[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"doc-detail-207848-en":3,"doc-seo-207848-105":30,"detail-sidebar-cat-0-en-105":90},{"code":4,"msg":5,"data":6},0,"success",{"doc_id":7,"user_id":8,"nickname":9,"user_avatar":10,"doc_module":4,"category_id":11,"category_name":12,"doc_title":13,"doc_description":14,"doc_content":15,"file_id":16,"file_url":17,"file_type":18,"file_size":19,"view_count":20,"is_deleted":4,"is_public":20,"is_downloadable":20,"audit_status":20,"page_count":21,"language":22,"language_code":23,"site_id":24,"html_lang":23,"table_of_contents":25,"faqs":26,"seo_title":27,"seo_description":14,"update_tm":28,"read_time":29},207848,687207017582,"Ethan Miller","https://ap-avatar.wpscdn.com/davatar_994ba38a5ba835b3df7d355c54d3ed8d",4,"Exam","Physics Equations Sheet - GCSE Physics (8463) - FOR USE IN JUNE 2024 ONLY - HT Higher Tier only equations","AQA GCSE Physics (8463) Higher Tier equations sheet for June 2024, intended for exam reference only. The sheet consolidates key formulae across mechanics, energy, power, thermal processes, electricity, and waves. It includes relationships for kinetic and potential energies, power and efficiency concepts, charge and potential difference, density, and standard kinematics equations, plus equations for moments, momentum, and wave speed. It also covers pressure and forces in fluids and electromagnetism.","Physics Equations Sheet  \nGCSE Physics (8463)  \nFOR USE IN JUNE 2024 ONLY  \nHT = Higher Tier only equations  \n\n| kinetic energy = 0.5 × mass × (speed)2 |  | Ek = 12 􀝉 􀝒2 |\n| --- | --- | --- |\n| elastic potential energy = 0.5 × spring constant × (extension)2 |  | Ee = 12 k e2 |\n| gravitational potential energy = mass × gravitational field strength × height |  | Ep = mg h |\n| change in thermal energy = mass × specific heat capacity × temperature change |  | ΔE = m c Δθ |\n| power = | energy transferred\u003Cbr>time | P = Et |\n| power = wortkidomene |  | WP = ~~ ~~\u003Cbr>t |\n| efficiency = usetoftuall~~ ~~ionutppututeenneergy~~ ~~trrgy~~ ~~traannsfesferr |  |  |\n| efficiency = usetoftuall~~ ~~powepowerr~~ ~~ionutpputut |  |  |\n| charge flow = current × time |  | Q = It |\n| potential difference = current × resistance |  | V = IR |\n| power = potential difference × current |  | P = VI |\n| power = (current)2 × resistance |  | P = I2 R |\n| energy transferred = power × time |  | E = P t |\n| energy transferred = charge flow × potential difference |  | E = Q V |\n| density = vmassolume |  | ρ = mV |\n\nPhysics Equations Sheet-GCSE Physics (8463) Turn over ►  \nFOR USE IN JUNE 2024 ONLY  \nHT  \nHT  \nHT  \nHT  \nHT  \nHT  \n\n| thermal energy for a change of state = mass × specific latent heat |  | E = mL |\n| --- | --- | --- |\n| For gases: pressure × volume = constant |  | p V = constant |\n| weight = mass × gravitational field strength |  | W = m  |\n| work done = force × distance (along the line of action of the force) |  | W = Fs |\n| force = spring constant × extension |  | F = ke |\n| moment of a force = force × distance (normal to direction of force) |  | M = Fd |\n| pressure = forcearenaormof~~ ~~tahltoatsausurfarfacece |  | p = FA |\n| pressure due to a column of liquid =\u003Cbr>height of column × density of liquid × gravitational field strength |  | p = h ρ g |\n| distance travelled = speed × time |  | s = v t |\n| acceleration = changetimein~~ ~~vetakeloncity |  | a = ~~ ~~Δtv |\n| (final velocity)2 –(initial velocity)2 = 2 × acceleration × distance |  | v2 – u2 = 2 a s |\n| resultant force = mass × acceleration |  | F = ma |\n| momentum = mass × velocity |  | p = m v |\n| force = | change in momentum\u003Cbr>time taken | m Δv F = ~~ ~~\u003Cbr>Δt |\n| period = freq1uency |  | 1\u003Cbr>T = ~~  ~~f |\n| wave speed = frequency × wavelength |  | v = f λ |\n| magnification = oimbageject~~ ~~hheeiigghhtt |  |  |\n| force on a conductor (at right angles to a magnetic field) carrying a current =\u003Cbr>magnetic flux density × current × length |  | F = BIl |\n| potential difference across primary coil number of turns in primary coil  ~~ ~~ = ~~  ~~potential difference across secondary coil number of turns in secondary coil |  | Vp np\u003Cbr>~~ ~~ = ~~ ~~\u003Cbr>Vs ns |\n| potential difference across primary coil × current in primary coil =\u003Cbr>potential difference across secondary coil × current in secondary coil |  | Vp Ip = Vs Is |\n\nPhysics Equations Sheet-GCSE Physics (8463) FOR USE IN JUNE 2024 ONLY  \nCopyright © AQA and its licensors. All rights reserved.","cbCaisPa0CSULvb2","https://ap.wps.com/l/cbCaisPa0CSULvb2","pdf",180033,1,2,"English","en",105,"# Core mechanics and energy\n## Energy, power and efficiency\n## Kinematics and forces\n# Thermal, waves and pressure\n## Thermal and state changes\n## Pressure and density\n## Waves and magnification\n# Electricity and electromagnetism\n## Charge, current and potential difference\n## Power in circuits and resistance","[{\"question\":\"What is this document used for in AQA GCSE Physics (8463)?\",\"answer\":\"It is an equations reference sheet for use in the June 2024 exam, with content intended specifically for the Higher Tier (HT).\"},{\"question\":\"Which main physics topics are covered by the equations on the sheet?\",\"answer\":\"The sheet covers mechanics (forces, momentum, kinematics), energy and power, thermal energy and state changes, pressure and density, electricity (charge, current, potential difference, resistance), and wave-related relationships.\"},{\"question\":\"Does the sheet include equations for both tiers?\",\"answer\":\"No. The sheet states that HT means Higher Tier only equations, indicating the included formulae are for the Higher Tier.\"}]","Physics Equations Sheet - 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