Module 2: Foundations in chemistryCompounds, formulae and equations (2.1.2)

Compounds, formulae and equations (2.1.2)

Writing ionic formulae and balancing chemical equations.
2 min

To determine the formula for an ionic compound the following guidelines should be observed:

  • There should be no overall charge (the number of positive and negative charges should cancel to create a neutral uncharged ionic compound).
  • The positive ion (cation) is always placed first (on the left-hand side) and the negative ion (anion) is always on the right-hand side.
  • Brackets are used to keep the component parts of a polyatomic ion together, for example
    or
  • Subscript numbers multiply the ion on the left of the bracketed contents.
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The charge on a simple ion must reflect the proximity of the atom to the nearest noble gas.

The charge value is equal to the number of electrons that must be lost (forming a positive ion) or gained (forming a negative ion) to achieve the nearest noble gas configuration.

A table displaying the ion formation of different groups in the periodic table. Group 0 (Noble gases) does not form ions, while Groups 1 to 3 show positive ion formation with increasing charges from +1 to +3. Groups 5 to 7 indicate negative ion formation with charges ranging from -1 to -3. Group 4 is noted as not ionic.
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You are expected to be able to recall the formulae of the following polyatomic ions:

A table displaying cations and anions. The cations listed are ammonium (NH4+), silver (Ag+), and zinc (Zn2+). The anions include hydroxide (OH-), nitrate (SO3-), sulfate (SO4^2-), and carbonate (CO3^2-).
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The following non-metallic elements exist as diatomic molecules (two atoms covalently bonded together):

When referred to by the element name such as nitrogen this refers to the diatomic molecule therefore when drawing the formula should be shown as .

Oxygen, , can also be observed as ozone, .

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Some elements exist as multiple atoms covalently bonded in a single molecule, known as polyatomic molecules. The ones you are expected to recall are:

  • phosphorus:
  • sulfur: .
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Walkthrough

Identifying the formula of an ionic compound

Identifying the formula of a product from a given reaction.

The formulae for the reactant(s) are written on the left-hand side of an equation, and the right-hand side of the equation features the formulae for the product(s) of the reaction.

State symbols show the physical state of reactants and products in a chemical reaction and should be used as required.

Conservation of mass means that no atoms are created or destroyed in a chemical reaction; the total number of atoms should be the same on both sides.

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The two halves of an equation – the reactants and products – are separated by an arrow.

This shows the direction of the reaction.

Alternatively, the reversible reaction symbol is used, if the reaction does not go to completion.

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Balancing equations is a process to make sure there are the same number of atoms on each side of the symbol equation therefore obeying the law of conservation of mass.

When balancing equations ensure:

  • the only numbers changes are the coefficients. These are placed in front of the formulae
  • the formulae are not altered in any way, such as changing to to increase the number of oxygen atoms.
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To convert a balanced (stoichiometric) symbol equation into an ionic equation we must:

  • split compounds composed of aqueous ions into the individual ions, including any multiples
  • leave intact in the equation any substance that does not contain aqueous ions or is covalently bonded
  • cancel out spectator ions which appear on both sides of the equation and do not undergo any change.
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When balancing equations, we must:

  • identify the number of atoms of each element in the reactants and products
  • add the appropriate coefficient in front of the formulae to balance the number of atoms on each side
  • make sure that the final balanced equation has the same number of each type of atom on both sides.
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Question walkthrough

Writing a balanced equation

Using a description of a reaction to construct a balanced equation

Question walkthrough

Constructing a net ionic equation

Identifying and removing counterions to produce a net ionic equation

Question walkthrough

Balancing redox equations

Balance an ionic redox equation based on oxidation states, charge and H+/H2O.