[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"doc-detail-207846-en":3,"doc-seo-207846-105":29,"detail-sidebar-cat-0-en-105":88},{"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":4,"is_deleted":4,"is_public":20,"is_downloadable":20,"audit_status":20,"page_count":20,"language":21,"language_code":22,"site_id":23,"html_lang":22,"table_of_contents":24,"faqs":25,"seo_title":26,"seo_description":14,"update_tm":27,"read_time":28},207846,1099514068365,"Aurelia","https://ap-avatar.wpscdn.com/avatar/10000253d8d9f28188e?_k=1776742907772140068",4,"Exam","Physics Equations Sheet GCSE Physics (8463) v1","This document provides a comprehensive collection of essential physics equations for GCSE Physics (8463) examinations. It is meticulously compiled to serve as a vital resource for students preparing for their assessments. The sheet systematically lists key formulas, presented in both descriptive text and symbolic notation, covering various branches of physics relevant to the GCSE curriculum. Topics include pressure, motion, force, energy, waves, electricity, and magnetism, among others. Each equation is clearly delineated for ease of use and quick reference during study sessions and examinations. The document is designated as version 1, indicating its foundational status and potential for future updates. This equation sheet is an indispensable tool for reinforcing learning, understanding interrelationships between physical concepts, and ensuring accurate application of formulas in problem-solving scenarios within the context of GCSE Physics.","Physics Equations Sheet  \nGCSE Physics (8463)  \n\n| 1 | pressure due to a column of liquid = height of column × density of liquid × gravitational field strength (g) |  | p = h ρ g |\n| --- | --- | --- | --- |\n| 2 | (ﬁnal velocity)2 –(initial velocity)2 = 2 􀁵 acceleration 􀁵 distance |  | v2 – u2 = 2 a s |\n| 3 | force = changetiminemometakenntum |  | F = m∆∆~~t~~v |\n| 4 | elastic potential energy = 0.5 􀁵 spring constant 􀁵 (extension)2 |  | Ee = ~~ ~~12 k e 2 |\n| 5 | change in thermal energy = mass 􀁵 speciﬁc heat capacity 􀁵 temperature change |  | ∆E = m c ∆θ |\n| 6 | period = ~~ ~~freq1uency |  |  |\n| 7 | magniﬁcation = | image height\u003Cbr>object height |  |\n| 8 | force on a conductor (at right angles to a magnetic field) carrying a current = magnetic flux density × current × length |  | F = B I l |\n| 9 | thermal energy for a change of state = mass 􀁵 speciﬁc latent heat |  | E = m L |\n| 10 | potential difference across primary coil number of turns in primary coil\u003Cbr>  =  \u003Cbr>potential difference across secondary coil number of turns in secondary coil |  | V n\u003Cbr>p p\u003Cbr>  =  \u003Cbr>Vs ns |\n| 11 | potential difference across primary coil 􀁵 current in primary coil = potential difference across secondary coil 􀁵 current in secondary coil |  | Vp Ip = Vs Is |\n| 12 | For gases: pressure 􀁵 volume = constant |  | p V = constant |\n\nInsert for GCSE Physics (8463) papers. v1","cbCailusEFwDlVJ7","https://ap.wps.com/l/cbCailusEFwDlVJ7","pdf",264860,1,"English","en",105,"# GCSE Physics (8463) Equation Sheet\n## Formulas\n### Pressure due to a column of liquid\n### Motion (v2 – u2 = 2as)\n### Momentum\n### Elastic Potential Energy\n### Thermal Energy (Change)\n### Frequency and Period\n### Magnification\n### Force on a conductor\n### Thermal Energy (Change of State)\n### Transformer Equations\n### Gas Law (Pressure x Volume)\n## Version Information","[{\"question\":\"What is the formula for pressure due to a column of liquid?\",\"answer\":\"The formula for pressure due to a column of liquid is: pressure = height of column × density of liquid × gravitational field strength (g), often written as p = hρg.\"},{\"question\":\"Which equation relates final velocity, initial velocity, acceleration, and distance?\",\"answer\":\"The equation that relates final velocity (v), initial velocity (u), acceleration (a), and distance (s) is: (final velocity)^2 – (initial velocity)^2 = 2 × acceleration × distance, or v^2 – u^2 = 2as.\"},{\"question\":\"How is elastic potential energy calculated?\",\"answer\":\"Elastic potential energy (Ee) is calculated using the formula: Ee = 0.5 × spring constant × (extension)^2, where 'k' is the spring constant and 'e' is the extension.\"}]","Physics Equations Sheet GCSE Physics (8463) v1 | 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is the formula for pressure due to a column of liquid?","Question",{"text":72,"@type":73},"The formula for pressure due to a column of liquid is: pressure = height of column × density of liquid × gravitational field strength (g), often written as p = hρg.","Answer",{"name":75,"@type":70,"acceptedAnswer":76},"Which equation relates final velocity, initial velocity, acceleration, and distance?",{"text":77,"@type":73},"The equation that relates final velocity (v), initial velocity (u), acceleration (a), and distance (s) is: (final velocity)^2 – (initial velocity)^2 = 2 × acceleration × distance, or v^2 – u^2 = 2as.",{"name":79,"@type":70,"acceptedAnswer":80},"How is elastic potential energy calculated?",{"text":81,"@type":73},"Elastic potential energy (Ee) is calculated using the formula: Ee = 0.5 × spring constant × (extension)^2, where 'k' is the spring constant and 'e' is the 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