![](http://calistry.org/sites/default/files/54d2e0a6bbf0a2eaa824c3ac021b2271.png)
K1= The equilibrium constant at absolute temperature T1 ; K2=The equilibrium constant at absolute temperature T2 ;
ΔHo= The standard enthalpy change ; T1 & T2 = Temperature; R= Gas constant
arkajitmandal,
16.10.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style capital delta H space equals capital delta U space plus space P capital delta V space end style](/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=698922ef36565a818b4bae99f1de6692.png)
ΔH= Enthalpy Change ; ΔU = (Ufinal - Uinitial) Internal Energy Change; ΔV = (Vfinal - Vinitial)Volume Change;
arkajitmandal,
10.09.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style capital delta G to the power of o space equals space minus space R T ln left parenthesis K subscript e q end subscript right parenthesis space end style](/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=de385a5af6b31594489b179849433435.png)
ΔGo= Standard Free Energy Change ; R = Universal Gas Constant; Keq = Equilibrium Constant; T= Temperature
arkajitmandal,
03.09.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style capital delta G space equals capital delta H space minus space T capital delta S space end style](/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=9f636217ea3c071e99301ee49e32c600.png)
ΔG= Change in Gibb's Free Energy ; ΔH = Change in enthalpy; ΔS = Change in Entropy; T= Temperature
arkajitmandal,
03.09.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style Q equals m. s. theta end style](/New/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=70524067e463f51313e29048ac7953a3.png)
Q= Amount of Heat ; m= mass ; s = Specific Heat ; θ = Temperature Change (a.k.a ΔT)
arkajitmandal,
03.04.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style F equals C minus P space plus 2 end style](/New/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=eb781b832e7cb2c2fa1d88c313a54308.png)
F= Number of Variables ; C= Number of Components ; P= Number of Phases;
arkajitmandal,
01.04.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style S equals K subscript B ln W end style](/New/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=72a305fdbc3823ee13172145ef32fe7e.png)
S=Entropy ; KB = Bolzmann's Constant ; W = Number of microsates
arkajitmandal,
25.03.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style capital delta U space equals space C subscript v open parentheses T subscript 2 space minus space T subscript 1 close parentheses space end style](/New/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=81af6cd2b7058015e0570f6a3b32a71f.png)
ΔU= Internal Energy Change ; Cv = Heat Capacity at constant Volume ; T2 , T1 = Final and Initial Temperature;
arkajitmandal,
24.03.2015
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![begin mathsize 48px style capital delta H space equals space capital delta U space plus space left parenthesis n subscript 2 space minus space n subscript 1 right parenthesis space R T end style](/New/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=b0c03c49c41ba26312b7f4e2636ae782.png)
ΔH= Enthalpy change ; ΔU = Internal Energy Change ; n1 , n2 = Gaseous reactant's and Product's Total Mole Number;
arkajitmandal,
23.03.2015
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![](http://calistry.org/New/sites/default/files/thermo.png)
![begin mathsize 48px style capital delta H space equals C p capital delta T space space left parenthesis capital delta T space equals space T subscript 2 space end subscript minus T subscript 1 right parenthesis end style](/New/sites/all/libraries/ckeditor//plugins/ckeditor_wiris/integration/showimage.php?formula=c171fc7b3b7a13d687c64d252be17222.png)
ΔH= Enthalpy Change ; Cp = Heat Capacity at constant Pressure; T1 , T2 = Initial & Final Temperature ;
arkajitmandal,
23.03.2015
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