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Q.State and explain the Hess law of constant heat summation with an example.

Andhra Pradesh BieapBIEAP Intermediate Board (1st Year) 2018Subjective· 4mImportance★★★★★
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Hess's law says the enthalpy change of a reaction is independent of the path taken; it follows from enthalpy being a state function. Example: forming CO2 directly or through CO gives the same total enthalpy change.

Statement:

Hess's law of constant heat summation states that the total enthalpy change (heat change) accompanying a chemical reaction is the same whether the reaction takes place in a single step or in several steps, provided the initial and final states (and conditions of temperature and pressure) are the same.

Explanation:

Enthalpy (H) is a state function, i.e. its value depends only on the state of the system, not on the path followed. Therefore the change in enthalpy (delta H) between the same reactants and products is fixed, regardless of the route. This allows enthalpy changes of reactions that are difficult to measure directly to be calculated by adding up the enthalpy changes of individual steps (thermochemical equations can be added, subtracted or multiplied like algebraic equations).

Example — formation of carbon dioxide:

Carbon can be converted to CO2 in two ways:

Path 1 (direct, one step):

C (s) + O2 (g) -> CO2 (g); delta H = -393.5 kJ/mol

Path 2 (two steps):

Step 1: C (s) + (1/2) O2 (g) -> CO (g); delta H1 = -110.5 kJ/mol …

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