Kinematics of Rigid Bodies l General Plane Motion l Relative Velocity & Instantaneous Center Method

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  • čas přidán 12. 04. 2020
  • Kinematics of Rigid Bodies l Solving General Plane Motion using Relative Velocity Method and Instantaneous Center Method.
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Komentáře • 7

  • @johannesmj9595
    @johannesmj9595 Před 3 lety

    Thanks🙌🏿🙌🏿🙌🏿🙌🏿

  • @bunnoljohnnamae2109
    @bunnoljohnnamae2109 Před 3 lety

    Sarap sa tenga nung INTRO ❤️

  • @sundaysilva4749
    @sundaysilva4749 Před 4 lety +1

    Thanks a ton!

  • @powerlvl15
    @powerlvl15 Před 4 lety +1

    Sana magkaroon po kayo ng series of videos tungkol po sa Theory of Structures. Subbed po.Salamat!

    • @mathematicsandengineeringv9882
      @mathematicsandengineeringv9882  Před 4 lety +2

      Yes po lods., Continuous nman po paggawa naten ng video and after po madiscuss lower mechanics is aakyat na po sa theory including Designs. Thank you lods.

  • @jaymundostonal5154
    @jaymundostonal5154 Před 4 lety +1

    From Step 3 of the first method, why is it assumed that velocity at A is present at both A and B in translation? 4:43

    • @mathematicsandengineeringv9882
      @mathematicsandengineeringv9882  Před 4 lety +1

      hi Lods, it is also present in point B since the rod AB is divided into Translation and Rotation Motion. Considering Translation(Rectilinear Motion) direction and magnitude of velocity at A is the same as Direction of velocity at B (or any points of AB) but due to the reaction of Sliding Support, Tendency of that velocity will rotate. thank you