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  1. Formula Sheet for Cambridge IGCSE™. Physics (0625/0972) by Zhan Xuan Chong. 1st edition, for examination until 2025. Version 1. Note from the author. *This formula list consists of all the necessary formula that you must remember for. the IGCSE Physics exam. Slowly remember these every day.

  2. iGCSE CIE Physics 0625 (2020 Syllabus) Formula List. General. Average speed (ms-1) = distance (m) time (s) Average velocity (ms-1) = displacement (m) time (s) v = s. t. Period of a pendulum (s) = total time (s) number of swings.

  3. images.znotes.org › pdf › caie-igcse-physics-0625-theory-6383127d65d2fa64d6d3a44aPHYSICS - ZNOTES

    The equation for density is: p = density. m = mass v = volume With this equation, you can determine the density of a liquid, of a r. egularly shaped solid. Finding the Density of an Irregularly Shaped Object. Use a balance to measure the mass of the object Find the volume using the . water displacement method Use the formulae . Sinking Phenomenon

  4. 17 Νοε 2023 · Physics (0625/0972) by Zhan Xuan Chong 1st edition, for examination until 2025. Version 1. Note from the author *This formula list consists of all the necessary formula that you must remember...

  5. iGCSE CIE Physics 0625 (2020 Syllabus) Formula List General Average speed (ms-1) = distance (m) time (s) Average velocity (ms-1) = displacement (m) time (s) v=s t Period of a pendulum (s) = T= total time (s) number of swings t number Acceleration (ms-2) = final velocity (ms-1) – initial velocity (ms-1) time (s) a = v-u t Weight (N) = mass (kg ...

  6. IGCSE Physics Formula Sheet (2023, 2024 and 2025 Syllabus) Chapter 1: General Physics. distance (m) Average speed (ms−1) = time (s) =. displacement (m) Average velocity (ms−1) = time (s) =. IGCSE Resources - Physics formula sheet

  7. CIE IGCSE Physics Formula Sheet (2023, 2024 and 2025 Syllabus) Chapter 1: General Physics. distance (m) Average speed (ms−1) = time (s) =. displacement (m) Average velocity (ms−1) = time (s) =. final velocity (ms−1) − initial velocity(ms−1) Acceleration (ms−2) = time (s)

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