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Thermochemistry Dr. Ruchi S. Pandey
Energy Changes and Thermochemistry ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey ,[object Object],[object Object]
Some definitions and Conventions ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey
Energy and First Law of Thermodynamics ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey ,[object Object],[object Object]
Enthalpy ,[object Object],[object Object],Dr. Ruchi S. Pandey ,[object Object],[object Object],[object Object],[object Object]
Enthalpy change for Chemical reactions ,[object Object],Dr. Ruchi S. Pandey H products  <  H reactants  H  < 0 H products  >  H reactants  H  > 0
Thermochemical Equations Dr. Ruchi S. Pandey ,[object Object],[object Object],[object Object],[object Object],H 2 O( g )    H 2 O(l)    H  = -44 kJ ,[object Object],H 2 O  ( s )   H 2 O  ( l )  H  = 6.01 kJ H 2 O  ( l )   H 2 O  ( s )  H  =  - 6.01  kJ 2H 2 O  ( s )   2H 2 O  ( l )  H  =  2 x  6.01   = 12.0 kJ H 2 O  ( s )   H 2 O  ( l )  H  = 6.01 kJ H 2 O  ( l )   H 2 O  ( g )  H  = 44.0 kJ
 H for some typical chemical reactions Dr. Ruchi S. Pandey
Dr. Ruchi S. Pandey Because there is no way to measure the absolute value of the enthalpy of a substance, must I measure the enthalpy change for every reaction of interest? Establish an arbitrary scale with the  standard enthalpy of formation  (  H 0 ) as a reference point for all enthalpy expressions. The standard enthalpy of formation of any element in its most stable form is zero. Standard enthalpy of formation  (  H 0 ) is the heat change that results when  one mole  of a compound is formed from its  elements  at a pressure of 1 atm. f  H 0  (O 2 ) = 0 f  H 0  (O 3 ) = 142 kJ/mol f  H 0  (C, graphite) = 0 f  H 0  (C, diamond) = 1.90 kJ/mol f
Dr. Ruchi S. Pandey Enthalpy is a state function.  It doesn’t matter how you get there, only where you start and end. The  standard enthalpy of reaction  (  H 0  ) is the enthalpy of a reaction carried out at 1 atm. rxn a A +  b B  c C +  d D  H 0 rxn d  H 0  (D) f c  H 0  (C) f = [ + ] - b  H 0  (B) f a  H 0  (A) f [ + ]  H 0 rxn n  H 0  (products) f =  m  H 0  (reactants) f  -
Hess’s Law ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey
Hess’s Law contd.. ,[object Object],Dr. Ruchi S. Pandey  H soln  =  H soln  -  H components  H soln  =  Step 1 + Step 2 = 788 – 784 = 4 kJ/mol
Heat of Dilution ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey Heat of Hydration ,[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],Heat of Combustion Dr. Ruchi S. Pandey Heat of Neutralization ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Effect of Temperature on heat of reactions Dr. Ruchi S. Pandey Kirchhoff’s  Relation
Kirchhoff’s Relation ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey
Relation between energy and enthalpy ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey
Adiabatic Flame Temperature ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Dr. Ruchi S. Pandey

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Fundamentals of Thermo-Chemistry

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  • 8.  H for some typical chemical reactions Dr. Ruchi S. Pandey
  • 9. Dr. Ruchi S. Pandey Because there is no way to measure the absolute value of the enthalpy of a substance, must I measure the enthalpy change for every reaction of interest? Establish an arbitrary scale with the standard enthalpy of formation (  H 0 ) as a reference point for all enthalpy expressions. The standard enthalpy of formation of any element in its most stable form is zero. Standard enthalpy of formation (  H 0 ) is the heat change that results when one mole of a compound is formed from its elements at a pressure of 1 atm. f  H 0 (O 2 ) = 0 f  H 0 (O 3 ) = 142 kJ/mol f  H 0 (C, graphite) = 0 f  H 0 (C, diamond) = 1.90 kJ/mol f
  • 10. Dr. Ruchi S. Pandey Enthalpy is a state function. It doesn’t matter how you get there, only where you start and end. The standard enthalpy of reaction (  H 0 ) is the enthalpy of a reaction carried out at 1 atm. rxn a A + b B c C + d D  H 0 rxn d  H 0 (D) f c  H 0 (C) f = [ + ] - b  H 0 (B) f a  H 0 (A) f [ + ]  H 0 rxn n  H 0 (products) f =  m  H 0 (reactants) f  -
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