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Why do less stable molecules release more energy?

Posted on November 25, 2022 by Author

Table of Contents

  • 1 Why do less stable molecules release more energy?
  • 2 Is more exothermic more stable?
  • 3 Do the reactants in an exothermic reaction have a higher or lower energy than the products?
  • 4 Do more stable molecules release more energy?
  • 5 When the reactants have less enthalpy than the products then?
  • 6 Why do products have less energy than reactants?

Why do less stable molecules release more energy?

If you mean that two reactions are in the same class or family (e.g. nitration or hydrolysis), then the less stable molecule is a reactant that starts off with a higher potential energy (chemical energy, if you will) and upon reaction will release greater amount of energy to arrive at the product of the reaction.

Is more exothermic more stable?

In an exothermic reaction, the reactants have a relatively high quantity of energy compared to the products. Since the energy of the system decreases during an exothermic reaction, the products of the system are more stable than the reactants.

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Are the products more stable than the reactants in an exothermic reaction?

In the case of an exothermic reaction, the reactants are at a higher energy level as compared to the products, as shown below in the energy diagram. In other words, the products are more stable than the reactants.

Do the reactants in an exothermic reaction have a higher or lower energy than the products?

In an exothermic reaction, the products are at a lower energy than the reactants. The difference between the energy of the reactants and the energy of the products is called the enthalpy change (∆H) of the reaction. In an endothermic reaction, the products are at a higher energy than the reactants.

Do more stable molecules release more energy?

The closer to the nucleus an electron is, the more stable it is, the more energy is released to remove it.

Does more stable mean less energy?

A molecule will be stable if there are more attractive forces and less repulsive forces. Attractive forces lower the potential energy of the molecule and repulsive forces increase the potential energy of the molecule.

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When the reactants have less enthalpy than the products then?

In exothermic reactions, the products have less enthalpy than the reactants, and as a result, an exothermic reaction is said to have a negative enthalpy of reaction. This means that the energy required to break the bonds in the reactants is less than the energy released when new bonds form in the products.

Why do products have less energy than reactants?

Explanation: In an endothermic reaction, the reaction mixture absorbs heat from the surroundings. In an exothermic reaction, the reaction mixture releases heat to the surroundings. Therefore, the products will have a lower energy than the reactants and ΔH will be negative.

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