Ideal gas

Results: 203



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91Friday 20th February: Monash University, Clayton, Victoria  Thermodynamics and Climate Change The surprising link between the laws of thermodynamics and probability: weird physical laws

Friday 20th February: Monash University, Clayton, Victoria Thermodynamics and Climate Change The surprising link between the laws of thermodynamics and probability: weird physical laws

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Source URL: www.vicphysics.org

Language: English - Date: 2015-02-22 23:58:56
92Mon. Not. R. Astron. Soc. 000, 1–[removed]Printed 7 July[removed]MN LATEX style file v2.2)

Mon. Not. R. Astron. Soc. 000, 1–[removed]Printed 7 July[removed]MN LATEX style file v2.2)

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Source URL: users.monash.edu.au

Language: English - Date: 2014-07-07 05:47:07
93Mon. Not. R. Astron. Soc. 000, 1–[removed]Printed 21 February[removed]MN LATEX style file v2.2)

Mon. Not. R. Astron. Soc. 000, 1–[removed]Printed 21 February[removed]MN LATEX style file v2.2)

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Source URL: users.monash.edu.au

Language: English - Date: 2014-02-21 06:26:29
94Mon. Not. R. Astron. Soc. 000, 1–[removed]Printed 21 February[removed]MN LATEX style file v2.2)

Mon. Not. R. Astron. Soc. 000, 1–[removed]Printed 21 February[removed]MN LATEX style file v2.2)

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Source URL: users.monash.edu.au

Language: English - Date: 2014-02-21 06:25:04
95Application of the First Law to Ideal Gases Calculate q,w, ∆U, and ∆H for ideal gas processes: dU = ñq + ñw dU = Cv dT dH = Cp dT ∂U ∆U = q + w

Application of the First Law to Ideal Gases Calculate q,w, ∆U, and ∆H for ideal gas processes: dU = ñq + ñw dU = Cv dT dH = Cp dT ∂U ∆U = q + w

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Source URL: www.colby.edu

Language: English - Date: 2009-10-23 09:58:37
96Gas collisions and pressure quenching of the photoluminescence of silicon nanopowder grown by plasma-enhanced chemical vapor deposition P. Rouraa) and J. Costa GRM, Dept. d’Enginyeria Industrial, Escola Polite`cnica Su

Gas collisions and pressure quenching of the photoluminescence of silicon nanopowder grown by plasma-enhanced chemical vapor deposition P. Rouraa) and J. Costa GRM, Dept. d’Enginyeria Industrial, Escola Polite`cnica Su

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Source URL: dugi-doc.udg.edu

Language: English - Date: 2014-02-12 02:36:20
97Entropy and the Ideal Gas Ideal gas: (∂U ∂V )T = 0 dU = CV dT

Entropy and the Ideal Gas Ideal gas: (∂U ∂V )T = 0 dU = CV dT

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Source URL: www.colby.edu

- Date: 2004-10-07 17:23:30
    98J Comput Electron[removed]:65–97 DOI[removed]s10825[removed]Density-gradient theory: a macroscopic approach to quantum confinement and tunneling in semiconductor devices M.G. Ancona

    J Comput Electron[removed]:65–97 DOI[removed]s10825[removed]Density-gradient theory: a macroscopic approach to quantum confinement and tunneling in semiconductor devices M.G. Ancona

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    Source URL: www.nrl.navy.mil

    Language: English - Date: 2013-12-17 12:05:15
    99Entropy and the Surroundings – Ideal Gas System Surroundings dq dU P dSsurr = −

    Entropy and the Surroundings – Ideal Gas System Surroundings dq dU P dSsurr = −

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    Source URL: www.colby.edu

    Language: English - Date: 2005-10-06 16:27:17
    100PROPERTIES OF SOME GASES AND LIQUIDS AT ONE ATMOSPHERE (Ar, CO2 , He, N2 , H2 O() ) UW/MHTL 8407 G-02

    PROPERTIES OF SOME GASES AND LIQUIDS AT ONE ATMOSPHERE (Ar, CO2 , He, N2 , H2 O() ) UW/MHTL 8407 G-02

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    Source URL: www.mhtlab.uwaterloo.ca

    Language: English - Date: 2006-10-11 07:39:07