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It summarizes formulae across mechanics, forces, density and pressure, work energy and power, deformation of solids, waves and superposition, electricity, DC circuits, and particle physics. The sheet is organized by chapters and includes standard relationships between quantities, units, and common derived expressions, supporting fast revision and problem-solving during study and 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Quantities and Unit |  |  |  |  |  |\n| --- | --- | --- | --- | --- | --- |\n| Chapter 2: Kinematics |  |  |  |  |  |\n| Average velocity (ms−1) = displacemtimee(nst)~~ ~~(m)~~ ~~ | 􀝒 = |  |  |  | 􀝔\u003Cbr>􀝐 |\n| Acceleration (ms−2) = final~~ ~~velocity~~ ~~(ms~~ ~~−~~ ~~1t)~~ ~~−ime~~ ~~i(nsi)tial~~ ~~velocity(ms−1)~~ ~~ | 􀜽 = | 􀝒 − 􀝑\u003Cbr>􀝐 |  |  |  |\n| Equations of motion | 􀝒 = 􀝑 + 􀜽􀝐 |  |  |  |  |\n|  | 􀝀 = ½ (􀝒 + 􀝑)􀝐 |  |  |  |  |\n|  | 􀝀 = 􀝑􀝐 + ½􀜽􀝐2 |  |  |  |  |\n|  | 􀝒 2 = 􀝑 2 + 2􀜽􀝀 |  |  |  |  |\n| Chapter 3: Dynamics |  |  |  |  |  |\n| Force (N) = mass (kg) × acceleration (ms-2 ) | F = ma |  |  |  |  |\n| Force (N) = change~~ ~~in~~ ~~motimmeent(us)m~~ ~~(kgms−1~~ ~~) | 􀜨 = 􀟂􀝌􀝐 |  |  |  |  |\n| Momentum (kgms-1 ) = mass (kg) × velocity (ms-1 ) | p = mv |  |  |  |  |\n| Chapter 4 Forces, Density and Pressure |  |  |  |  |  |\n| Moment (Nm) = Force (N) × perpendicular distance from pivot (m) | M = Fd |  |  |  |  |\n| Sum of clockwise moments (Nm) = sum of anticlockwise moments (Nm) | F1d1 = F2d2 |  |  |  |  |\n| Density (kgm−3) = mvaosslum(keg3) | 􀟩 = |  |  | 􀝉\u003Cbr>􀜸 |  |\n| Pressure (Pa) = Force (N)\u003Cbr>area (m2) | 􀜲 = |  |  | 􀜨\u003Cbr>􀜣 |  |\n| Fluid Pressure (Pa) = density (kgm-3 ) × gravitational field strength (ms-2 or Nkg-1 ) ×\u003Cbr>height (m) | 􀜲 = 􀟩􀝃ℎ |  |  |  |  |\n| Force (Newtons) = density (kgm-3 ) × gravitational field strength (ms-2 or Nkg-1 ) ×\u003Cbr>volume (m3 ) | 􀜲 = 􀟩􀝃􀜸 |  |  |  |  |\n| Chapter 5: Work, Energy and Power |  |  |  |  |  |\n| Work (J) = force (N) × distance moved (m) | W = Fd |  |  |  |  |\n| useful power output (W or J)\u003Cbr>Efficiency (%) = ~~ ~~ × 100%\u003Cbr>total power input (W or J) | 􀜲􀯢􀯨􀯧\u003Cbr>􀟟 = ~~ ~~ × 100%\u003Cbr>􀜲􀯜􀯡 |  |  |  |  |\n| Power (W) = worktime~~ ~~((Js)) | 􀜲 = |  | 􀜹 \u003Cbr>􀝐 |  |  |\n| Power (W) = Force (N) × velocity (ms−1) | P = Fv |  |  |  |  |\n| Gravitational potential energy (J) = mass (kg) × gravitational field strength (ms-2 or\u003Cbr>Nkg-1 ) × height (m) | GPE = mgh |  |  |  |  |\n| Kinetic Energy (J) = ½ × mass (kg) × velocity2 (ms-1 ) | KE = ½mv2 |  |  |  |  |\n| Chapter 6: Deformation of Solids |  |  |  |  |  |\n| Hooke’s law: Force (N) = constant (Nm-1 ) × extension (m) | F = kx |  |  |  |  |\n| Stress (Pa) = Force (N)\u003Cbr>area (m2) | 􀟪 = |  |  | 􀜨\u003Cbr>􀜣 |  |\n| Change in length (meters)\u003Cbr>Strain = ~~ ~~\u003Cbr>Original length (meters) | 􀟝 = |  |  | 􀝔\u003Cbr>􀜮 |  |\n| Elastic modulus (Pa) = StreStsrsai(Pan) | 􀜧 = 􀟪 = (􀜨~~􀜣~~)  􀜨􀜮\u003Cbr>􀟝 (􀝔~~􀜮~~) = 􀜣􀝔 |  |  |  |  |\n| Elastic potential energy (Joules) = ½ × Force (N) × change in length (x) | EPE = ½Fx |  |  |  |  |\n| Elastic potential energy (Joules) = ½ × spring constant (Nm-1 ) × change in length (m)2 | EPE = ½kx2 |  |  |  |  |\n\n\n| Chapter 7: Waves |  |  |  |  |\n| --- | --- | --- | --- | --- |\n| Frequency (Hz) = Peri1od~~ ~~(s) | 􀝂 = 1􀜶 |  |  |  |\n| Wave speed (ms-1 ) = frequency (Hz) × wavelength (m) | V = fλ |  |  |  |\n| Intensity (Wm−3) = PowAreaer(m(3)) | 􀜫 = |  |  | 􀜲\u003Cbr>􀜣 |\n| Observed frequency (Hz)\u003Cbr> speed of sound waves (ms−1) \u003Cbr>=\u003Cbr>speed of sound waves (ms−1 ) ± source velocity(ms−1 )× source frequency (Hz) | 􀝂0 = 􀝒~~ ~~~~ ~~􀝒􀯦~~ ~~ 􀝂􀯦 |  |  |  |\n| Remaining intensity (Wm−3) = Original intensity (Wm−3) × cos2 (angle between polarized light and transmission axis) | 􀜫 = 􀜫0 􀜿􀝋􀝏 2 􀟠 |  |  |  |\n| Chapter 8: Superposition |  |  |  |  |\n| Two fixed ends string |  |  |  |  |\n| Fundamental\u003Cbr>| 􀟣 = 2􀜮 |  |  |  |\n|  | 􀝂 = |  |  􀜿  2􀜮 |  |\n| Second harmonic\u003Cbr>| 􀟣 = 􀜮 |  |  |  |\n|  | 􀝂 = |  |  | 􀜿􀜮 |\n| Third harmonic\u003Cbr>| 􀟣 = |  | 2􀜮 3 |  |\n|  | 􀝂 = |  | 3􀜿 2􀜮 |  |\n| Both ends closed air column |  |  |  |  |\n| | 􀜮 = |  | 􀝊􀟣 2 |  |\n|  | 􀝂 = |  | 􀝊􀝒\u003Cbr>2􀜮 |  |\n| One end open air column |  |  |  |  |\n| | 􀜮 = |  | 􀝊􀟣 4 |  |\n|  | 􀝂 = |  | 􀝊􀝒\u003Cbr>4􀜮 |  |\n| Both ends open air column |  |  |  |  |\n| | 􀜮 = |  | 􀝊􀟣 2 |  |\n|  | 􀝂 = |  | 􀝊􀝒\u003Cbr>2􀜮 |  |\n| Wavelength (m) = slit~~ ~~width~~ ~~(m)~~ ~~×~~ ~~disdtiancstaencbete~~ ~~twoescern~~ ~~tweeno(smu)~~ ~~ccessive~~ ~~line","cbCaildYFFYJwY5S","https://ap.wps.com/l/cbCaildYFFYJwY5S","pdf",462509,"English","# Chapter 1: Physical Quantities and Unit\n# Chapter 2: Kinematics\n# Chapter 3: Dynamics\n# Chapter 4: Forces, Density and Pressure\n# Chapter 5: Work, Energy and Power\n# Chapter 6: Deformation of Solids\n# Chapter 7: Waves\n# Chapter 8: Superposition\n# Chapter 9: Electricity\n# Chapter 10: DC Circuits\n# Chapter 11: Particle Physics\n# Chapter 12: Motion in a Circle","[{\"question\":\"What topics are covered in this CIE A Level Physics formula sheet (9702)?\",\"answer\":\"It covers mechanics and motion, forces with density and pressure, work-energy-power, deformation of solids, waves and superposition, electricity, DC circuits, particle physics, and circular motion.\"},{\"question\":\"How is the formula sheet organized for revision?\",\"answer\":\"Equations are grouped by numbered chapters, letting learners locate formulas by topic quickly during practice and exam preparation.\"},{\"question\":\"Which units and key relationships are included in the mechanics section?\",\"answer\":\"The sheet lists standard definitions such as quantities for displacement, velocity, acceleration, force and momentum, along with moment, density, and pressure relationships using exam-typical symbols.\"}]","CIE A Level Physics Formula Sheet - Chapter Formulas - 2025-2027 Syllabus | PDF",18]