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HA+OH^(-) থেকে H(2)O+A^(-)+q(1) kJ H^(+)...

HA+OH^(-) থেকে H_(2)O+A^(-)+q_(1) kJ H^(+)+OH^(-) থেকে H_(2)O+ q_(2) kJ এর এনথালপি বিচ্ছেদ...

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HA+OH^(-) to H_(2)O+A^(-)+q_(1) kJ H^(+)+OH^(-) to H_(2)O+ q_(2) kJ The enthalpy of dissociation of HA is

HA + OH rightarrow H_(2)O + A^(-+) q_(1) kJ H^(+) + OH ^(-) rightarrow H_(2)O + q_(2)kJ the enthalpy of ionisation of HA is

H_(3)O^(+) + OH^(-) rarr 2H_(2)O is

If CH_(3)COOH+OH^(-)toCH_(3)COO^(-)+H_(2)O+q_(1)and H^(+)+OH^(-)to H_(2)O+q_(2) , then the enthalpy change for the reaction CH_(3)COOHtoCH_(3)COO^(-)+H^(+) is "equal to :

If CH_(2)COOH+OH^(-)rarrCH_(3)COO^(-)+H_(2)O+q_(1) H^(+)+OH^(-)rarrH_(2)O+q_(2) then the enthalpy change for the equal to

Given that the data for neutralization of weak acid (HA) and strong acid is : HA+OH^(-)toA^(-)+H_(2)O , DeltaH=-41.80 kJ H^(+)+OH^(-)toH_(2)O , DeltaH=+ -55.90 kJ The enthalpy of dissociation of weak acid would be