Heat of Formation Table for Common Compounds

Gas welding with oxygen and acetylene

Dr. Helmenstine holds a Ph.D. in biomedical sciences and is a science writer, educator, and consultant. She has taught science courses at the high school, college, and graduate levels.

Updated on July 31, 2024

Below is a heat of formation table for a variety of common compounds. As you can see, most heats of formation are negative quantities, which implies that the formation of a compound from its elements is usually an exothermic process.

Also called standard enthalpy of formation, the molar heat of formation of a compound (ΔHf) is equal to its enthalpy change (ΔH) when one mole of a compound is formed at 25 degrees Celsius and one atom from elements in their stable form. You need to know the values of the heat of formation to calculate enthalpy, as well as for other thermochemistry problems.

Table of Heats of Formation

Reference: Masterton, Slowinski, Stanitski, Chemical Principles, CBS College Publishing, 1983.

Points to Remember for Enthalpy Calculations

When using this heat of formation table for enthalpy calculations, remember the following:

Sample Heat of Formation Problem

As an example, heat of formation values are used to find the heat of reaction for acetylene combustion:

1: Check to Make Sure the Equation Is Balanced

You'll be unable to calculate enthalpy change if the equation isn't balanced. If you're unable to get a correct answer to a problem, it's a good idea to go back and check the equation. There are many free online equation-balancing programs that can check your work.

2: Use Standard Heats of Formation for the Products

ΔHºf CO2 = -393.5 kJ/mole

ΔHºf H2O = -241.8 kJ/mole

3: Multiply These Values by the Stoichiometric Coefficient

In this case, the value is four for carbon dioxide and two for water, based on the numbers of moles in the balanced equation:

vpΔHºf CO2 = 4 mol (-393.5 kJ/mole) = -1574 kJ

vpΔHºf H2O = 2 mol ( -241.8 kJ/mole) = -483.6 kJ

4: Add the Values to Get the Sum of the Products

Sum of products (Σ vpΔHºf(products)) = (-1574 kJ) + (-483.6 kJ) = -2057.6 kJ

5: Find Enthalpies of the Reactants

As with the products, use the standard heat of formation table values to multiply each by the stoichiometric coefficient, and add them together to get the sum of the reactants.

vpΔHºf C2H2 = 2 mol (+227 kJ/mole) = +454 kJ

ΔHºf O2 = 0.00 kJ/mole

vpΔHºf O2 = 5 mol ( 0.00 kJ/mole)= 0.00 kJ

Sum of reactants (Δ vrΔHºf(reactants)) = (+454 kJ) + (0.00 kJ) = +454 kJ

6: Calculate the Heat of Reaction by Plugging the Values Into the Formula

ΔHº = Δ vpΔHºf(products) - vrΔHºf(reactants)

ΔHº = -2057.6 kJ - 454 kJ

7: Check the Number of Significant Digits in Your Answer

Cite this Article Your Citation

Helmenstine, Anne Marie, Ph.D. "Heat of Formation Table for Common Compounds." ThoughtCo, Aug. 1, 2024, thoughtco.com/common-compound-heat-of-formation-table-609253. Helmenstine, Anne Marie, Ph.D. (2024, August 1). Heat of Formation Table for Common Compounds. Retrieved from https://www.thoughtco.com/common-compound-heat-of-formation-table-609253 Helmenstine, Anne Marie, Ph.D. "Heat of Formation Table for Common Compounds." ThoughtCo. https://www.thoughtco.com/common-compound-heat-of-formation-table-609253 (accessed September 12, 2024).

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