Angular Momentum - Clay Puck and Stick Collision

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  • čas přidán 27. 08. 2024

Komentáře • 27

  • @enricolucarelli816
    @enricolucarelli816 Před rokem +6

    Finally someone who dares to remove any pivot point!😁 Thank you! 👏👏👏👏
    It is interesting to notice that there is a point, 5L/12 above the CG, that will start moving along a cycloid.
    Thus, we can use a similar calculation to find out where to hold the handle of a hammer when hitting a nail, in order to minimize the impact on the wrist 👍

  • @arkajyoti6950
    @arkajyoti6950 Před 6 měsíci +2

    Man i cant thank you enough for your efforts in making these detailed videos for us. Love your dedication in explaining every minor concepts while solving problems 🙏❤

  • @InfuriatedFrog
    @InfuriatedFrog Před rokem +2

    Found your channel and now I’m loving physics even more than I already did

  • @ashurbanipal5193
    @ashurbanipal5193 Před 2 lety +3

    you're very good teacher. your style to describe topics is very clear / understandable. you are helping too much. thanks you for your videos.

  • @tozaisusovac6842
    @tozaisusovac6842 Před 9 měsíci +2

    Thanks a ton, I was a bit stuck on how to formulate the proper equation, I forgot to account for the puck´s moment of inertia :)

  • @sarthakghoshrollno.2276
    @sarthakghoshrollno.2276 Před 9 měsíci +1

    I love physics very much, specially mechanics, and i found this video very useful. Thanls for this interactive style, that's beautiful.

  • @izzygrandic
    @izzygrandic Před 8 měsíci +1

    you are a great instructor!

  • @mikemaas8134
    @mikemaas8134 Před 4 měsíci

    Great explanation, thanks! I would just suggest not using capital L for both length and angular momentum in the derivation. Can be a bit confusing for students new to the topic.

  • @samsara2024
    @samsara2024 Před 3 měsíci

    Can you do the same exersice in 3D with two rigid bodies moving in 3D space, please?

  • @fredthecoder1289
    @fredthecoder1289 Před 2 lety +1

    Ninja, good video. But I ma not sure about the sin(90) justification. Isn't theta the angle between the linear velocity vector and the position vector from the axis of rotation to the combined system's centre of mass ? If the combined mass is rotating about the system centre of mass, won't 'd' be just zero?

    • @PhysicsNinja
      @PhysicsNinja  Před 2 lety +2

      Yes, that is what i meant to say but i said perpendicular to the axis. It's the angle between the velocity vector and the vector going from the axis of rotation to the point of impact. Still 90deg.

  • @Ninjamanguy732
    @Ninjamanguy732 Před 10 měsíci

    Isn’t gravity and the normal force from the ground considered external forces? Why are they not considered when evaluating if linear momentum is conserved?

    • @PhysicsNinja
      @PhysicsNinja  Před 10 měsíci

      Those are considered perpendicular to the page.

    • @marionoyola1071
      @marionoyola1071 Před 3 měsíci

      They balanced out because they are y-forces

  • @EfeKaanikizoglu
    @EfeKaanikizoglu Před 8 měsíci

    thanks, you helped me a lot

  • @Test-iv4pm
    @Test-iv4pm Před 2 lety

    What happens to the energy that is not conserved from Ki to Kf?

    • @PhysicsNinja
      @PhysicsNinja  Před 2 lety

      Dissipated as heat

    • @CakeHopper1
      @CakeHopper1 Před měsícem

      ​@@PhysicsNinja But the problem assumes it's a perfect rigid body collision with no energy lost. Why can energy be lost in a fictional scenario? Is energy always lost when a ball hits a rod?

  • @MuhFerdiansyahscience
    @MuhFerdiansyahscience Před 2 lety

    Good

  • @user-sc7hr9dg3z
    @user-sc7hr9dg3z Před 2 lety +2

    👍👍👍👍👍👍👍

  • @user-px5pj7ux5k
    @user-px5pj7ux5k Před 7 měsíci

    hope you put some specific variables example😊

  • @bluefoxf5963
    @bluefoxf5963 Před 2 lety +1

    Good