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The enthalpy change of a reaction does not depend on
  • a)
    state of reactants and products
  • b)
    nature of reactants and products
  • c)
    different intermediate reactions
  • d)
    initial and final enthalpy change of reaction
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
The enthalpy change of a reaction does not depend ona)state of reactan...
Dependence of Enthalpy Change on Different Intermediate Reactions
One of the key principles in thermodynamics is that the enthalpy change of a reaction is independent of the pathway taken to reach the final products from the initial reactants. This means that the enthalpy change remains constant regardless of the intermediate reactions that may occur during the overall reaction process.

State of Reactants and Products:
The enthalpy change of a reaction is solely dependent on the initial and final states of the reactants and products, regardless of how the reaction proceeds. The overall enthalpy change is determined by the difference in energy between the products and reactants.

Nature of Reactants and Products:
Similarly, the enthalpy change of a reaction is not influenced by the specific nature or properties of the reactants and products involved. As long as the initial and final states are known, the enthalpy change can be calculated.

Different Intermediate Reactions:
The enthalpy change of a reaction does not depend on any intermediate reactions that may occur during the process. Even if the reaction proceeds through multiple steps or involves various intermediates, the overall enthalpy change remains constant.

Initial and Final Enthalpy Change of Reaction:
The enthalpy change of a reaction is determined by the difference in enthalpy between the initial and final states of the reactants and products. The enthalpy change is independent of the specific pathway or intermediate reactions involved in reaching the final products.
In conclusion, the enthalpy change of a reaction is a fundamental property that is independent of the intermediate reactions that may occur during the process. This principle is essential in thermodynamics and allows for the accurate determination of energy changes in chemical reactions.
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