9701 · 5.2
Hess's law — FAQ
Frequently asked questions for 9701 Hess's law. Direct answers first, then deeper explanation — then practise with marking.
Why is the enthalpy of formation of an element zero?
The standard enthalpy of formation is the energy change to form one mole of a substance from its elements in their standard states. To 'form' an element like O₂(g) from its standard state (which is O₂(g)), there is no change, so the enthalpy change is zero by definition.
What's the difference between the cycles for formation and combustion data?
For formation data, the cycle's intermediate step is the constituent elements, and the arrows point 'up' from the elements to the reactants and products. For combustion data, the intermediate step is the combustion products (CO₂ and H₂O), and the arrows point 'down' from the reactants and products to these products.
Can I use a mix of formation and combustion data in one calculation?
While theoretically possible if you construct a very complex cycle, it is not a standard method and is highly prone to error. For A-Level Chemistry, you will always be given a consistent set of data – either all formation or all combustion values needed for the calculation.
What if a substance in the equation is an element, like in the hydrogenation of ethene?
When using formation data (), the value for the element (e.g., H₂(g)) is zero. When using combustion data (), the element will have a non-zero value (e.g., the enthalpy of combustion of hydrogen is -286 kJ mol⁻¹), which you must include in your calculation.