Balancing chemical equations - How to Balance Chemical Equations Easily (2 Methods + Steps) (2024)

Balancing chemical equations involves the addition of stoichiometric coefficients to the reactants and products. This is important because a chemical equation must obey the law of conservation of mass and the law of constant proportions, i.e. the same number of atoms of each element must exist on the reactant side and the product side of the equation.

Two quick and easy methods of balancing a chemical equation are discussed in this article. The first method is the traditional balancing method and the second one is the algebraic balancing method.

Table of Content

  • Related Terminology
  • Chemical Equation
  • Stoichiometric Coefficient
  • The Traditional Balancing Method
  • The Algebraic Balancing Method
  • Solved Examples

Related Terminology

Chemical Equation

  • A chemical equation is a symbolic representation of a chemical reaction in which the reactants and products are denoted by their respective chemical formulae.
  • An example of a chemical equation is 2H2 + O2 → 2H2O which describes the reaction between hydrogen and oxygen to form water
  • The reactant side is the part of the chemical equation to the left of the ‘→’ symbol whereas the product side is the part to the right of the arrow symbol.

Stoichiometric Coefficient

  • A stoichiometric coefficient describes the total number of molecules of a chemical species that participate in a chemical reaction.
  • It provides a ratio between the reacting species and the products formed in the reaction.
  • In the reaction described by the equation CH4 + 2O2 → CO2 + 2H2O, the stoichiometric coefficient of O2 and H2O is 2 whereas that of CH4 and CO2 is 1.
  • The total number of atoms of an element present in a species (in a balanced chemical equation) is equal to the product of the stoichiometric coefficient and the number of atoms of the element in one molecule of the species.
  • For example, the total number of oxygen atoms in the reacting species ‘2O2’ is 4.
  • While balancing chemical equations, stoichiometric coefficients are assigned in a manner that balances the total number of atoms of an element on the reactant and product side.

The Traditional Balancing Method

The first step that must be followed while balancing chemical equations is to obtain the complete unbalanced equation. In order to illustrate this method, the combustion reaction between propane and oxygen is taken as an example.

Step 1

  • The unbalanced equation must be obtained from the chemical formulae of the reactants and the products (if it is not already provided).
  • The chemical formula of propane is C3H8. It burns with oxygen (O2) to form carbon dioxide (CO2) and water (H2O)
  • The unbalanced chemical equation can be written as C3H8 + O2 → CO2 + H2O

Step 2

The total number of atoms of each element on the reactant side and the product side must be compared. For this example, the number of atoms on each side can be tabulated as follows.

Chemical Equation: C3H8 + O2 → CO2 + H2O
Reactant SideProduct Side
3 Carbon atoms from C3H81 Carbon atom from CO2
8 Hydrogen atoms from C3H82 Hydrogen atoms from H2O
2 Oxygen atoms from O23 Oxygen atoms, 2 from CO2 and 1 from H2O

Step 3

  • Now, stoichiometric coefficients are added to molecules containing an element which has a different number of atoms in the reactant side and the product side.
  • The coefficient must balance the number of atoms on each side.
  • Generally, the stoichiometric coefficients are assigned to hydrogen and oxygen atoms last.
  • Now, the number of atoms of the elements on the reactant and product side must be updated.
  • It is important to note that the number of atoms of an element in one species must be obtained by multiplying the stoichiometric coefficient with the total number of atoms of that element present in 1 molecule of the species.
  • For example, when the coefficient 3 is assigned to the CO2 molecule, the total number of oxygen atoms in CO2 becomes 6. In this example, the coefficient is first assigned to carbon, as tabulated below.
Chemical Equation: C3H8 + O23CO2 + H2O
Reactant SideProduct Side
3 Carbon atoms from C3H83 Carbon atoms from CO2
8 Hydrogen atoms from C3H82 Hydrogen atoms from H2O
2 Oxygen atoms from O27 Oxygen atoms, 6 from CO2 and 1 from H2O

Step 4

Step 3 is repeated until all the number of atoms of the reacting elements are equal on the reactant and product side. In this example, hydrogen is balanced next. The chemical equation is transformed as follows.

Chemical Equation: C3H8 + O23CO2 + 4H2O
Reactant SideProduct Side
3 Carbon atoms from C3H83 Carbon atoms from CO2
8 Hydrogen atoms from C3H88 Hydrogen atoms from H2O
2 Oxygen atoms from O210 Oxygen atoms, 6 from CO2 and 4 from H2O

Now that the hydrogen atoms are balanced, the next element to be balanced is oxygen. There are 10 oxygen atoms on the product side, implying that the reactant side must also contain 10 oxygen atoms.

Each O2 molecule contains 2 oxygen atoms. Therefore, the stoichiometric coefficient that must be assigned to the O2 molecule is 5. The updated chemical equation is tabulated below.

Chemical Equation: C3H8 + 5O23CO2 + 4H2O
Reactant SideProduct Side
3 Carbon atoms from C3H83 Carbon atoms from CO2
8 Hydrogen atoms from C3H88 Hydrogen atoms from H2O
10 Oxygen atoms from O210 Oxygen atoms, 6 from CO2 and 4 from H2O

Step 5

  • Once all the individual elements are balanced, the total number of atoms of each element on the reactant and product side are compared once again.
  • If there are no inequalities, the chemical equation is said to be balanced.
  • In this example, every element now has an equal number of atoms in the reactant and product side.
  • Therefore, the balanced chemical equation is C3H8 + 5O2 → 3CO2 + 4H2O.

The Algebraic Balancing Method

This method of balancing chemical equations involves assigning algebraic variables as stoichiometric coefficients to each species in the unbalanced chemical equation. These variables are used in mathematical equations and are solved to obtain the values of each stoichiometric coefficient. In order to better explain this method, the reaction between glucose and oxygen that yields carbon dioxide and water has been considered as an example.

Step 1

  • The unbalanced chemical equation must be obtained by writing the chemical formulae of the reactants and the products.
  • In this example, the reactants are glucose (C6H12O6) and oxygen (O2) and the products are carbon dioxide (CO2) and water (H2O)
  • The unbalanced chemical equation is C6H12O6 + O2 → CO2 + H2O

Step 2

Now, algebraic variables are assigned to each species (as stoichiometric coefficients) in the unbalanced chemical equation. In this example, the equation can be written as follows.

aC6H12O6 + bO2cCO2 + dH2O

Now, a set of equations must be formulated (between the reactant and product side) in order to balance each element in the reaction. In this example, the following equations can be formed.

The equation for Carbon

  • On the reactant side, ‘a’ molecules of C6H12O6 will contain ‘6a’ carbon atoms.
  • On the product side, ‘c’ molecules of CO2 will contain ‘c’ carbon atoms.
  • In this equation, the only species containing carbon are C6H12O6 and CO2.

Therefore, the following equation can be formulated for carbon: 6a = c

The equation for Hydrogen

  • The species that contain hydrogen in this equation are C6H12O6 and H2
  • ‘a’ molecules of C6H12O6 contains ‘12a’ hydrogen atoms whereas ‘d’ H2O molecules will contain ‘2d’ hydrogen atoms.
  • Therefore, the equation for hydrogen becomes 12a = 2d.

Simplifying this equation (by dividing both sides by 2), the equation becomes:

6a = d

The equation for Oxygen

Every species in this chemical equation contains oxygen. Therefore, the following relations can be made to obtain the equation for oxygen:

  • For ‘a’ molecules of C6H12O6, there exist ‘6a’ oxygen atoms.
  • ‘b’ molecules of O2 contain a total of ‘2b’ oxygens.
  • ‘c’ molecules of CO2 contain ‘2c’ number of oxygen atoms.
  • ‘d’ molecules of H2O hold ‘d’ oxygen atoms.

Therefore, the equation for oxygen can be written as:

6a + 2b = 2c+ d

Step 3

The equations for each element are listed together to form a system of equations. In this example, the system of equations is as follows:

6a = c (for carbon); 6a = d (for hydrogen); 6a + 2b = 2c + d (for oxygen)

This system of equations can have multiple solutions, but the solution with minimal values of the variables is required. To obtain this solution, a value is assigned to one of the coefficients. In this case, the value of a is assumed to be 1. Therefore, the system of equations is transformed as follows:

a = 1

c = 6a = 6*1 = 6

d = 6a = 6

Substituting the values of a,c, and d in the equation 6a + 2b = 2c + d, the value of ‘b’ can be obtained as follows:

6*1 + 2b = 2*6 + 6

2b = 12; b = 6

It is important to note that these equations must be solved in a manner that each variable is a positive integer. If fractional values are obtained, the lowest common denominator between all the variables must be multiplied with each variable. This is necessary because the variables hold the values of the stoichiometric coefficients, which must be a positive integer.

Step 4

  • Now that the smallest value of each variable is obtained, their values can be substituted into the chemical equation obtained in step 2.
  • Therefore, aC6H12O6 + bO2 → cCO2 + dH2O becomes: C6H12O6 + 6O2 → 6CO2 + 6H2O
  • Thus, the balanced chemical equation is obtained.

The algebraic method of balancing chemical equations is considered to be more efficient than the traditional method. However, it can yield fractional values for the stoichiometric coefficients, which must then be converted into integers.

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Solved Examples

Some examples describing the balancing of chemical equations are provided in this subsection. These equations have been balanced using both the methods described above.

Example 1

Unbalanced chemical equation: Al + O2 → Al2O3

Traditional Method

Following the traditional method, the reaction can be balanced as follows:

Equation: Al + O2 → Al2O3
Reactant SideProduct Side
1 Aluminium atom2 Aluminium Atoms
2 Oxygen atoms3 Oxygen atoms

First, the aluminium atoms are balanced. The equation becomes 2Al + O2 → Al2O3

Now, the oxygen atoms must be balanced, there are two oxygen atoms on the reactant side and 3 on the product side. Therefore, there must be 3 O2 molecules that yield 2 Al2O3 atoms. The chemical equation is transformed into 2Al + 3O2 → 2Al2O3

Since the number of aluminium atoms on the product side has doubled, so must the number on the reactant side.

Equation: 4Al + 3O2 → 2Al2O3
Reactant SideProduct Side
4 Aluminium Atoms4 Aluminium Atoms
6 Oxygen Atoms6 Oxygen Atoms

Since each element is balanced, the balanced chemical equation is found to be 4Al + 3O2 → 2Al2O3

Algebraic Method

Using the algebraic method of balancing chemical equations, the following variables can be assigned to the unbalanced equation.

aAl + bO2cAl2O3

The equation for Aluminum: a = 2c

The equation for Oxygen: 2b = 3c

Assuming a = 1, we get:

c = a/2 ; c = 1/2

2b = 3*(½) = 3/2 ; b = ¾

Since fractional values of b and c are obtained, the lowest common denominator between the variables a, b, and c must be found and multiplied with each variable. Since the lowest common denominator is 4, each of the variables must be multiplied by 4.

Therefore, a = 4*1 = 4 ; b = (¾)*4 = 3 ; c = (½)*4 = 2

Substituting the values of a, b, and c in the unbalanced equation, the following balanced chemical equation is obtained.

4Al + 3O2 → 2Al2O3

Example 2

Unbalanced chemical equation: N2 + H2 → NH3

Traditional Method

In this reaction, the nitrogen atoms are balanced first. The reactant side has two nitrogen atoms, implying that 2 molecules of NH3 must be formed for each N2 molecule.

Chemical Equation: N2 + H2 → 2NH3
Reactant SideProduct Side
2 nitrogen atoms2 nitrogen atoms
2 hydrogen atoms6 hydrogen atoms

Each H2 molecule contains 2 hydrogen atoms. In order to balance the number of hydrogen atoms in the equation, the total number of hydrogen atoms must be equal to 6. Therefore, the stoichiometric coefficient that must be assigned to hydrogen is 3.

Chemical Equation: N2 + 3H2 → 2NH3
Reactant SideProduct Side
2 nitrogen atoms2 nitrogen atoms
6 hydrogen atoms6 hydrogen atoms

Thus, the balanced chemical equation is N2 + 3H2 → 2NH3

Algebraic Method

The variables a, b, and c must be assigned to N2, H2, and NH3 respectively. The chemical equation can be written as:

aN2 + bH2cNH3

The equation for nitrogen: 2a = c

The equation for hydrogen: 2b = 3c

Assuming a = 1, the values of b and c can be obtained as follows.

c = 2a = 2

2b = 3c = 3*2 = 6; b = 6/2 = 3

Since a, b, and c have no common multiples, they can be substituted into the equation as follows.

N2 + 3H2 → 2NH3

This is the balanced form of the given chemical equation.

Exercises

In order to practice different methods of balancing chemical equations, the following unbalanced equations can be worked on.

  1. FeCl3 + NaOH → NaCl + Fe(OH)3
  2. Zn + HCl → ZnCl2 + H2
  3. P2O5 + H2O → H3PO4
  4. FeSO4 + NaOH → Na2SO4 + Fe(OH)2
  5. Mg + HCl → MgCl2 + H2

To learn more about balancing chemical equations and other related concepts, register with BYJU’S and download the mobile application on your smartphone.

Access NCERT Solutions for Class 10 Chapter 1 Chemical Reactions and Equations here.

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Frequently Asked Questions – FAQs

Q1

What is the balanced form of the reaction between calcium hydroxide and nitric acid? [Ca(OH)2 + HNO3→ Ca(NO3)2 + H2O]

The balanced chemical equation is:Ca(OH)2 + 2HNO3→ Ca(NO3)2 + 2H2O

Q2

If water is reacted with oxygen to form hydrogen peroxide, what would be the balanced chemical equation for the reaction?

The balanced chemical equation is: 2H2O + O2→ 2H2O2

Q3

What is the balanced chemical equation for the reaction between ferric chloride and sodium hydroxide?

The chemical formula of ferric chloride is FeCl3 and that of sodium hydroxide is NaOH. The unbalanced chemical equation is:

FeCl3 + NaOH→ Fe(OH)3 + NaCl

balancing the number of oxygen and hydrogen atoms first and then balancing the number of sodium atoms, the balanced chemical equation is found to be:

FeCl3 + 3NaOH→ Fe(OH)3 + 3NaCl

Q4

What is the most crucial thing about balancing chemical equations?

The most important thing about balancing chemical equations is to satisfy the law of conservation of mass, i.e. “Total mass of the products is equal to the total mass of all the reactants”.

Q5

What is a chemical equation?

A chemical equation is a symbolic indication of a chemical reaction in which the reactants and products are indicated by their respective chemical formulae.
Example: Reaction between hydrogen and oxygen to form water: 2 H2 + O2 → 2 H2O.

Q6

What is a stoichiometric coefficient?

A stoichiometric coefficient is the total number of molecules of a chemical species participating in a chemical reaction. In the reaction described by the equation 2 H2 + O2 → 2 H2O, the stoichiometric coefficient of H2 and H2O is 2, whereas that of O2 is 1.

Q7

Do charges matter when balancing a chemical equation?

Yes, charges matter while balancing a chemical equation. It should be the same on each side of the equation.

Q8

What happens if a chemical equation is not balanced?

If a chemical equation is not balanced, it will violate the law of conservation of mass. It will indicate that either mass is created or destroyed, which is impossible.

Q9

Write a balanced equation for photosynthesis.

The balanced equation for photosynthesis is
6 CO2 + 6 H2O → C6H12O6 + 6 O2.

Q10

Write a balanced equation for molecular dinitrogen and dioxygen reaction to form dinitrogen pentoxide.

The balanced equation for molecular dinitrogen and dioxygen reaction to form dinitrogen pentoxide is
2 N2 + 5 O2 → 2 N2O5.

Balancing chemical equations - How to Balance Chemical Equations Easily (2 Methods + Steps) (2024)

FAQs

Balancing chemical equations - How to Balance Chemical Equations Easily (2 Methods + Steps)? ›

So how do you go about balancing an equation? These are the steps: First, count the atoms on each side. Second, change the coefficient of one of the substances. Third, count the numbers of atoms again and, from there, repeat steps two and three until you've balanced the equation.

What are the 5 steps for balancing a chemical equation? ›

  • Steps to balance the chemical equation :-
  • Step 1: Writing the imbalanced chemical equation:-
  • Step 2: Comparing the number of atoms on both reactant and product side :-
  • Step 3: Balancing the Carbon atoms:-
  • Step 4: Balancing the Hydrogen and Oxygen atoms:-
  • Step 5: Balanced chemical equation:-

What is the method of balancing chemical? ›

Hit and trial method is used for balancing simple chemical equations. In this method, coefficients before the symbols/formulae of the reactants and products are adjusted in such a way that the total number of atoms of each element on both the sides becomes equal.

What are two ways to balance a chemical equation? ›

These are the steps: First, count the atoms on each side. Second, change the coefficient of one of the substances. Third, count the numbers of atoms again and, from there, repeat steps two and three until you've balanced the equation.

What are the 3 rules for balancing equations? ›

To balance equations on your own, follow these simple rules:
  • Check that all the formulae in the equation are correct.
  • Deal with only one element at a time.
  • Balancing is adding BIG numbers. You cannot change any of the small numbers in a chemical formula. ...
  • Check each element again and repeat step 3 again if needed.

What are the four steps in chemical equation? ›

Following are different steps of writing a chemical equation:
  • Identify the type of reactant and product. ...
  • Write the chemical formula for each of the reactants and products. ...
  • Count the number of each type of atom in reactants and products. ...
  • Balance the equation.

What are the 5 types of chemical reactions? ›

This becomes much easier for students to do when they learn the pattern of 5 basic categories of chemical reactions: synthesis, decomposition, single replacement, double replacement, and combustion.

What are the two types of balancing methods? ›

There are two basic types of balancing that can be carried out on your machinery – Static and Dynamic: Static balancing (knife edging)

Why do we balance chemical equations? ›

The chemical equation needs to be balanced so that it follows the law of conservation of mass. A balanced chemical equation occurs when the number of the different atoms of elements in the reactants side is equal to that of the products side.

What are the 2 types of chemical equations? ›

Table of Contents
Types of Chemical ReactionsExplanationGeneral Reaction
Combination reactionTwo or more compounds combine to form one compound.A + B → AB
Decomposition reactionThe opposite of a combination reaction – a complex molecule breaks down to make simpler ones.AB → A + B
4 more rows

What is balancing equations in math? ›

A balanced equation is an equation where both sides are equal to the same amount. The answer to the expression on the left side of the equals sign (=) should be equal to the value on the right side of the equals sign.

What are the rules of balance? ›

An object can be balanced if it's supported directly under its centre of gravity. To balance a ruler horizontally on a finger, the finger must be directly under the ruler's centre of gravity.

How do we balance a chemical equation 4 marks? ›

  1. Balancing chemical equations:
  2. By using the following steps we can balance the equation:
  3. Step 1: Writing down the Unbalanced Chemical Equation.
  4. Step 2: Write down the number of atoms.
  5. Step 3: Add Coefficients To Balance the Mass in a Chemical Equation.

What is hit and trial method? ›

Definition hit and trial method

This method is also called the trial and error method, or inspection method. In this method, the coefficient before the formulae or symbols of the reactants and products are adjusted in such a way that the total number of atoms of each element only on both sides becomes equal.

What are the 3 parts of a chemical equation? ›

  • The three main parts of a chemical reaction are reactants, arrow, and products.
  • Reactants: During a reaction, these compounds or elements combine and undergo some chemical changes. ...
  • Arrow: In other words, this indicates the formation of products from the reactant, as well as separating the reactant and product.

What are 20 examples of chemical reactions? ›

  • burning of paper.
  • cooking of food.
  • burning of wood.
  • ripening of fruits.
  • rotting of fruits.
  • frying egg.
  • rusting of iron.
  • mixing acid and base.

Why is it important to study environmental chemistry? ›

Importance of Environmental Chemistry

It helps in understanding the causes, effects, and solutions of different pollutions like air, water, noise, and soil pollution. The impact of different chemical compounds on the environment is easily understood with the help of environmental chemistry.

What is a chemical reaction in natural science? ›

This is exactly what a chemical reaction is: a rearrangement of atoms to turn one or more compounds into new compounds. Any time atoms separate from each other and recombine into different combinations of atoms, we say a chemical reaction has occurred.

What is a balanced equation for kids? ›

Balancing equations are like a game of Topple. Both sides of the equation must have the same number of atoms of each element. You can always add or change coefficients to balance the atoms, but you can never change or add subscripts.

What is the general form of a synthesis reaction? ›

Summary. A synthesis reaction occurs when two or more reactants combine to form a single product. This type of reaction is represented by the general equation: A + B → AB. An example of a synthesis reaction is the combination of sodium (Na) and chlorine (Cl) to produce sodium chloride (NaCl).

What is simple chemical equation? ›

A chemical equation is a graphic representation that shows how chemical reactions produce products. Such equations format chemical substances; for example, instead of writing sodium chloride, NaCl is written. Coefficients are used to show the number of moles of reactants and products.

How is balancing done? ›

In the case of a narrow wheel, balancing simply involves moving the center of gravity to the centre of rotation. For a system to be in complete balance both force and couple polygons should be close in order to prevent the effect of centrifugal force.

What are the 3 types of balance? ›

There are three different types of balance: symmetrical, asymmetrical and radial. The human figure in this diagram is symmetrically balanced; the same on the left and right sides of a central axis.

What are the different balances? ›

There are actually three types of balances: the equal arm balance, the unequal arm balance, and the spring balance. The equal arm balance is named such because the distance between the pivot and each end of the bar are equidistant, or separated by an equal length from the pivot point.

What are 2 things you can never do to balance a reaction? ›

- Only change the coefficients (these are the numbers in front substances). - Never change the subscripts (the small numbers after elements).

Which equation describes a single replacement reaction? ›

A simple equation that represents a single-replacement reaction is: AB + C -> A + BC.

Which best describes a chemical reaction? ›

A chemical reaction is a process in which one or more substances, also called reactants, are converted to one or more different substances, known as products. Substances are either chemical elements or compounds.

What's the easiest way to balance a chemical equation quizlet? ›

1) Determine number of atoms for each element. 2) Pick an element that is not equal on both sides of the equation. 3) Add a coefficient in front of the formula with that element and adjust your counts. 5) Continue adding coefficients to get the same number of atoms of each element on each side.

What is the hardest chemical equation to balance? ›

Expert-Verified Answer

Zinc reacts with nitric acid to form zinc nitrate along with water and nitrous oxide which is also called laughing gas. In this reaction, four moles of zinc reacts with ten moles nitric acid to form four moles of zinc nitrate along with five moles of water and one mole of nitrous oxide.

Which of the following is correct for a balanced chemical equation? ›

In a balanced equation, the number of atoms of each element should be equal on both the sides. The physical state of a reactant or product is indicated by a symbol written in brackets.

What can you never do to balance an equation? ›

1: Balancing Equations. You cannot change subscripts in a chemical formula to balance a chemical equation; you can change only the coefficients. Changing subscripts changes the ratios of atoms in the molecule and the resulting chemical properties.

How do you balance a large equation? ›

Basic steps for balancing equations
  1. Count all the elements on both sides of the reaction. ...
  2. Start by balancing elements that only appear in one molecule on each side. ...
  3. Double check the balance and note the new count of each element on both sides of the equation.
  4. Balance the remaining elements.

What are 5 examples of a chemical equation? ›

Examples of Simple Chemical Reactions
  • hydrogen + oxygen ---> water.
  • iron + oxygen ---> rust.
  • potassium and chlorine gas ---> chloride.
  • lime + carbon dioxide ---> calcium carbonate (used to strengthen masonry)
  • water + carbon dioxide + light ---> glucose and oxygen (photosynthesis)
May 18, 2020

How do you balance chemical equations and reaction types? ›

Basic techniques for balancing equations
  1. Identify reactants and products. Be sure to write correct formulas. Never change the subscripts in the formulas when balancing an equation. ...
  2. Write Unbalanced Skeletal Equation. Write Reactants to left of arow. ...
  3. Identify Type of Reaction. Single Displacement.
Jul 7, 2019

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