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  1. work done = force × distance (along the line of action of the force) W = F s force = spring constant × extension F = k e moment of a force = force × distance (normal to direction of force) M = F d pressure = force normal to a surface area of that surface p = F A HT pressure due to a column of liquid =

  2. A-level Physics data and formulae For use in exams from the June 2017 Series onwards Version 1.5 1. ... quadratic equation . a b b ac x 2 ... AQA A-LEVEL PHYSICS DATA AND FORMULAE Version 1.5 3 Electricity. current and pd force between two masses.

  3. Double slit interference equation with w, s and D represented on a diagram In this experiment: D is much bigger than any other dimension, normally several metres long; s is the separation between the two slits and is often the smallest dimension, normally in mm; w is the distance between the fringes on the screen, often in cm. This can be ...

  4. thermal energy for a change of state = mass × specific latent heat. E = m L. For gases: pressure × volume = constant. p V = constant. weight = mass × gravitational field strength. W = m g. work done = force × distance (along the line of action of the force) W = F s. force = spring constant × extension.

  5. 1 sty 2024 · When you sit your AQA A Level Physics exam, you will have access to the AQA A-Level Physics data and formulae sheet. This is a booklet which contains useful data, such as fundamental constants and values, algebraic equations, geometrical equations and a range of equations used throughout the syllabus to help you in your exam.

  6. ALGEBRAIC EQUATION GEOMETRICAL EQUATIONS quadratic equation a b b ac x 2 − ± 2 −4 = arc length = r circumference of circle = 2πr ASTRONOMICAL DATA area of circle = πr2 Body Mass/kg Mean radius/m curved surface area of cylinder = 2πrh Sun 81.99 × 1030 = 46.96 × 10 area of sphere πr2 Earth 5.97 × 1024 6.37 × 106 volume of sphere = 3 ...

  7. 21 lis 2023 · You calculate distance traveled by using the formula d=rt. You will need to know the rate at which you are traveling and the total time you traveled. You can then multiply these two numbers...