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CHEMISTRY · GRADE 12

Year Summary: the six Paper 2 Chemistry topics, worked examples and a full reference sheet
CAPS-aligned · Distinction-level Notes
Chemistry · Grade 12 · Year Summary Date: TopJournal

Every distinction begins with one topic at a time.- start now

Paper 2 · Matter and materials · 35 marks
PAPER 2 · UNIT 1 · NAMING, ISOMERS & PROPERTIES ORGANIC MOLECULES

Learning outcomes · you must be able to

📖 KEY DEFINITION Organic compound: a compound built on a carbon backbone, almost always containing only carbon, hydrogen, oxygen and, in haloalkanes, one halogen. Hydrocarbon: an organic compound containing carbon and hydrogen only. Functional group: the atom, bond or small group of atoms responsible for a family of compounds' characteristic chemical and physical behaviour. Homologous series: a family of compounds sharing one general formula and one functional group, each member differing from the next by one - CH2 - unit. Structural isomers: compounds sharing the same molecular formula but differing in how their atoms are connected.

Core content · bonding rules and ways of representing a molecule

RepresentationWhat it shows
Molecular formulaElement symbols and atom counts only, e.g. C3H8 - tells you nothing about connectivity.
Structural formulaEvery atom and every bond drawn out individually.
Condensed structural formulaAtoms grouped by the carbon they attach to, most bond lines dropped, e.g. CH3CH2CH3.
General formulaThe algebraic pattern for a whole homologous series, e.g. CnH2n+2 for alkanes.

Core content · the homologous series in scope

SeriesGeneral formulaFunctional groupSuffixExample
AlkaneCnH2n+2none (all single bonds)-anepropane
AlkeneCnH2none C=C-enepropene
AlkyneCnH2n-2one C≡C-ynepropyne
HaloalkaneCnH2n+1Xone halogen (X)named as prefix1-chloropropane
AlcoholCnH2n+1OHhydroxyl, - OH-olpropan-1-ol
AldehydeCnH2nO, n≥1 - CHO on end carbon-albutanal
KetoneCnH2nO, n≥3>C=O on internal carbon-onebutan-2-one
Carboxylic acidCnH2nO2, n≥1carboxyl, - COOH-oic acidpropanoic acid
EsterCnH2nO2, n≥2 - COO - linkage-oateethyl ethanoate
⚡ MUST MEMORISE

Bonding rule: C forms 4 bonds, O forms 2, H/halogen forms 1. Aldehydes and ketones share CnH2nO and are functional isomers of each other; carboxylic acids and esters share CnH2nO2 and are functional isomers of each other. A ketone needs at least 3 carbons, since its carbonyl carbon must sit between two others; an ester needs at least 2 carbons in total.

Core content · the IUPAC naming procedure

⭐ EXAM FAVOURITE Naming a structure from its formula, or drawing a structure from an IUPAC name, is tested in almost every paper - usually as several short sub-questions spanning different homologous series in one go. Expect at least one structure with a branch that forces you to choose the longest chain carefully, and at least one isomer-identification question.

Core content · structural isomers

Isomer typeWhat stays the sameWhat differsExample pair
ChainHomologous series, functional groupHow the carbon skeleton branchesbutane vs 2-methylpropane
PositionalHomologous series, functional groupWhich carbon the group sits onpropan-1-ol vs propan-2-ol
FunctionalMolecular formula onlyWhich functional group is presentpropanal vs propanone
⚠️ COMMON MISTAKE Naming CH3CH(CH3)CH3 as "1-methylpropane" is not valid IUPAC - a methyl group on a terminal carbon simply makes the chain one carbon longer, so the compound must be renamed on its new, longer chain. The correct name is 2-methylpropane. Also common: adding a stray locant number to a carboxylic acid or aldehyde name (there is no "1-" in "ethanoic acid" or "pentanal").

Core content · intermolecular forces and physical property trends

IMF, weakest → strongestPresent inRequires
Induced dipole (dispersion)Every organic molecule; the ONLY force in alkanes, alkenes, alkynesNothing special - momentary shifts in electron distribution
Dipole-dipoleHaloalkanes, aldehydes, ketones, estersA permanent partial-positive/partial-negative end, without an O - H bond
Hydrogen bondingAlcohols, carboxylic acidsAn O - H bond on one molecule and a lone pair on a neighbouring molecule's O
Factor increases →IMF strengthBoiling/melting pointVapour pressure
Chain lengthStrongerHigherLower
BranchingWeaker (less surface contact)LowerHigher
Molecular massStrongerHigherLower
Polarity of functional groupStrongerHigherLower
🔥 FREQUENTLY TESTED A question asking you to explain why compound X has a higher boiling point than compound Y appears in almost every sitting, usually comparing two compounds of similar chain length but different functional groups, or the same series with different branching. Always name the strongest IMF present in EACH compound before comparing - never just say "X is heavier."
💡 EASY MARK "Name the strongest type of intermolecular force present in this compound" or "is this compound likely to dissolve in water" are 1-2 mark gifts once you can recognise the functional group - no calculation needed.
Worked example 1 · Naming a branched alkene

Q: Give the IUPAC name for CH3 - CH(CH3) - CH2 - CH=CH - CH3.

Functional group: one C=C → alkene, suffix -ene. Longest chain containing the double bond: 6 carbons → hex-.

Numbering from the left: the methyl branch is on C2, and the double bond starts at C4 (locant 4).

Numbering from the right: the double bond starts at C2 (locant 2), and the methyl branch is on C5.

The functional group (the double bond) gets the lower locant, so number from the right: locant 2 beats locant 4.

∴ 5-methylhex-2-ene (molecular formula C7H14)

Worked example 2 · Drawing a structure and classifying it

Q: Draw the structural formula of 3-methylbutan-2-ol and classify it as primary, secondary or tertiary.

Root but- = 4-carbon main chain. Suffix -2-ol = hydroxyl on C2. Substituent 3-methyl = methyl branch on C3.

Chain: C1(CH3) - C2(CHOH) - C3(CH(CH3)) - C4(CH3)

Structural formula: CH3 - CHOH - CH(CH3) - CH3

The carbon bonded to - OH (C2) is itself bonded to two other carbons (C1 and C3).

∴ secondary alcohol

Worked example 3 · Classifying isomer pairs

Q: State whether each pair is a chain, positional or functional isomer pair: (a) CH3CH2CH2CH2CH3 and CH3CH(CH3)CH2CH3; (b) CH3CH2CH2COOH and CH3CH(CH3)COOH; (c) CH3CH2CH2CHO and CH3COCH2CH3.

(a) Both C5H12 alkanes, same functional group (none), different carbon skeleton → chain isomers.

(b) Both C4H8O2 carboxylic acids - the - COOH group is fixed on C1 in both, so only the skeleton differs → chain isomers.

(c) Both C4H8O, but one is an aldehyde and the other a ketone, so they belong to different homologous series → functional isomers.

∴ (a) chain, (b) chain, (c) functional. Note: carboxylic acids and aldehydes can only ever produce chain isomers among themselves, never positional, since naming rule 7 fixes their functional group on C1.

Worked example 4 · Boiling point comparison (the recurring exam pattern)

Q: Compound P is pentan-1-ol, CH3CH2CH2CH2CH2OH (M ≈ 88 g·mol-1). Compound Q is hexane, CH3CH2CH2CH2CH2CH3 (M ≈ 86 g·mol-1). Predict, with reasons, which compound has the higher boiling point.

Compound P has an - OH group, so its molecules form hydrogen bonds with each other, on top of weaker induced-dipole forces.

Compound Q is a non-polar alkane - the ONLY force between its molecules is the induced-dipole (dispersion) force.

The two compounds have almost identical molecular mass, so mass cannot explain a difference - the TYPE of intermolecular force present decides the answer.

∴ Compound P (pentan-1-ol) has the higher boiling point, because hydrogen bonding between its molecules requires more energy to overcome than the induced-dipole forces between hexane molecules.

Every molecule is a sentence written in carbon - learn the grammar of functional groups and every name reads itself.- on organic naming

Why it matters: every question in this topic starts by finding the functional group, because that one step fixes the suffix, the general formula and the strongest intermolecular force at the same time. Skip it and you name the wrong chain, then explain a boiling point difference with 'it is heavier', which earns almost nothing.
🧠 ACTIVE RECALL
Which compound below is a hydrocarbon?(2)
Which of these four compounds is classified as a hydrocarbon?(2)
A hydrocarbon contains no elements besides carbon and hydrogen. Which compound below fits that description?(2)
Four compounds are listed. Three each contain at least one atom of oxygen or a halogen. Which is the exception?(2)
Select the compound that is classified purely as a hydrocarbon.(2)
The general formula CnH2n+2 describes which homologous series?(2)
A compound has 8 hydrogen atoms for every 3 carbon atoms it contains. Which homologous series does it belong to?(2)
Which general formula below matches the alkane homologous series?(2)
A saturated open-chain hydrocarbon containing only single C-C bonds follows which general formula?(2)
Butane, C4H10, belongs to a homologous series whose general formula is:(2)
Which functional group corresponds to the suffix "-oic acid"?(2)
The suffix "-oate" in an IUPAC name signals which functional group?(2)
A compound named "butanoic acid" must contain which functional group?(2)
Which suffix would you attach to a compound whose functional group is -COOH?(2)
Identify the functional group present in a compound ending in "-anoic acid":(2)
Propan-1-ol and propan-2-ol are an example of:(2)
Butan-1-ol and butan-2-ol are both C4H10O alcohols but the hydroxyl group sits on a different carbon in each. What relationship do they have?(2)
But-1-ene and but-2-ene share the molecular formula C4H8 and the same functional group, but the double bond starts on a different carbon in each. This makes them:(2)
Pentan-2-ol and pentan-3-ol have the same molecular formula and the same functional group, but the -OH sits on C2 in one and C3 in the other. This pair is best classified as:(2)
Two alcohols share the formula C5H12O and the hydroxyl group, but differ in which carbon carries it. This is an example of:(2)
Which of these compounds can hydrogen-bond with other molecules of itself?(2)
Which compound below has an O-H bond that allows it to hydrogen-bond with a neighbouring molecule of the same substance?(2)
Molecules of which compound can form hydrogen bonds with each other?(2)
Which of these four compounds lacks the O-H bond needed to hydrogen-bond with its own kind?(2)
Self-hydrogen-bonding between identical molecules requires an O-H bond. Which compound below has one?(2)
As branching increases in an alkane of the same molecular formula, its boiling point generally:(2)
Pentane and 2,2-dimethylpropane share the molecular formula C5H12, but the second is far more branched. Which one has the lower boiling point?(2)
Two alkane isomers share a molecular formula. The more branched isomer will generally have:(2)
Why does a highly branched alkane generally boil at a lower temperature than its straight-chain isomer?(2)
Comparing hexane with its most branched isomer, 2,2-dimethylbutane, which statement is correct?(2)
Explain, using intermolecular forces, why butan-1-ol has a considerably higher boiling point than butane, even though the two molecules have a similar number of carbon atoms.(4)
Give the IUPAC name for CH3CH2CH2CH2OH, then write the condensed structural formula and IUPAC name of ONE positional isomer of this compound.(5)
Explain this for a Grade 8: why does a carboxylic acid usually have an even higher boiling point than an alcohol with a similar number of carbons?
Explain to a Grade 8 why chemists always work out a compound's functional group before they try to name it.
Explain to a Grade 8 the difference between a chain isomer and a positional isomer.
Explain to a Grade 8 why you cannot just find a compound's longest carbon chain by reading the drawing from left to right.
Explain to a Grade 8 why a liquid's boiling point depends on the pull between separate molecules, not the strong bonds holding one molecule's own atoms together.
ONE-MINUTE SUMMARY

Find the functional group first - it fixes the suffix, the general formula and the strongest intermolecular force present. Name the longest chain containing the group, number for the lowest locant, then alphabetise substituents. Chain isomers differ in skeleton, positional isomers differ in group position, functional isomers belong to different series entirely. Boiling point rises with chain length and mass, falls with branching, and jumps sharply once hydrogen bonding becomes possible in alcohols and carboxylic acids.

IN THE EXAM
  • Organic molecules is worth 35 marks on Paper 2, the largest single topic outside Chemical Change, and it is almost always tested as two separate structured questions: one on naming/isomers/drawing structures, and a second on physical properties, often built around a boiling-point comparison table.
  • Expect at least one structure where you must find the longest chain containing the functional group carefully, not just read left to right.
  • Marks are awarded for identifying the correct functional group AND naming the actual type of intermolecular force - an answer that only says "it's heavier" earns little to no credit.
🔒 ORGANIC REACTIONS
🔒 RATE OF REACTION
🔒 CHEMICAL EQUILIBRIUM
🔒 ACIDS AND BASES
🔒 ELECTROCHEMISTRY
🔒

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