Fluid Mechanics - Fluid/Hydrostatic Pressure in 11 Minutes!

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  • เผยแพร่เมื่อ 1 ต.ค. 2024

ความคิดเห็น • 22

  • @LessBoringLectures
    @LessBoringLectures  2 ปีที่แล้ว +15

    CORRECTION: At 10:15, the first term after P_outside, should have h3, not h1.

    • @ziphozonkegumede7416
      @ziphozonkegumede7416 2 ปีที่แล้ว

      It doesn't matter... you've earned my Sub👍

    • @christopheredwards5884
      @christopheredwards5884 10 หลายเดือนก่อน

      You are wrong

    • @danielzhao-u2p
      @danielzhao-u2p 6 หลายเดือนก่อน

      Why do you times all the pressure values by 10*m/s^2 btw? what's the reasoning for that as I thought the values was already in Kg/m^3

  • @SSoIo
    @SSoIo 3 ปีที่แล้ว +16

    It can’t be understated how useful your videos are. I genuinely appreciate your channel more than you’ll ever know and wish you all the best, thank you.

  • @eclipsehorizon7655
    @eclipsehorizon7655 7 หลายเดือนก่อน +6

    its funny that when you write "Boring leactures about fluid statics" you get the most intresting, most enjoyable , most helpful video . Thank you so much for these videos

  • @dsimone1019
    @dsimone1019 5 หลายเดือนก่อน +1

    5:10 you say “in that direction” ( assuming acc.going in the same direction as the force ) but then you draw it facing the opposite direction. Then once it’s in the tube , the acc. moves in the same direction as the force. Can you you clarify it for me please?

  • @mercurial2276
    @mercurial2276 ปีที่แล้ว +2

    At 2:09 the horisontal pressure P*sin(theta) should act on the projected surface perpendicular to it.
    So Py * delta z * delta x = P * sin(theta) * delta s * cos(theta) * delta x
    Py * delta z = P * sin(theta) * delta z
    Py = P * sin(theta)
    And by same procedure Pz = P * cos(theta)

  • @syeddanyalzahid4162
    @syeddanyalzahid4162 2 ปีที่แล้ว +4

    please add the example videos too

  • @yuhema9779
    @yuhema9779 2 ปีที่แล้ว +2

    WOW thank you so much for your work! Now I know when the pressures at the same height would equal to each other!

  • @christopherreynolds9868
    @christopherreynolds9868 2 ปีที่แล้ว +2

    I believe a mistake was made on the manometer equation written in black at 10:15. The first column of mercury should use h3 not h1, right?

  • @lexverdillo
    @lexverdillo 3 หลายเดือนก่อน

    have seen some mistakes:
    1) the gravity value is 9.81
    2)you used the density of water for the mercury part at the end which made it wrong

  • @qiqqi0_087
    @qiqqi0_087 11 หลายเดือนก่อน

    the value for p(hg)gh should be. (13600) (10) (1), btw nice video and really helpful

  • @jansmith7387
    @jansmith7387 2 ปีที่แล้ว

    The density of mercury should be 13600 kg/m^3 right?
    Why is it 1000 kg/m^3 in your solution?

  • @starkgaming8681
    @starkgaming8681 7 หลายเดือนก่อน

    hindi me padhane me dikkat hai kya bhai

  • @NiMareQ
    @NiMareQ ปีที่แล้ว

    I wonder what would be the result if at 8:54 that solid obstacle was a piston.

  • @Nikhil_101
    @Nikhil_101 2 ปีที่แล้ว

    Pressure vector 0:26 seriously.....pls guide

  • @iqbalhafiz686
    @iqbalhafiz686 2 ปีที่แล้ว

    still waiting your example

  • @tiaanjansevanrensburg2762
    @tiaanjansevanrensburg2762 2 ปีที่แล้ว

    Thank you, You are amazing

  • @ganelojethrob.2096
    @ganelojethrob.2096 3 ปีที่แล้ว

    nc

  • @noel3385
    @noel3385 2 ปีที่แล้ว +2

    You gotta post the examples my man😩