GCSE Physics: Electricity โ Quick Burst Practice is a fast five-round recall drill mapped to the DfE National Curriculum and AQA GCSE Physics Topic 2 (Electricity, spec 6.2). Learners read the meters and symbols, then fire through charge (Q = It), potential difference and Ohm’s law (V = IR), resistors in series, the diode, LDR and thermistor, electrical power (P = VI and P = I²R), energy (E = Pt) and mains electricity including a.c. at 230 V and 50 Hz, the plug wires and the National Grid’s transformers. All five rounds are auto-marked on screen with instant feedback, or the whole book can be printed with a full answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Electricity โ Deep Revision Workbook is the extended-practice set of a multi-part activity pack covering the whole AQA GCSE Physics Topic 2 (Electricity, spec 6.2), mapped to the DfE National Curriculum. Learners revise circuit symbols and series and parallel rules, charge (Q = It), potential difference and Ohm’s law (V = IR) rearranged for resistance and current, resistors in series and parallel, the I–V characteristics of an ohmic conductor, a filament lamp and a diode, the LDR and thermistor, electrical power (P = VI and P = I²R), energy (E = Pt and E = QV), and mains electricity including a.c. at 230 V and 50 Hz, plug wiring and safety, static charge by electron transfer and the National Grid with step-up and step-down transformers. Sections 1–4 hold thirty auto-marked questions that build from foundation to higher tier; Section 5 is an extended exam-style 6-mark question with a full worked answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Particle Model โ Quick Burst Practice is a fast five-round recall drill mapped to the DfE National Curriculum and AQA GCSE Physics topic 6.3 (Particle Model of Matter). Learners blitz density (ρ = m/V), name the arrangement of particles in solids, liquids and gases, recall the changes of state and conservation of mass, then fire through specific heat capacity (E = mcΔθ), specific latent heat (E = mL) and gas pressure with clean numbers. All five rounds are auto-marked on screen with instant feedback, or the whole book can be printed with a full answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Particle Model โ Deep Revision Workbook is the extended-practice set of a multi-part activity pack covering the whole AQA GCSE Physics topic 6.3 (Particle Model of Matter), mapped to the DfE National Curriculum. Learners revise density and the required practical, the arrangement of particles in solids, liquids and gases, changes of state as physical changes with conserved mass, internal energy, specific heat capacity (E = mcΔθ) and rearranging it, specific latent heat of fusion and vaporisation (E = mL), heating and cooling graphs, gas pressure from particle collisions, and the pressure–volume relationship p₁V₁ = p₂V₂ at constant temperature. Sections 1–4 hold thirty auto-marked questions that build from foundation to higher tier; Section 5 is an extended exam-style 6-mark question with a full worked answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Atomic & Radioactivity โ Quick Burst Practice is a fast five-round recall drill mapped to the DfE National Curriculum and AQA GCSE Physics Topic 4 (Atomic Structure, spec 6.4). Learners name the parts of the atom and compare the size of the atom (about 1×10⁻¹⁰ m) with its nucleus (about 1×10⁻¹⁴ m), sort isotopes and ions, recall the alpha, beta and gamma radiation types with their penetration and ionising power, work out an alpha-decay mass number, and blitz whole-half-life activity calculations and ratios. All five rounds are auto-marked on screen with instant feedback, or the whole book can be printed with a full answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Atomic & Radioactivity โ Deep Revision Workbook is the extended-practice set of a multi-part activity pack covering the whole AQA GCSE Physics Topic 4 (Atomic Structure, spec 6.4), mapped to the DfE National Curriculum. Learners label the atom and compare its size (about 1×10⁻¹⁰ m) with its nucleus (about 1×10⁻¹⁴ m), order the plum-pudding, Rutherford and Bohr models, work with atomic number, mass number, isotopes and ions, sort the four types of nuclear radiation (alpha, beta, gamma and neutron) by penetration and ionising power, balance alpha and beta decay numbers, calculate activity in becquerel and whole half-lives, tell contamination from irradiation, and compare nuclear fission with fusion. Sections 1–4 hold more than thirty auto-marked questions that build from foundation to higher tier; Section 5 is an extended exam-style 6-mark question with a full worked answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Waves & Electromagnetism — Quick Burst Practice is a short, timed five-round recall workbook covering AQA GCSE Physics Topics 6 and 7 (Waves and Magnetism & Electromagnetism), for the Combined and Separate science courses and mapped to the DfE National Curriculum. In about ten minutes, learners fire off transverse and longitudinal waves and amplitude, the wave equation v = fλ, period T = 1 ÷ f, the order of the electromagnetic spectrum with everyday uses, permanent magnets and magnetic field lines, the motor effect F = BIl and transformers (Vp ÷ Vs = np ÷ ns). All 15 questions are auto-marked on screen with instant feedback and a full answer key. This is the quick-burst set of a three-part Waves & Electromagnetism pack, ideal as a starter or warm-up. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Waves & Electromagnetism — Deep Revision Workbook is the extended-practice set of an activity pack covering the whole AQA GCSE Physics Waves and Magnetism & Electromagnetism topics (Topics 6 and 7), for the Combined and Separate science courses and mapped to the DfE National Curriculum. Learners work through transverse and longitudinal waves, amplitude, wavelength, frequency and period (T = 1 ÷ f), the wave equation v = fλ used all three ways and measuring wave speed, reflection and refraction of wave fronts, the electromagnetic spectrum with its uses and dangers, black-body radiation and Earth’s temperature, permanent and induced magnets, magnetic field lines and the plotting compass, electromagnets and the motor effect F = BIl, Fleming’s left-hand rule, the generator effect and transformers (Vp ÷ Vs = np ÷ ns). Sections 1–4 hold more than thirty auto-marked questions that build from foundation to higher tier; Section 5 is an extended exam-style application with a full worked answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Energy โ Quick Burst Practice is a fast five-round recall drill mapped to the DfE National Curriculum and AQA GCSE Physics Topic 1 (Energy, spec 6.1). Learners name energy stores, then fire through kinetic energy (Ek = ½mv²), gravitational potential energy (mgh, g = 10 N/kg), specific heat capacity (E = mcΔθ), power (P = E/t) and efficiency, plus a quick renewable-resource check. All five rounds are auto-marked on screen with instant feedback, or the whole book can be printed with a full answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.
GCSE Physics: Energy โ Deep Revision Workbook is the extended-practice set of a multi-part activity pack covering the whole AQA GCSE Physics Topic 1 (Energy, spec 6.1), mapped to the DfE National Curriculum. Learners revise energy stores and transfers, calculate kinetic energy (Ek = ½mv²), gravitational potential energy (mgh, g = 9.8 N/kg) and elastic potential energy (½ke²), work through specific heat capacity (E = mcΔθ) and rearrange it for mass and temperature change, calculate power (P = E/t), then master conservation of energy, dissipation, efficiency, reducing unwanted transfers and renewable and non-renewable energy resources. Sections 1–4 hold more than thirty auto-marked questions that build from foundation to higher tier; Section 5 is an extended exam-style 6-mark question with a full worked answer key. Includes teacher, parent and pupil notes and is fully SEND-friendly with high-contrast and large-text modes.