Snell's laws proof using Huygen's principle | Wave optics | Physics | Khan Academy

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  • čas přidán 5. 09. 2024
  • Huygen's principle states that every point on a wavefront behaves as a source for secondary waves, whose common tangent (envelop) becomes the new wavefront. Using this principle, let's prove Snell's law of refraction - Ratio of the sine of angle of incidence to the sine of the angle of refraction is a constant.
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Komentáře • 95

  • @AtheistIndian2024
    @AtheistIndian2024 Před 3 lety +27

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  • @runzit2007
    @runzit2007 Před 3 lety +49

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    @levi4328 Před 3 lety +25

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  • @kumaraayush
    @kumaraayush Před 2 lety +8

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    @mihreteabgirma6351 Před 3 lety +35

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  • @anishaghosh101
    @anishaghosh101 Před 3 lety +78

    Why is it so hard to imagine a wavefront

    • @soumyadipbanerjee6744
      @soumyadipbanerjee6744 Před 2 lety +19

      Believe me, some of these things are actually very bizarre. I've spent a significant amount of my life trying to understand what a wavefront is 😂😂

    • @anishaghosh101
      @anishaghosh101 Před 2 lety +1

      @@soumyadipbanerjee6744 right....

    • @premium_56
      @premium_56 Před rokem +4

      @@anishaghosh101 you should have a rural background to understand wavefronts

    • @wahidjulfekar
      @wahidjulfekar Před rokem +1

      Particles in sync by vibrating at the same time with each other.... And the shape that appears if you look the thing from top veiw is basically the wave front.

    • @ghostnotbedsheet
      @ghostnotbedsheet Před rokem +2

      It's pretty simple you just gotta see/imagine the waves carefully and you'll get the wavefront

  • @jeyalilly3962
    @jeyalilly3962 Před 3 lety +5

    Great work thanks for making me to understand this concept

  • @nuraliahizzati6438
    @nuraliahizzati6438 Před 2 lety +2

    Thank you for the explanation. ive been watching many explanations about this from other youtube channel but still cannot fully understand because no animation was used. thank god i found this channel !!

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    @kamlesht.j9366 Před 9 měsíci +1

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    @sanvi4358 Před 9 měsíci +1

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    @scycefahim1783 Před měsícem

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  • @sia5475
    @sia5475 Před 3 lety +5

    Amazing way of explanation ❤️👍🏻

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    @nishitamahanta2005 Před 8 měsíci +1

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    @soumyadipbanerjee6744 Před 2 lety +5

    Why don't they teach like this at schools ?😭😭

  • @icarus3797
    @icarus3797 Před 3 lety +4

    Thanks a lot , Sir.

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    @bhawnajaswani2006 Před rokem +1

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    @PraptiPatro-tm8vu Před 6 měsíci

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    @v4mptae Před 3 lety +1

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    @arnabdas2416 Před 7 měsíci

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  • @hn4357
    @hn4357 Před měsícem

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    @priii1005 Před 8 měsíci

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    @pragathibharathi5520 Před 6 měsíci

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    @aishwaryab9974 Před 2 lety

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    @mohit7581 Před rokem

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    @Ranjithkumar-vh2kp Před rokem

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    @kananthi1218 Před rokem

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  • @bhuvanvayam928
    @bhuvanvayam928 Před rokem +1

    Victory for huygens

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    @jhunamanidei4272 Před 8 měsíci

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    @factsss7 Před 3 lety +2

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    @jingyasajena5624 Před 2 lety

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    @udayammanikumaran9744 Před 2 měsíci

    superb

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    @RaviKumar-sw8dh Před 2 lety

    Please add this video to the wave optics playlist also make videos on another topic of this chapter because the way you explain makes me love physics ❤❤😀

  • @Danger12618
    @Danger12618 Před rokem

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  • @HyperXRahat
    @HyperXRahat Před rokem

    Thank you sir

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    @johnnjuguna84 Před 2 lety

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    @mananvelani3042 Před 3 lety

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    @stfu5210 Před 9 měsíci

    better then school lectures dude literally solved the confusion like it was nothing

  • @Pyara_munda
    @Pyara_munda Před 2 lety

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    @shubhamshubham6621 Před 3 lety +1

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  • @ernestschoenmakers8181
    @ernestschoenmakers8181 Před 3 měsíci

    Light is not really slowing down if it enters an optical denser medium like water but it's the interiaction with the medium which is called group velocity is less than its normal velocity called the phase velocity.

  • @brighttips8203
    @brighttips8203 Před rokem

    Super explanation

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    @shubhamsaha6130 Před 2 lety

    Hey Master! You are just great !!!

  • @davidbrisbane7206
    @davidbrisbane7206 Před rokem

    I saw a video on Fermilab which basically says that you can't use Huugen's princple to determine the correct path of light through the second medium because you can align the wave fronts in *several ways* in the second medium, only one of which agrees with experimentation.
    To understand and derive Snell's law correctly, it looks to me like it is necessary to deduce this law from Maxwell's equations.

  • @1haki.sirius
    @1haki.sirius Před 23 dny

    Finally I got it
    I am crying 😭

  • @prathameshprafulhole2662
    @prathameshprafulhole2662 Před 6 měsíci

    I came here after viewing the videos of reflection and huygens theory and it just keeps getting better!

  • @harikrishnan3711
    @harikrishnan3711 Před 3 lety +2

    AWSM :)

  • @REVIEWSGALATTA
    @REVIEWSGALATTA Před rokem

    Using the same triangle if i calculate the cos i/cos r i get the constant , is that also right?

  • @sirajali2475
    @sirajali2475 Před 3 lety

    Amazing

  • @nineteentwentytwo
    @nineteentwentytwo Před 3 lety +1

    DOES THE INTERFACE ACT AS A HUYGEN SOURCE OR IS IT THE INCIDENT WAVEFRONT WHICH ACTS A HUYGEN SOURCE...PLZ EXAPLAIN🙏🙏🙏

  • @audreyli9535
    @audreyli9535 Před 3 lety +1

    at 10:58, if it has a slower velocity and speed, shouldn't it take a different time, thus the statement in the video false?

    • @the__saksham
      @the__saksham Před 3 lety

      no the velocity maybe different, the the time is same.
      when the endpoint of wavefront touches surface in time 't' then the wavelet produced from the first point will propagate in that time t.

    • @audreyli9535
      @audreyli9535 Před 3 lety +1

      @@the__saksham Ah, ok. Thank you for your response.

  • @djtechzz
    @djtechzz Před rokem +1

    why will be the time be same in 11:08

    • @dr.allwyndsouza5246
      @dr.allwyndsouza5246 Před rokem

      Same question, one is incident ray other is refracted ray, how can they make both of them simultaneous 😅

  • @rohansahni9701
    @rohansahni9701 Před 2 lety

    I have one question : when finding the distances, why is the time same for both??

    • @someones2413
      @someones2413 Před 2 lety

      because they are travelling at the same time, one is just further. We are taking a set time frame and saying that one travelled with a distance of v1t and other with v2t

  • @mustafak6157
    @mustafak6157 Před 2 lety

    How are time taken equal?

  • @AnushkaSharma-ok2er
    @AnushkaSharma-ok2er Před 6 měsíci

    My goodness god bless u😭

  • @studyharder3765
    @studyharder3765 Před 3 lety +2

    5:17 lmao xDD

  • @robbidharmarao7451
    @robbidharmarao7451 Před 2 lety

    How time is cancelled

  • @VG__
    @VG__ Před 2 lety

    3:30
    11:40

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    @thingintresting5495 Před 10 měsíci

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    @chukhu4669 Před 2 lety

    I love you

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    @murugesansasi8306 Před 3 lety +1

    First likes 👍

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    @kashishrane5800 Před 2 lety

    😀👍

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    @ddesai8100 Před 3 lety +2

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  • @murugesansasi8306
    @murugesansasi8306 Před 3 lety +1

    First View

  • @anishaghosh101
    @anishaghosh101 Před 3 lety

    I wish light is not some kind of field

    • @ernestschoenmakers8181
      @ernestschoenmakers8181 Před 3 měsíci

      An eletromagnetic field that is waving but not like normal waves like waterwaves but waves that come in packets called photons.

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    @bezakibret3709 Před 3 lety

    So hard

  • @arshhiyasinha2064
    @arshhiyasinha2064 Před 3 lety

    13th like...

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    @vaibhavtiwari8113 Před rokem

    Now 69 comments 😗

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    @vineet5701 Před 3 lety

    First view

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    @alamgirhossien4004 Před 3 lety

    awesome