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Q.Define and explain heat of reaction. What is Hess's law of constant heat summation? Explain with example. OR

(i) The equilibrium constant for a reaction is 10 at 300 K. What will be the value of ΔG°? R = 8.314 JK⁻¹ mol⁻¹, T = 300 K. [2½ marks]
(ii) Calculate the entropy change in surroundings, when 1.0 mol of H2O(l) is formed under standard conditions: ΔfH° = -286 KJ mol⁻¹. [2½ marks]
Haryana BsehBoard of School Education Haryana (Senior Secondary Part-I / Class 11) 2017Subjective· 5mImportance★★★★★
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Heat of reaction is the enthalpy change of a balanced reaction; Hess's law says this total enthalpy change is path-independent, since enthalpy is a state function.

Heat of reaction

The heat (enthalpy) of reaction, ΔrH\Delta_rH, is the enthalpy change accompanying a chemical reaction when the number of moles of reactants shown in its balanced chemical equation react completely to form the products, at constant pressure and a specified temperature (usually 298 K):

ΔrH=ΣHproducts−ΣHreactants\Delta_rH = \Sigma H_{products} - \Sigma H_{reactants}

If ΔrH<0\Delta_rH < 0, the reaction is exothermic (releases heat); if ΔrH>0\Delta_rH > 0, it is endothermic (absorbs heat).

Hess's Law of constant heat summation

Enthalpy is a state function — it depends only on the initial and final states of the system, not on the path taken to get there. Hess's law is a direct consequence of this: the total enthalpy change for a chemical reaction is the same whether the reaction occurs in a single step, or through a series of steps (intermediate stages) — i.e. ΔH\Delta H of the overall reaction equals the algebraic sum of ΔH\Delta H of the individual steps that add up to it.

Worked example

Formation of CO2CO_2 from carbon and oxygen can happen directly:

C(s)+O2(g)→CO2(g)ΔH=−393.5 kJ/molC(s) + O_2(g) \rightarrow CO_2(g) \qquad \Delta H = -393.5\ \text{kJ/mol}

or via two steps, through carbon monoxide as an intermediate: …

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