Boltzmann constant: Difference between revisions
Jump to navigation
Jump to search
Carl McBride (talk | contribs) mNo edit summary |
Carl McBride (talk | contribs) mNo edit summary |
||
| Line 7: | Line 7: | ||
::<math> =8.617 343(15) \times 10^{-5}</math> <math>\left.eV\right.</math> <math>\left.K^{-1}\right.</math> | ::<math> =8.617 343(15) \times 10^{-5}</math> <math>\left.eV\right.</math> <math>\left.K^{-1}\right.</math> | ||
[[Category: Classical thermodynamics, Physical constant]] | |||
Revision as of 17:28, 23 February 2007
The Boltzmann constant (Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle k} or Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle k_B} ) is the physical constant relating temperature to energy.
It is named after the Austrian physicist Ludwig Eduard Boltzmann. Its experimentally determined value (in SI units, 2002 CODATA value) is:
- Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle k_B =1.380 6505(24) \times 10^{-23} } Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle \left. JK^{-1}\right.}
- Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle =8.617 343(15) \times 10^{-5}} Failed to parse (SVG (MathML can be enabled via browser plugin): Invalid response ("Math extension cannot connect to Restbase.") from server "https://wikimedia.org/api/rest_v1/":): {\displaystyle \left.K^{-1}\right.}