ATARMAxxing · Chemistry
VCE Chemistry Practice Exams with Worked Solutions
20 full-length papers · worked solutions for every question
The 20 practice exams inside the VCE Chemistry Mastery Pack, each set out like the real paper with a separate worked-solution guide. Open any paper to see what it covers.
- U3 AOS1–2 thermochemistry/electrochemistry (calorimetry, Faraday electrolysis, fuel cells, galvanic) — ~30 marks
- U3 AOS2 rate & equilibrium (Kc, Le Chatelier, green chemistry/atom economy) + U4 AOS1 organic synthesis — ~30 marks
- U4 AOS2 analysis (redox titration, combustion analysis, IR/NMR/MS structure determination, HPLC) — ~30 marks
- U3 AOS1–2 thermochemistry/calorimetry, electrolysis & Faraday's laws, galvanic/fuel cells
- U3 AOS2 equilibrium Kc, Le Chatelier, rate vs yield, atom economy & green chemistry
- U4 AOS1 organic nomenclature, isomers & reaction pathways; U4 AOS2 redox titration, combustion analysis, IR/NMR/MS spectroscopy & HPLC
- U3 AOS1–2 energy & electrochemistry (fuels, calorimetry, Faraday, galvanic) — 31 marks
- U3 AOS2 rate, equilibrium & green chemistry — 28 marks
- U4 AOS1 organic synthesis & U4 AOS2 analysis/spectroscopy/titration — 31 marks
- Electrochemistry & energy (galvanic cells, fuel cells, electrolysis, Faraday, thermochemistry) — U3 AOS1–2
- Rate & equilibrium and green chemistry (collision theory, catalysts, Kc, Le Chatelier, atom economy) — U3 AOS2
- Organic nomenclature, isomerism & synthesis pathways — U4 AOS1
- Analytical chemistry (redox titration, combustion analysis, IR/NMR/MS structure determination) — U4 AOS2
- U3 AOS1–2 energy: thermochemistry/calorimetry, galvanic & fuel cells, Faraday electrolysis (green hydrogen)
- U3 AOS2 + U4 AOS1: equilibrium Kc/Le Chatelier, rate & atom economy, organic nomenclature/isomers/pathways/polymers
- U4 AOS2 analysis: redox titration, IR/NMR/MS structure determination, HPLC calibration
- Balanced VCAA-weighted coverage across all four AOS: U3 AOS1–2 energy/electrochemistry (Q1 calorimetry, Q2 Faraday, Q9-style EMF in Q5), U3 AOS2 rate/equilibrium/green chem (Q3, Q5), U4 AOS1 organic synthesis/isomers (Q4, Q7), U4 AOS2 analysis (Q6 titration, Q8 spectroscopy)
- Two extended quantitative items fully python-verified: Q1 calorimetry with electrical calibration (-1335 kJ/mol, -2.2% vs data book) and Q6 redox titration of iron tablets (102.5 mg/tablet, 97.6% of label); plus Q8 multi-spectrum ester structure determination
- Pharmaceutical-lab context flavour woven through (iron-supplement assay, aspirin-type ester synthesis, enzyme inhibition, drug-purity chromatography) with realistic data and clean answers
- U3 AOS1–2 energy: calorimetry with calibration, galvanic cells, thermochemistry/efficiency, and electrolysis/Faraday (Q1-Q4)
- U3 AOS2 rate & yield: equilibrium Kc, Le Chatelier, atom economy, green chemistry and % yield (Q6-Q7)
- U4 AOS2 analysis: redox titration (extended calculation), combustion/empirical formula, and IR/NMR/MS structure determination (Q5, Q8, Q9)
- U3 AOS1–2 thermochemistry/calorimetry, galvanic & fuel cells, Faraday electrolysis
- U3 AOS2 equilibrium Kc & Le Chatelier, green chemistry atom economy
- U4 AOS1+2 organic nomenclature/pathways, titration, spectroscopy structure determination, combustion analysis
- U3 AOS1–2 energy: thermochemistry/calorimetry, galvanic vs fuel cells, electrolysis & Faraday's laws
- U3 AOS2 + U4 AOS1: equilibrium/Kc/Le Chatelier, green chemistry & atom economy, organic nomenclature/isomers/pathways
- U4 AOS2 analysis: redox titration, combustion analysis, IR/NMR/MS structure determination, enzymes
- Thermochemistry, electrochemistry and Faraday calculations (U3 AOS1–2)
- Equilibrium, rate-yield trade-offs and green chemistry (U3 AOS2)
- Organic structure, isomerism and synthesis (U4 AOS1)
- Spectroscopy, volumetric analysis and medicinal chemistry (U4 AOS2)
- U3 AOS1–2 energy (thermochemistry/calorimetry, electrolysis & Faraday, fuel cells/galvanic)
- U3 AOS2 rate & yield (equilibrium Kc, Le Chatelier, green chemistry & atom economy)
- U4 AOS1 organic synthesis (nomenclature, isomers, reaction pathways)
- U4 AOS2 analysis (redox titration, combustion analysis, IR/NMR/MS structure determination)
- U3 AOS1–2 energy: thermochemistry/calorimetry, Faraday electrolysis, galvanic cells
- U3 AOS2 + U4 AOS1: equilibrium Kc/Le Chatelier, atom economy & yield, combustion-derived formulae, reaction pathways/isomers
- U4 AOS2 analysis: redox titration, IR/NMR/MS structure determination, HPLC calibration
- U3 AOS1–2 energy (thermochemistry, electrolysis/Faraday, galvanic + fuel cells, fuel comparison)
- U3 AOS2 rate & yield (Kc, Le Chatelier, green chemistry, atom economy)
- U4 AOS1 organic (nomenclature, isomers, reaction pathways) + U4 AOS2 analysis (titration, HPLC, spectroscopy)
- Thermochemistry & electrochemistry (U3 AOS1–2): calorimetry calibration, Faraday electrolysis, galvanic EMF
- Rate, equilibrium & green chemistry (U3 AOS2): Kc, Le Chatelier, atom economy and percent yield
- Organic synthesis & analysis (U4 AOS1/AOS2): nomenclature, isomerism, spectroscopy structure determination, redox titration
- U3 AOS1–2 energy: thermochemistry/calorimetry, Faraday electrolysis, galvanic & fuel cells
- U3 AOS2 rate & yield: equilibrium Kc/Le Chatelier, green chemistry & atom economy
- U4 organic & analysis: nomenclature/isomers/pathways, redox titration, IR/NMR/MS structure determination
- U3 AOS1–2 energy: combustion, calorimetry, galvanic/fuel cells, Faraday electrolysis
- U3 AOS2 + U4 AOS1: rate/equilibrium (Kc, Le Chatelier), green chemistry, organic nomenclature/isomers/synthesis/polymers
- U4 AOS2 analysis: spectroscopy structure determination (MS/IR/NMR), redox titration, HPLC, enzymes
- U3 AOS1–2 energy (fuels, calorimetry with calibration, galvanic/fuel cells, Faraday electrolysis) — 37 marks
- U3 AOS2 rate & yield (collision theory, dynamic equilibrium, Kc, Le Chatelier, green chemistry atom economy) — 19 marks
- U4 AOS1 organic synthesis (IUPAC, isomers incl. chirality, IMF, reaction pathways, esterification/polymers) — 12 marks
- U4 AOS2 analysis (redox titration, IR/NMR/MS structure determination, HPLC, enzymes) — 22 marks
- U3 AOS1–2 energy: bomb calorimetry calibration and combustion enthalpy; galvanic cells, electrochemical series and Faraday's laws of electrolysis
- U3 AOS2 + U4 AOS1 reactions: equilibrium Kc and Le Chatelier; green chemistry % yield and atom economy; combustion analysis to empirical/molecular formula
- U4 AOS2 analysis: redox (permanganate) volumetric titration, HPLC calibration curves, and full IR/NMR/MS structure determination
- U3 AOS1–2 energy: extended calorimetry/Faraday calcs, galvanic & fuel cells
- U3 AOS2 + U4 AOS1: equilibrium Kc/Le Chatelier, green chemistry, organic synthesis & isomers
- U4 AOS2 analysis: extended redox titration, combustion-analysis spectroscopy structure determination, HPLC & enzymes
- U3 AOS1–2 energy: calorimetry calibration, Faraday electrolysis, galvanic/fuel cells, fuel energy density (35 marks)
- U3 AOS2 rate/yield + U4 AOS1 organic: Kc & Le Chatelier, atom economy, IUPAC/isomers/synthesis pathways, combustion analysis (34 marks)
- U4 AOS2 analysis: KMnO4 redox titration of an iron tablet and full IR/NMR/MS structure determination of an ester (21 marks)
Included in the VCE Chemistry Mastery Pack
20 full-length practice exams with worked solutions, 20 revision notes, 64 practice questions and 200 flashcards.
Preview a sample note and question free on the VCE Chemistry hub →