point of application moves one centimetre in the direction of action of the force.|
|A unit of work or energy, equal to the work done by a force of one dyne when its point of application moves one centimetre in the direction of action of the force.|
|An area of shifting sand dunes in the Sahara.|
|Ergs might refer to|
The Erg is a unit of energy and work equal to 107 joules. It originated in the centimetregramsecond (CGS) system of units. It has the symbol erg. The erg is not an SI unit. Its name is derived from ergon () a Greek word meaning work or task.An erg is the amount of work done by a force of one dyne exerted for a distance of one centimeter. In the CGS base units, it is equal to one gram centimeter-squared per second-squared (g·cm2/s2). It is thus equal to 107 joules or 100 nanojoules (nJ) in SI units. An erg is approximately the amount of work done (or energy consumed) by one common house fly performing one "push up," the leg-bending dip that brings its mouth to the surface on which it stands and back up.|
* 1 erg = 107 J = 100 nJ
* 1 erg = 1010sn·m = 100 psn·m = 100 picosthène-metres
* 1 erg = 624.15 GeV = 6.2415×1011 eV
* 1 erg = 1 dyne cm = 1 g·cm2/s2