Measuring $ΔH$ tells us how much energy is given out or taken in by a reaction, which is vital for industrial design, energy-efficient processes, and understanding biological reactions like metabolism.
Energy Profile Diagram – Exothermic Reaction
Features:
Reactants start at a higher energy than products.
The curve rises to a peak → this is the activation energy, $E_a$.
The curve then falls to the product energy level.
$\Delta H$ (enthalpy change):
The vertical difference between the reactant and product levels.
For an exothermic reaction, products are lower than reactants → $\Delta H$ is negative.
Energy Profile Diagram – Endothermic Reaction
Features:
Reactants start at a lower energy than products.
The curve rises to a peak (activation energy, $E_a$).
The products end at a higher energy than the reactants.
$\Delta H$ (enthalpy change):
The vertical difference between reactants and products.
For an endothermic reaction, products are higher than reactants → $\Delta H$ is positive.
Note
The activation energy ($E_a$) is labelled in both diagrams as the energy from the reactant level to the peak.
Why Does Enthalpy Change Occur?
In any reaction:
Bonds in reactants must be broken → this requires energy.
New bonds form in products → this releases energy.
The enthalpy change depends on the balance between:
Energy absorbed to break bonds.
Energy released when new bonds form.
If more energy is released than absorbed → reaction is exothermic ($\Delta H < 0$).
If more energy is absorbed than released → reaction is endothermic ($\Delta H > 0$).
Analogy
A spring
A compressed spring has more stored energy (like high-energy reactants).
When it is released, energy is given out (like an exothermic reaction).
Pulling a spring apart and holding it stretched requires continuous energy input (like an endothermic process).
Note
Not all reactions cause big temperature changes. Some, especially in dilute solution, may only cause small changes that need sensitive thermometers to detect.
Everyday Examples – Where Do We See These Energy Changes?