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  • {{r|Laws of thermodynamics}}
    605 bytes (67 words) - 22:21, 6 November 2009
  • {{r|Laws of thermodynamics}}
    564 bytes (64 words) - 11:06, 5 November 2009
  • {{r|Laws of thermodynamics}}
    739 bytes (87 words) - 11:29, 5 November 2009
  • 171 bytes (27 words) - 14:08, 24 November 2020
  • #redirect [[Laws of thermodynamics]]
    36 bytes (4 words) - 11:50, 20 July 2009
  • #redirect [[Laws of thermodynamics]]
    36 bytes (4 words) - 11:50, 20 July 2009
  • #redirect [[Laws of thermodynamics]]
    36 bytes (4 words) - 11:49, 20 July 2009
  • #redirect [[Laws of thermodynamics]]
    36 bytes (4 words) - 11:50, 20 July 2009
  • {{r|Laws of thermodynamics}}
    811 bytes (105 words) - 15:22, 16 March 2010
  • {{r|Laws of thermodynamics}}
    254 bytes (30 words) - 02:39, 27 June 2012
  • ...cal reactions or with physical changes of state within the confines of the laws of thermodynamics.
    193 bytes (29 words) - 04:08, 29 April 2009
  • {{r|Laws of thermodynamics}}
    714 bytes (91 words) - 11:48, 11 January 2010
  • The '''laws of thermodynamics''' form a basis for the study of [[thermodynamics]]. There are four laws of ==The four laws of thermodynamics==
    6 KB (873 words) - 06:20, 29 June 2010
  • ...ld|Whitfield, John. (2007) "Survival of the Likeliest? — ''Using the laws of thermodynamics to explain natural selection — and life itself'' — A Public Lib
    463 bytes (63 words) - 20:17, 20 October 2011
  • 7 KB (1,041 words) - 13:05, 15 October 2010
  • The starting point for most thermodynamic considerations are the [[laws of thermodynamics]], which postulate that [[energy]] can be exchanged between physical system == The laws of thermodynamics ==
    21 KB (3,073 words) - 20:08, 1 September 2020
  • ...sical change of [[thermodynamic state|state]] within the confines of the [[laws of thermodynamics]]. Chemical thermodynamics can be generally thought of as the application o ...first two [[laws of thermodynamics]]. Starting from the first and second laws of thermodynamics, four equations called the "fundamental equations of Gibbs" can be derived.
    17 KB (2,659 words) - 10:00, 5 November 2009
  • As a result Carathéodory was able to obtain the laws of thermodynamics without recourse to fictitious machines or ''objectionable concepts as the
    9 KB (1,565 words) - 15:42, 16 March 2010
  • ...Therefore, the gas phase is a completely disordered state. Following the [[Laws of thermodynamics|second law of thermodynamics]], gas particles will immediately [[diffusion|
    8 KB (1,191 words) - 19:28, 22 January 2011
  • 11 KB (1,457 words) - 03:51, 1 November 2010

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