ATARMAxxing · Physical Sciences
TCE Physical Sciences Practice Exams with Worked Solutions
20 full-length papers · worked solutions for every question
The 20 practice exams inside the TCE Physical Sciences Mastery Pack, each set out like the real paper with a separate worked-solution guide. Open any paper to see what it covers.
- Relative atomic mass from isotopic abundance
- Half-life read from a decay graph
- Equations of motion in a braking scenario
- Series and parallel resistance totalling
- Net ionic equations from the solubility table
- Balancing an induced fission equation
- v-t graph slope and area
- One-dimensional collision momentum
- Bonding type predicted from physical properties
- Empirical formula from percentage composition
- Penetrating power and shielding of alpha, beta and gamma
- Horizontal projectile motion resultant velocity
- Ep to Ek transformation on a ramp
- IUPAC naming of a branched haloalkene
- Simple acid-base titration calculation
- Electron shell diagrams and stable ion charge
- Newton's second law in momentum form
- Average power in a lifting task
- Metallic bonding explaining malleability and conductivity
- Acid plus carbonate products and equation
- Metastable technetium-99m and gamma emission
- Distance versus displacement in a multi-leg journey
- Elastic versus inelastic collision evidence
- Precipitation reaction and spectator ions
- Dilution from a stock solution
- Background radiation subtraction from count-rate data
- Terminal velocity described qualitatively
- Kilowatt-hour cost from a power bill
- Electron dot diagrams for covalent molecules
- Moles from mass and molar mass
- Atomic radius trend across period 3
- Force diagram with two forces in one dimension
- Ohmic versus non-ohmic V-I graphs
- Allotropes of carbon compared
- Percentage water of crystallisation
- Beta-negative decay equation for a medical isotope
- Vertical motion under gravity
- Conservation of momentum in an explosion
- Combustion of an alkene, complete and incomplete
- Monoprotic versus polyprotic acids
- Mass spectrum interpretation
- Acceleration from a v-t graph slope
- Work done and energy change
- Flame tests and gas tests for unknowns
- Concentration in mol L-1 and g L-1
- Fission chain reaction control in a reactor
- Right-angle vector addition by calculation
- Charge, current and number of electrons
- Ionic lattice properties explained
- Reaction of an acid with a reactive metal
- Isotopes and chemical versus physical properties
- Projectile launched horizontally from a cliff
- Kinetic energy change and average power
- Substitution reaction with a halogen
- Molecular formula from empirical formula and molar mass
- Ionisation and effects on DNA
- Newton's third law pairs
- Parallel circuit currents and potential differences
- Structural isomers of a given molecular formula
- Neutralisation equation and salt naming
- Whole-number half-life calculations with activity
- Graph construction from a data table
- Perfectly elastic collision defined and applied
- Covalent network versus covalent molecular
- Titration to an equivalence point with an indicator
- Group 17 physical trends
- Impulse as change in momentum in a car-safety context
- Ammeter and voltmeter placement
- Naming an ionic compound from ion tables
- Stoichiometry from a balanced equation
- Gamma emission and medical imaging
- Deceleration and stopping distance
- Gravitational potential energy in a pendulum
- Water as a polar molecule and boiling point
- Avogadro's number and particle counts
- Nuclear waste storage decisions justified with evidence
- Average versus instantaneous velocity
- Energy transformations forming heat
- Predicting structure type from conductivity data
- Acid plus hydrogen carbonate products
- Valency deduced from electron configuration
- Two forces added in one dimension
- Resistance from the slope of a V-I graph
- Reactivity trends down group I
- Percentage composition by mass
- Alpha decay of a heavy nuclide
- s-t graph curvature and acceleration
- Momentum before and after a coupling collision
- Bromine test for unsaturation
- Dilution and concentration change
- Radioisotope choice justified by half-life and emission
- Resultant final velocity of a projectile
- Household electricity energy and cost
- Net ionic equation with spectator ions identified
- Brønsted-Lowry proton transfer equations
- Periodic table structure and electron configuration
- Newton's laws applied qualitatively to a net force
- Conservation of energy in an isolated system
- Cyclic alkane and cyclic alkene naming
- Identifying an unknown carbonate by acid reaction
Included in the TCE Physical Sciences Mastery Pack
20 full-length practice exams with worked solutions, 20 revision notes, 64 practice questions and 200 flashcards.
Unlock Physical Sciences — $20
Preview a sample note and question free on the TCE Physical Sciences hub →