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Includes particle nature of matter, density and states of matter with required practical density/energy investigations, and energy topics such as efficiency, heating, and thermal conductivity. Covers atomic structure and radioactive decay with activity, half-life and decay modelling, then electricity including circuits, resistance, Ohm’s law, safety, AC, and electrical power. Extends to motion, forces, Hooke’s law, Newton’s laws and momentum, plus atomic-scale topics, waves, electromagnetism, space physics, magnetism, induction, generators and transformers.","|  | Outline |\n| --- | --- |\n| Y10 Half\u003Cbr>Term 1 | Particle nature of matter\u003Cbr>Density of regular /irregular objects.\u003Cbr>Density of liquids\u003Cbr>Required practical 5 – calculating densities\u003Cbr>States of matter\u003Cbr>Changes of state – specific latent heat of vaporisation and fusion Gas pressure and temperature\u003Cbr>Gas pressure and volume/Boyle’s law\u003Cbr>Energy\u003Cbr>Changes in energy stores Conservation of energy |\n| Y10 Half\u003Cbr>Term 2 | Energy and efficiency\u003Cbr>Gravitational potential energy and kinetic energy\u003Cbr>Energy transfer by heating/thermal conductivity/insulation of buildings\u003Cbr>Required practical 2 – Investigating thermal insulators\u003Cbr>Specific heat capacity\u003Cbr>Required practical 1 – determining the specific heat capacity of a metal |\n| Y10 Half\u003Cbr>Term 3 | Atomic structure\u003Cbr>Discovery of radioactivity Atoms and radiation Alpha decay and beta decay Activity and half life\u003Cbr>Modelling radioactive decay using dice\u003Cbr>The discovery of the nucleus Uses of radioactivity Nuclear fission\u003Cbr>Nuclear fusion |\n| Y10 Half\u003Cbr>Term 4 | Electricity\u003Cbr>Static electricity Electric fields Current and charge Potential difference\u003Cbr>Series and parallel circuit rules Resistance\u003Cbr>Ohms Law\u003Cbr>Required practical 3 – investigating the resistance of a wire and of resistors in series and parallel\u003Cbr>Thermistors and LDRs\u003Cbr>Required practical 4- investigating the current P.d. characteristics of circuit components |\n\n\n|  | Electricity in the home\u003Cbr>Alternating current\u003Cbr>Electrical safety – fuses/earth wire/double insulation Wiring a plug\u003Cbr>Electrical power\u003Cbr>Calculating electrical power and energy |\n| --- | --- |\n| Y10 Half\u003Cbr>Term 5 | Motion\u003Cbr>Speed, velocity and acceleration Motion graphs\u003Cbr>Calculating the resultant of forces acting along the same line\u003Cbr>Calculating the resultant of perpendicular forces using a scale diagram The parallelogram of forces\u003Cbr>Resolving forces into perpendicular components using a scale diagram Mass and weight\u003Cbr>Forces in action\u003Cbr>Work and energy Power\u003Cbr>Work, energy and power experiments |\n| Y10 Half\u003Cbr>Term 6 | Hooke’s Law\u003Cbr>Required practical 6 – investigating the relationship between force and extension of a spring\u003Cbr>Newton’s laws\u003Cbr>Required practical 7 – investigating the relationship between force and acceleration\u003Cbr>Car stopping distances Terminal velocity\u003Cbr>Momentum/conservation of momentum calculations in collisions and explosions |\n| Y11 Half\u003Cbr>Term 1 | Impact forces Car safety features Gear and levers Moments and equilibrium\u003Cbr>Centre of mass and stability Pressure at a surface\u003Cbr>Pressure in liquids Atmospheric pressure Upthrust and flotation\u003Cbr>Waves\u003Cbr>Transverse and longitudinal waves Frequency, wavelength and amplitude.\u003Cbr>The wave equation\u003Cbr>Required practical 8 – measuring the speed, frequency and wavelength of waves in a ripple tank and in a stretched string |\n\n\n| Y11 Half\u003Cbr>Term 2 | The electromagnetic spectrum\u003Cbr>Sources, uses and dangers of electromagnetic waves Reflection of light\u003Cbr>Refraction of light\u003Cbr>Required practical 9 – investigating the reflection and refraction of light\u003Cbr>Lenses/using lenses Light and colour Seismic waves Infra-red radiation Blackbody radiation\u003Cbr>Required practical 10 –Investigating infra-red radiation\u003Cbr>Sound\u003Cbr>Ultrasound and its uses Seismic waves |\n| --- | --- |\n| Y11 Half\u003Cbr>Term 3 | Space physics\u003Cbr>The size and scale/structure of the universe Formation of the solar system\u003Cbr>Circular motion Satellites/moons/planets The lifecycle of a star\u003Cbr>Origins of the universe/the big bang theory\u003Cbr>Evidence for the big bang Doppler effect/red shift Possible futures of the Universe |\n| Y11 Half\u003Cbr>Term 4 | Magnetism and electromagnetism\u003Cbr>Magnetic fields\u003Cbr>Observing magnetic fields using iron filings and plotting compasses.\u003Cbr>The magnetic field around a current carrying conductor/right hand grip rule Electromagnets and their uses\u003Cbr>The motor effect and Fleming’s left-hand rule\u003Cbr>Calculating and investigating the force on a current carrying conductor","cbCaiqAs8fLA5G1p","https://ap.wps.com/l/cbCaiqAs8fLA5G1p","pdf",127616,1,3,"English","en",105,"# Y10 Half Term 1\n## Particle nature of matter\n## Density, states of matter, gas pressure and temperature\n## Energy and conservation of energy\n# Y10 Half Term 2\n## Energy, efficiency, and kinetic/potential energy\n## Heating, thermal conductivity, insulation\n## Specific heat capacity and required practicals\n# Y10 Half Term 3\n## Atomic structure and radioactivity\n## Alpha and beta decay, activity and half-life\n## Nuclear fission and fusion\n# Y10 Half Term 4\n## Electricity: static electricity, fields, current, potential difference\n## Series/parallel circuits, resistance, Ohm’s law\n## Thermistors, LDRs, circuit component investigations\n# Y10 Half Term 5\n## Electricity in the home, alternating current, electrical safety\n## Wiring a plug and electrical power calculations\n# Y10 Half Term 6\n## Motion, speed/velocity/acceleration and motion graphs\n## Resultant forces, forces diagrams, mass and weight\n## Work, energy and power; Hooke’s law\n## Newton’s laws, terminal velocity, momentum\n# Y11 Half Term 1\n## Impact forces and safety features\n## Moments, equilibrium, centre of mass and stability\n## Pressure in solids and liquids; upthrust and flotation\n## Waves and required practical: ripple tank and stretched string\n# Y11 Half Term 2\n## Electromagnetic spectrum and light: reflection and refraction\n## Lenses, light and colour; infra-red and blackbody radiation\n## Sound and ultrasound\n# Y11 Half Term 3\n## Space physics, solar system formation, circular motion\n## Star lifecycle, big bang evidence, Doppler effect/red shift\n# Y11 Half Term 4\n## Magnetism and electromagnetism\n## Electromagnetic induction, generators and transformers\n## Transformers in the national grid\n# Y11 Half Term 5\n## Revision","[{\"question\":\"What topics are included in Y10 Half Term 1 and how does it progress?\",\"answer\":\"It starts with the particle nature of matter, density of regular/irregular objects and liquids, then states of matter and gas pressure/temperature. It concludes with energy, changes in energy stores, and conservation of energy, supported by required practical 5.\"},{\"question\":\"Which required practicals relate to thermal properties and specific heat in Y10?\",\"answer\":\"Y10 Half Term 2 includes required practical 2 on investigating thermal insulators and required practical 1 on determining the specific heat capacity of a metal.\"},{\"question\":\"How are waves and electromagnetism covered in Y11?\",\"answer\":\"Y11 Half Term 1 covers waves including measuring speed, frequency and wavelength in a ripple tank and stretched string. Y11 Half Term 2 covers the electromagnetic spectrum, light reflection/refraction and required investigations, plus infra-red radiation and blackbody radiation.\"}]","Physics KS4 - 2020 - Y10/Y11 Physics Course Outline | PDF",1788601313,8,{"code":4,"msg":31,"data":32},"ok",{"site_id":24,"language":23,"slug":33,"title":13,"keywords":34,"description":14,"schema_data":35,"social_meta":85,"head_meta":87,"extra_data":89,"updated_unix":28},"physics-ks4-2020-y10y11-physics-course-outline","",{"@graph":36,"@context":84},[37,52,67],{"@type":38,"itemListElement":39},"BreadcrumbList",[40,44,48,50],{"item":41,"name":42,"@type":43,"position":20},"https://docshare.wps.com","Home","ListItem",{"item":45,"name":46,"@type":43,"position":47},"https://docshare.wps.com/document/","Document",2,{"item":49,"name":12,"@type":43,"position":21},"https://docshare.wps.com/document/exam/",{"item":51,"name":13,"@type":43,"position":11},"https://docshare.wps.com/document/physics-ks4-2020-y10y11-physics-course-outline/207831/",{"url":51,"name":13,"@type":53,"author":54,"headline":13,"publisher":56,"fileFormat":59,"inLanguage":23,"description":14,"dateModified":60,"datePublished":61,"encodingFormat":59,"isAccessibleForFree":62,"interactionStatistic":63},"DigitalDocument",{"name":9,"@type":55},"Person",{"url":41,"name":57,"@type":58},"DocShare","Organization","application/pdf","2026-09-06","2026-09-05",true,{"@type":64,"interactionType":65,"userInteractionCount":20},"InteractionCounter",{"@type":66},"ViewAction",{"@type":68,"mainEntity":69},"FAQPage",[70,76,80],{"name":71,"@type":72,"acceptedAnswer":73},"What topics are included in Y10 Half Term 1 and how does it progress?","Question",{"text":74,"@type":75},"It starts with the particle nature of matter, density of regular/irregular objects and liquids, then states of matter and gas pressure/temperature. It concludes with energy, changes in energy stores, and conservation of energy, supported by required practical 5.","Answer",{"name":77,"@type":72,"acceptedAnswer":78},"Which required practicals relate to thermal properties and specific heat in Y10?",{"text":79,"@type":75},"Y10 Half Term 2 includes required practical 2 on investigating thermal insulators and required practical 1 on determining the specific heat capacity of a metal.",{"name":81,"@type":72,"acceptedAnswer":82},"How are waves and electromagnetism covered in Y11?",{"text":83,"@type":75},"Y11 Half Term 1 covers waves including measuring speed, frequency and wavelength in a ripple tank and stretched string. 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