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  • The '''ideal gas law''' is the [[equation of state]] of an '''ideal gas''' (also known as a '''p ...ternal rotational, vibrational, and electronic [[degrees of freedom]]. The ideal gas law describes the motion of the [[center of mass|centers of mass]] of the molec
    14 KB (2,204 words) - 15:26, 20 November 2022
  • .../videolectures.net/mit801f99_lewin_lec33/ Lecture 33: Kinetic Gas Theory - Ideal Gas Law - Isothermal Atmosphere - Phase Diagrams - Phase Transitions] An excellent, *[http://www.youtube.com/watch?v=JEsfU7ogbVQ Introduction of the ideal gas law and solution of an example problem]
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  • ...d to be ideal, i.e. their ''p'', ''V'', ''T'' dependence is given by the [[ideal gas law]].</i> ''See also the tutorials on the [[Ideal gas law/Video|Video subpage]].''
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  • ...://www.chm.davidson.edu/chemistryapplets/gaslaws/GasConstant.html Gas Laws:Ideal Gas Law and the Gas Constant, Concepts] (Chemistry Department, [[Davidson College]] .../videolectures.net/mit801f99_lewin_lec33/ Lecture 33: Kinetic Gas Theory - Ideal Gas Law - Isothermal Atmosphere - Phase Diagrams - Phase Transitions] An excellent,
    746 bytes (106 words) - 09:30, 2 August 2023

Page text matches

  • ...://www.chm.davidson.edu/chemistryapplets/gaslaws/GasConstant.html Gas Laws:Ideal Gas Law and the Gas Constant, Concepts] (Chemistry Department, [[Davidson College]] .../videolectures.net/mit801f99_lewin_lec33/ Lecture 33: Kinetic Gas Theory - Ideal Gas Law - Isothermal Atmosphere - Phase Diagrams - Phase Transitions] An excellent,
    746 bytes (106 words) - 09:30, 2 August 2023
  • .../videolectures.net/mit801f99_lewin_lec33/ Lecture 33: Kinetic Gas Theory - Ideal Gas Law - Isothermal Atmosphere - Phase Diagrams - Phase Transitions] An excellent, *[http://www.youtube.com/watch?v=JEsfU7ogbVQ Introduction of the ideal gas law and solution of an example problem]
    538 bytes (84 words) - 20:57, 9 February 2010
  • [[Boyle's law]] is a special case of the [[ideal gas law]] from which one may calculate either the pressure or the volume of gas. I see [[Ideal gas law]]
    558 bytes (95 words) - 04:45, 19 February 2010
  • ...ng else constant. Charles's law states that volume and temperature of an [[ideal gas law|ideal gas]] are directly proportional to each other as long as everything i The addition of [[Avogadro's law]] to the combined gas law yields the [[ideal gas law]].
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  • A [[thermodynamic]] property for modifying the [[ideal gas law]] to account for behavior of [[real gas]]es.
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  • Is a special case of the [[ideal gas law]], which states: ''At constant pressure, the volume of a given mass of an i
    257 bytes (42 words) - 15:27, 18 June 2008
  • *[[Ideal gas law]]
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  • is a special case of the [[ideal gas law]] from which one may calculate either the pressure or the volume of gas.
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  • {{r|Ideal gas law}}
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  • ...s contain an equal number of molecules. This relation holds exactly for [[ideal gas law|ideal gases]]. The law is approximately valid for real gases at sufficientl
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  • {{r|Ideal gas law}}
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  • {{r|Ideal gas law}}
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  • ...arge number of fundamental equations in the physical sciences, such as the ideal gas law and the Nernst equation, and it is equivalent to the Boltzmann constant, bu
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  • {{r|Ideal gas law}}
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  • ...d to be ideal, i.e. their ''p'', ''V'', ''T'' dependence is given by the [[ideal gas law]].</i> ''See also the tutorials on the [[Ideal gas law/Video|Video subpage]].''
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  • {{r|Ideal gas law}}
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  • The [[ideal gas law]] equation can be rearranged to give this expression for the molar volume o ...ibility factor, which is a useful thermodynamic property for modifying the ideal gas law to account for behavior of real gases.<ref name=Compressibility>[http://en.
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  • ...ge number of fundamental equations in the physical sciences, such as the [[ideal gas law]] and other [[Equation of state|equations of state]] and the [[Nernst equat The gas constant occurs in the [[ideal gas law]] as follows:
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  • {{r|Ideal gas law}}
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  • ...Force is measured as pressure P. An early princple of the theory was the ideal gas law, PV = nRT; n being the number of moles of the gas and R, the Universal Gas is equivalent to the Ideal Gas Law.
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  • {{main|Ideal gas law}} ...s applicable for hypothetical gases with no [[intermolecular forces]]. The ideal gas law is a useful approximation for predicting the behavior of many gases over a
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  • {{main|Ideal gas law}} ...s applicable for hypothetical gases with no [[intermolecular forces]]. The ideal gas law is a useful approximation for predicting the behavior of many gases over a
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  • {{r|Ideal gas law}}
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  • ...eactants involved in chemical reactions by using, for the most part, the [[ideal gas law]].<ref>{{cite book|author=John Olmstead III and Gregory M. Williams|title=C The ideal gas law and the [[molar gas constant|universal molar gas constant]] of R = 8.205745
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  • ...ease in the [[temperature]] of a real [[gas]] (as differentiated from an [[Ideal gas law|ideal gas]]) or a [[liquid]] when allowed to expand freely through a [[valv
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  • ...ease in the [[temperature]] of a real [[gas]] (as differentiated from an [[Ideal gas law|ideal gas]]) or a [[liquid]] when allowed to expand freely through a [[valv
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  • ...throughout the atmosphere. Further it is used that the atmosphere is an [[ideal gas law|ideal gas]]. The equation thus obtained is a form of a [[Boltzmann distribu ...that the molar density is the number of moles per volume, we get for an [[ideal gas law|ideal gas]],
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  • ...e, a subsystem can be a single [[molecule]] in, say, one [[mole]] of an [[ideal gas law|ideal gas]]. Then the Boltzmann distribution applies to the energies of the
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  • *[[Ideal gas law|Ideal gas]], in physics.
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  • ...the [[enthalpy]] and <math>U</math> for the [[internal energy]]. For an [[Ideal gas law|ideal gas]], the [[heat capacity]] is constant with temperature. Accordingl Using the ideal gas law, <math>pV = nRT</math>, equation (1) can be re-arranged to:
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  • ...the [[enthalpy]] and <math>U</math> for the [[internal energy]]. For an [[Ideal gas law|ideal gas]], the [[heat capacity]] is constant with temperature. Accordingl Using the ideal gas law, <math>pV = nRT</math>, equation (1) can be re-arranged to:
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  • {{r|Ideal gas law}}
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