Why does light bend when it enters glass?

2024 ж. 15 Мам.
748 985 Рет қаралды

The motion of light depends crucially on the material in which it is traveling. When light passes from one medium to another, an unexpected thing happens: the direction of travel changes. There are many explanations for why this happens and many of those explanations are wrong. In this video, Fermilab’s Dr. Don Lincoln explains the real reason.
Correction: Dr. Don is aware that the direction the plus and minus charges moved at 12:02 is backward. He apologizes.
Related video:
• Why does light slow do...

Пікірлер
  • I like how this channel pays attention to the comments, and tries to clarify things. I appreciate it!

    @flyingskyward2153@flyingskyward21535 жыл бұрын
    • I appreciate your comment appreciating the creator's appreciation of the comments.

      @Zamicol@Zamicol5 жыл бұрын
    • Zachary Collier I appreciate your comment appreciating Flying Skyward's comment appreciating the creators appreciation of the comments.

      @adityaiyer7600@adityaiyer76005 жыл бұрын
    • I would really appreciate if he could explain to me how that explanation would work with a TE polarized wave (look for my other commentary).

      @alephii@alephii5 жыл бұрын
    • @@stevenutter3614 I appreciate your comment that appreciated the prolonged thread of appreciation, as I realized how I assured the right spelling too :)

      @kariossyr6018@kariossyr60185 жыл бұрын
    • @youareonthetube1 Have I just seen a different video from yours? I did not hear the word "lie" in it. He does not talk about conspiracies here. All he is saying that some people in an effort to explain things to lay people (and themselves) are wrong or incomplete. Has your physics teacher when he talked about gravity explained curved space to you? I do not think so. In making things easier some people get too far with simplification and others have not understood the matter themselves that they are trying to explain. Science is about falsifying wrong hypotheses and explanations and that is exactly what this guy has done. Please tell me in what publications in scientific magazines you have spotted fraud and misinformation and proove to us what is wrong with it. Just saying that lies are getting spread without showing what and where is dishonest.

      @Pit.Gutzmann@Pit.Gutzmann5 жыл бұрын
  • this is the answer I have been searching for the past 15 years (since my 9th grade). Thank you very much.

    @samvid1992@samvid19924 жыл бұрын
    • DotaLove I also asked this question in the 9th grade I didn’t get an answer until now. I am 70 years old.

      @richriley5832@richriley58324 жыл бұрын
    • So true they always told how it bends but never told why this happens They were like you will learn this in higher standards

      @rayyanmaindargi1493@rayyanmaindargi14934 жыл бұрын
    • I still can't understand how this bending of light is any different from the gravitational lensing of light by massive objects (like black holes). That's due to gravity curving space time around it and light following the curved path. However, doesn't it hold true in this case too? May be glass being denser than air ( analogous to a galaxy being denser than vacuum), leads the space time around and with in the glass to bend a little bit (way smaller in magnitude though) and as a result we see the light through glass's denser gravity? (Similar to the Eddington's experiment to prove Einstein's theory of general relativity by seeing a star's apparent and not the real position in the sky due to its light bent by sun during a total eclipse. Similar to how we see the position of a coin placed at the bottom of a water jar to be slightly raised due to bent rays? And Einstein definitely used Maxwell's equations in his general relativity. So, couldn't this all be connected and we're understanding refraction wrong all this while? I don't know.

      @viveklakshman2897@viveklakshman28974 жыл бұрын
    • @@richriley5832 😱😱😱

      @mohammedkaif5522@mohammedkaif55224 жыл бұрын
    • Vivek density and gravity are not the same thing; an extremely dense object will have identical gravitational force as a larger more diffuse object (as long as the mass/energy of the two objects is identical). One way to think of this is if the Earth is compressed to a size of roughly a 1cm diameter. Obviously it is extremely dense at this size, but it’s total mass/energy is the same. The space time curvature at the distance from 1cm Earth to the moon will be identical as the curvature from normal Earth to the moon despite the difference in density. Thus the moons path around 1cm earth will be identical to its current path around the Earth.

      @malcolmtent@malcolmtent3 жыл бұрын
  • Oh my God, finally i got the answer, i asked this question to my teachers, colleagues and family many a times about what actually happens at the atomic scale, they either ignore or explain those faulty explanations. Now i can die in peace Thanks you Dr Don Lincoln, 🙏🙏🙏 Love From India🇮🇳🇮🇳🇮🇳

    @prathamarya9825@prathamarya98253 жыл бұрын
    • Me too , some professors like HC Verma etc explained , but they were wrong too becoz they used the Huygens principle which is indeed impractical

      @benYaakov@benYaakov3 жыл бұрын
    • Baat to sahi hai lekin hard core physics wala answer samkh me kuchh nahi aya .

      @83abhinavnigam@83abhinavnigam3 жыл бұрын
    • Hi indi

      @aceplayer-vd4zr@aceplayer-vd4zr3 жыл бұрын
    • Yahi to Indian Education system ki khasiyat hai

      @akanshavishwakarma272@akanshavishwakarma2723 жыл бұрын
    • @@akanshavishwakarma272 ?

      @aceplayer-vd4zr@aceplayer-vd4zr3 жыл бұрын
  • Finally, this has been driving me crazy for years. Literally years.

    @madebyrasa@madebyrasa4 жыл бұрын
  • I don't think I'm alone in saying that your videos //can't// be too long - I would happily watch you present a documentary. Thank you for your work, Doc!

    @joshuaentwistle960@joshuaentwistle9605 жыл бұрын
    • Watch some of Leonard Susskind's lectures where he will give you a glimpse of how stuff really is if you have an appetite for more. You won't know how to do the math but you can follow his arguments as he goes through them and will come out spellbound.

      @coastwalker101@coastwalker1015 жыл бұрын
    • Ditto! I'd honestly rather watch your videos than Neil deGrasse Tyson's or Leonard Susskind's! (Maybe because I'm more interested in quantum physics than astronomy, for the former, and because you work from scripts, for the latter.) Maybe not more than Sean Carroll, though. Oh, but if you could do a feature-length documentary _with_ Sean Carroll, that would be incredible!

      @tildessmoo@tildessmoo5 жыл бұрын
    • +1

      @gabrielvonorlais7128@gabrielvonorlais71285 жыл бұрын
    • yeah me to

      @birb1686@birb16865 жыл бұрын
    • I emailed him one time and he told me he has lecture you can find them at the Great courses plus website under Dr Don Lincoln.

      @pompeyboy7805@pompeyboy78055 жыл бұрын
  • I don't think this was a very long video. I'd love to see more 10+ minute videos on this channel that go into depth on a physics topic!

    @PhysicsPolice@PhysicsPolice5 жыл бұрын
    • AGREED

      @StephenMortimer@StephenMortimer5 жыл бұрын
    • Me too. I really prefer the long videos, not the short, with deep dives into the subject matter

      @CyberwizardProductions@CyberwizardProductions5 жыл бұрын
    • same

      @irninguy6659@irninguy66595 жыл бұрын
    • Didn't even realise ten minutes passed.

      @kostantinos2297@kostantinos22975 жыл бұрын
    • Maybe mark deep dive videos similarly and only create them according to what interests viewers or creator. Keep the short ones as it keeps the channel alive and more input from viewers. Maybe a weekly deep dive to start?

      @MB-hs4vp@MB-hs4vp5 жыл бұрын
  • I was searching for this answer since i have developed my intrest in physics. i have searched a lot but was never able to find a proper answer. Thank you so much. i am satisfied now. I can now die in peace

    @devankthawre5730@devankthawre57304 жыл бұрын
    • No need to die. Live long and prosper 🙂.

      @deanschulze3129@deanschulze31292 жыл бұрын
    • ​@@deanschulze3129exactly 😊

      @anonymoushere7786@anonymoushere778610 ай бұрын
  • Absolutely awesome explanation! The marching soldiers explanation always bothered me, and (regarding speed of light in matter) I could tell the scattering or absorption/emission explanations had to be false because the direction of light would change. It is incredibly refreshing to finally have straight answers to these fundamental questions! Thank you so much!!

    @j10001@j100014 жыл бұрын
  • This is my favorite channel for debunking every explanation I ever learned in my college physics classes.

    @arandomperson8336@arandomperson83365 жыл бұрын
    • What had you debunked? Fermat's principle is right! Not complet but right!

      @LaurentBessondelyon@LaurentBessondelyon4 жыл бұрын
  • As a high schooler, I've waited years for someone to explain the correct reason of why light bends. Thank you so much. 😭

    @divyamgoel8902@divyamgoel89025 жыл бұрын
    • And are you sure this is the right answer? If you understood it well then tell me why TE polarized light also bends...

      @alephii@alephii5 жыл бұрын
    • He's wrong Concave Earth

      @jamiedimond9419@jamiedimond94195 жыл бұрын
    • @@alephii by TE do you mean transverse electric, any light with a transverse electric field? As in the electric field oscillates orthogonally to the direction of energy transfer? As in any monochromatic light in a homogeneous linear dielectric? I get you're trying to sound smart but you literally just tried to use the video's example as an example that wasn't explained by the video.

      @lachlanbunney6545@lachlanbunney65455 жыл бұрын
    • @@lachlanbunney6545 still, TE light also bends. The physics can't be different, I am not trying to be smart, just pointing out that if there is a flaw in the explanation then it is probably wrong!

      @alephii@alephii5 жыл бұрын
    • @@lachlanbunney6545 By the way, a transverse electric field in TE doesn't mean that electric field oscillates orthogonal to the wave propagation, because that is obvious in the case you mentioned, but TE refers to the electric field transverse to the incidence plane, the plane that contains the incident and reflected light... The explanation is incomplete and probably wrong, would be much more precise to use the phase continuity in the interface...

      @alephii@alephii5 жыл бұрын
  • I normally don't want to know the wrong answers.. but your style made it worthwhile...

    @hillaryclinton2415@hillaryclinton24152 жыл бұрын
  • This is exactly how I wanted my questions to be answered. I appreciate it!

    @ezekielcamacho1483@ezekielcamacho14834 жыл бұрын
  • Nice when the presenter is also the thinker and loves the topic. This channel is our favorite, correcting many misconceptions and wrong / incomplete teachings. Dr. Lincoln clearly and succinctly explains.

    @algorithminc.8850@algorithminc.88505 жыл бұрын
    • Yet, there is something wrong with his explanation! It simple don't work for TE polarized waves... So, he is replacing good explanations with a wrong one

      @alephii@alephii5 жыл бұрын
    • He never said there was anything wrong with those principles, he only claimed and demonstrated why they are not the causal explanation of the phenomena.

      @MrGabrucho@MrGabrucho4 жыл бұрын
  • Dear Fermilab. This second video does not really tell the story either. This is just another way of deriving Snell’s Law. The crucial point here is why only the normal component of the E field is affected by the permittivity. The “real” reason for the behaviour of light in a medium in this context is that light represents a force that in turn induces dipoles in the medium. This gives rise to a London force that always is attractive. Any component of the attraction other than the normal cancels out by an opposite force on the other side. Think of concentric circles on the surface around the focus that each result in an attraction. The larger the radius, each circle have more slanted induced dipoles. This is also the reason that the reflection results in polarization effects (Brewster). It is illustrative to imagine an object on a transverse wave. In an idealized setting the object will move only up and down - there is no sideways motion. Likewise, the London force resulting from the incident light will only affect the normal component (of the EM field in this case).

    @marcofsw@marcofsw5 жыл бұрын
    • @@no-one-in-particular Finally somebody says it. I felt the same way.

      @davorinmestric5134@davorinmestric51345 жыл бұрын
  • You have made a complicated phenomenon look simple, but I can understand the great effort behind it. Thank you Professor

    @amudharamesh@amudharamesh Жыл бұрын
  • These videos are really saving innumerable people from carrying on with the misconceptions....this way is totally so much effective to explain the misconceptions first and then the inconsistensies of them and then finally to explain the correct answers...a very few youtubers do so...i remember veritasium also said about the effectiveness of this method on the people...Thanks Dr.L

    @kamrunnaharrani8419@kamrunnaharrani841911 ай бұрын
  • this guy has the best ending line out of all science channels on youtube.

    @supreetsahu1964@supreetsahu19645 жыл бұрын
  • 0:29 OMG my comment in a KZhead video for the first time ever. I'm so happy for some reason. But Thank You so much +Fermilab for clearing up our confusion.

    @BangMaster96@BangMaster965 жыл бұрын
  • Here a Graduate Physicist. There is also another simple explanation for this: (As consequence of the conservation of momentum of photons) If in medium 1 the index of refraction is n1 and in medium 2 the index of refraction is n2 and for the definition of index of refractions and wavelength we have: n1 = c / v1 , v1 = λ1 * f n2 = c / v2 , v2 = λ2 * f Dividing the above equations we obtain: n2 / n1 = λ1 /λ2 So if n2 is higher than n1, the wavelength in medium 2 is smaller than in medium 1. Now because the photon momentum is: p = h / λ Applying the conservation of momentum of the incident and transmitted photon along the parallel line of medium separation: p1 = p2 → h/λ1 *sin(θ1) = h/λ2 *sin(θ2) → n1 *sin(θ1) = n2 *sin(θ2) This is the Snell Law!! So the light bending is just a consequence of the conservation of momentum of photons!

    @SimulatingPhysics@SimulatingPhysics3 жыл бұрын
    • The conservation of energy only applies to anything with mass and nothing with mass can travel at the speed of light.

      @scottdc2105@scottdc21053 жыл бұрын
    • @@scottdc2105 "The conservation of energy only applies to anything with mass": Not true. Conservation of energy always applies . In the case of electromagnetic field (photons), conservation of energy is guaranteed by Poynting theorem: en.wikipedia.org/wiki/Poynting%27s_theorem Also note that my proof doesn't use conservation of energy but conservation of momentum. The conservation of momentum in electromagnetic field is guaranteed by the Maxwell stress tensor : en.wikipedia.org/wiki/Maxwell_stress_tensor

      @SimulatingPhysics@SimulatingPhysics3 жыл бұрын
    • @@SimulatingPhysics But if light has no mass how can photons have mass or momentum? Am i looking at it too simplistically?

      @scottdc2105@scottdc21053 жыл бұрын
    • @@scottdc2105 A particle without mass can have energy and momentum. The classical formulas (p = m*v , E = 1/2 * m *v^2) are not valid for particles with speed near the speed or light or with the speed of light. Instead we need to use the quantum and relativistic formulas: p = h/λ , E^2 = (p*c)^2 + (m*c^2)^2

      @SimulatingPhysics@SimulatingPhysics3 жыл бұрын
    • @@SimulatingPhysics nice

      @rahulkulkarni3238@rahulkulkarni32383 жыл бұрын
  • I really like these videos. The two that deal with light's speed in water and how it bends were very enlightening to me. I'd also like to see one on how light reflects from a surface at the same level as the other two.

    @richlauterbach8431@richlauterbach84312 жыл бұрын
  • Stopped watching these videos for a while and now it has an epic intro... Nice

    @juanignaciovargas5810@juanignaciovargas58105 жыл бұрын
  • I love this channel because when I asked this from my teacher she simply it said,"its a law' and never explained........

    @lakshyagoel9661@lakshyagoel96615 жыл бұрын
    • Oh my, this is the worst way to teach anything!

      @isntitabeautifulday1648@isntitabeautifulday16485 жыл бұрын
    • +Lakshya Goel You really arent going to get far in mathematics or physics if you keep asking why questions - the universe works the way it works, be glad it gave you a chance to experience it.

      @NinuRenee@NinuRenee4 жыл бұрын
    • @@NinuRenee lol wtf! The whole point of science is to explain things, curiousity is what leads to discoveries. You are pretty much an animal in forest who doesn't know anything if you just say "it's the way it is, no fucking reasons for it to be" shut the fuck up if you can't understand things, don't demotivate people who actually want to find logic and explaination for physical phenomena....

      @affinix887@affinix8874 жыл бұрын
    • @@affinix887 Maxwell's equations tell us "how" electricity and magnetism behave, they don't tell us "why" the equations are what they are. Science finds out and describes "how" nature works; it doesn't and cannot tell us "why".

      @rclrd1@rclrd14 жыл бұрын
    • @@rclrd1 That's because the why question is meaningless.

      @sthamansinha243@sthamansinha2432 жыл бұрын
  • Never got this explanation ever before. Thank you sir.

    @devashrikulkarni1337@devashrikulkarni13374 жыл бұрын
  • Great video. This channel is a real public service

    @EclecticSceptic@EclecticSceptic Жыл бұрын
  • I love that you know and clearly identify the distinction between resultant description and physical causation, as well as the distinction between a mathematic description and its physical interpretation. It is too easy to stop at fermat's principle as the cause or to stop at the mathematical derivation and just say "the math says so." Very well done!

    @andrewmayles3369@andrewmayles33695 жыл бұрын
  • Methinks: "ha you obviously haven't heard of my analogy because it's simply fantas..." Dude: "number two, the marching soldiers anology" Methinks: "godamnit"

    @opheliabawles9646@opheliabawles96465 жыл бұрын
    • Haha

      @ankitaaarya@ankitaaarya5 жыл бұрын
    • The one I remember being taught is the rolling barrel analogy. If you imagine a cylindrical barrel (more like an oil drum) rolling from pavement to grass at an angle, upon striking the grass first, one end will experience drag relative to the other and produce a torque similar to what Mr. Fermilab explained with the "rigid" lines of soldiers. It does replicate the geometry, but like Fermat's principle it provides no explanation as to why photons (which are often considered points or at least spherically symmetrical) would behave like rolling cylinders.

      @problemecium@problemecium4 жыл бұрын
    • Atleast you guys were taught analogies...😐😐 #fml

      @ashwinbabu6837@ashwinbabu68374 жыл бұрын
    • In our schools they usually make you memorize the formulas and don't even dare to create some stupid wrong analogy to explain things even for a while

      @johnjordan3552@johnjordan35524 жыл бұрын
  • What I needed here was for the sound and sight of your explanation to slow way down when it entered my head so I could understand it.

    @Sgt_Bill_T_Co@Sgt_Bill_T_Co5 ай бұрын
  • This was my favorite subject when I was un undergrad! Calculating the resonance frequency of the electrons and seeing it in person was amazing.

    @andreaorozco9660@andreaorozco96602 жыл бұрын
  • You said that "The only way to really answer the question as to why light bends is ... to embrace the fact it is made of oscillating EM fields..." And yet Richard Feynman, in 1984, clearly explained why light bends using photons as particles instead. In his book, "QED: The Strange Theory of Light and Matter" he wrote: *"I want to emphasize that light comes in this form - particles. It is very important to know that light behaves like particles, especially for those of you who have gone to school, where you were probably told something about light behaving like waves. I'm telling you the way it **does** behave - like particles." * Once he established that you were to think of light as particles, he covered wave-particle duality by showing how the probabilities of detecting a particle at a given spot mapped into waves thereby covering wave-particle duality. After reading Feynman's book, you can't help but think that glass acts as a giant Dalton Box scattering photons hither and yon but at the end, the most probable path a photon can take is through the glass.

    @michaelgreene9889@michaelgreene98895 жыл бұрын
    • Thank you very much for mentioning the book, it helps people who want to get more in depth in the topic.

      @apolloniuspergus9295@apolloniuspergus92955 жыл бұрын
  • So many insightful comments. Glad to see so many people thinking

    @jimleane7578@jimleane75785 жыл бұрын
  • Sir , you are a LEGEND. This is the best explanation of refraction ever , in my graduation i learned this E perpendicular and E parallel but understood it today after 9 years, thanks for making such a video. Love from India🇮🇳🇮🇳🇮🇳

    @maheshkanojiya4858@maheshkanojiya48582 жыл бұрын
  • Thanks a lot. I was looking for this concept and I am satisfied that the explanations you debunked(you also explained them well) clarified the problems I was having. I want to talk with you, Sir.

    @Noone-wz1ys@Noone-wz1ys3 жыл бұрын
  • It is surprising that even people who are into science communication on KZhead end up teaching wrong stuff and we need channels like this to spread the truth. Please consider my request on making a video on The Principle of Least Action!

    @vinayaka9438@vinayaka94385 жыл бұрын
    • we need this, please!

      @KiwiNom@KiwiNom5 жыл бұрын
    • Yes!!

      @frederickj.7136@frederickj.71365 жыл бұрын
    • yes please!

      @kenmcc85@kenmcc855 жыл бұрын
    • +1

      @35571113@355711135 жыл бұрын
    • You might find Coopersmith's _The Lazy Universe_ helpful: www.goodreads.com/book/show/33570590-the-lazy-universe

      @michaelsommers2356@michaelsommers23565 жыл бұрын
  • Absolutely Great, both the Explanation and the way it's explained. Thank you !!

    @CDescardeci@CDescardeci5 жыл бұрын
  • Thank you for this explanation, I was taught the soldier reasoning ( 1966) at school and it never seemed plausible to me. I have no formal science education except high school science but I am an avid follower of all science ( subscribed to the New Scientist magazine for nearly 50 years ) and now subscribe to quite a few science based channels on the internet. This is a great time to be alive !!!!

    @peterclancy3653@peterclancy3653 Жыл бұрын
  • Simple, elegant and fascinating answer. Thank you.

    @abuaseel2903@abuaseel29037 күн бұрын
  • I'm so glad to see fermilab explain this so acutely! It's all about the capacitance of the glass to store the electric field of the light, counteracting it, and finally returning the stored energy of the light upon it's exit.

    @Chaunton@Chaunton4 жыл бұрын
  • Dr Lincoln, that video wasn't long at all. And thank you for the brilliant explanation! 👍

    @michaelblacktree@michaelblacktree5 жыл бұрын
  • I am really astonished as a physics teacher.Exellent explanation.i am highly satisfied.For the past 20 years I simply explained by mathematical expressions.Now prof explained with electric field concepts is seriously amazing

    @wisdominphysics@wisdominphysics2 жыл бұрын
  • This might be my favorite physics channel! Awesome work!

    @skylerjhill@skylerjhill Жыл бұрын
  • They never taught me this..glad to be here🤗

    @unknownnepali772@unknownnepali7724 жыл бұрын
  • Did you know that first explanation was the inspiration for the short story "Story of your life" which was made into the movie "Arrival?" It was somehow explained tot he author that light must somehow KNOW what the shortest path would be when going through a medium change. That meant that light had already seen the future. I guess it was really Variational principle in general, but the light thing caught him first.

    @orionred2489@orionred24894 жыл бұрын
  • Thank you for the detailed explanation on the physical nature of what Epsilon means. I'm curious to know how the Tand Delta (or loss tangent) relates to this? Specifically I would like to know how does the energy in the field gets converted into heat within die glass. Thank you in advance.

    @riaanferreira2130@riaanferreira2130 Жыл бұрын
  • This video finally makes sense of Feynman's QED for me! I may have missed his explanation, but I never understood where the clock counting method came from.

    @caderlocke8869@caderlocke88693 жыл бұрын
  • There are differing motives when explaining physics: 1. Describe what happens in a way people can remember WHAT happens. 2. Describe what happens in a way people can have a rudimentary understanding of WHY it happens. 3. Describe what happens in a way that only physics students can understand. I like that you took a middle ground between 2 and 3 in this video. Explaining physics to non-physics students is tricky business. :)

    @HarshColby@HarshColby5 жыл бұрын
    • But can you prove existence and uniqueness of these motives?

      @cryora@cryora5 жыл бұрын
  • Great video! I was always so damn unsure about those trivial explanations but this video explained very easily about that light phenomenon. Going through the wrong ones first made me remember about Dr. Richard Feynman and tomorrow is his birthday! 🎂🎉🎆

    @aniketchandra6492@aniketchandra64925 жыл бұрын
  • Fascinating! I saw this right after the episode on speed in different substances. So cool, and it was nice to learn Fermat’s explanation, too, getting it in context with wave interaction.

    @johnnyragadoo2414@johnnyragadoo24144 жыл бұрын
  • What a spectacular video, the explanation, the graphics, the editing just perfect. If they taught science like this is schools, everyone would go for science

    @navd1488@navd14882 жыл бұрын
  • About Maxwell's equations: "I let you the derivations because that's the fun part". Thanks !

    @fredgotpub871@fredgotpub8714 жыл бұрын
  • This answers one of my party killer questions i asked for almost 20 years. Thank you! Is there a video explaining reflection?

    @moranjackson7662@moranjackson76625 жыл бұрын
    • after watch 2 videos, i think electric part of light is not enough to properly explain reflection think about it. reflection need parallel and perpendicular part of electric field to flipped 180 degree AND material generated electric field stronger after hit by light to make electric field flipped someone can correct me if im wrong or maybe have better explanation :D

      @user-vv9jg8fo7e@user-vv9jg8fo7e3 жыл бұрын
    • I think reflection is explained by the fact that light is changing magnetic and electric field not just one or the other, the change in electric field gives rise to magentic and visa versa , in the reflection case it the electric field goes to zero as it is completely completely reflective material and hence the change in electric is negative which produces magetic field in the opposite direction which then induces electric field in opposite direction hence reverse the perpendicular component of the field while not affecting the parallel one and effectively reversing the direction of propagation in the perpendicular direction.

      @vik24oct1991@vik24oct19912 жыл бұрын
    • @@vik24oct1991 Okay, wow. I have to read this a couple of times. But thanks!

      @moranjackson7662@moranjackson76622 жыл бұрын
    • So have experiments been done with varying electric field intensity in glass/water to see if that changes the angle?

      @kaushalsuvarna5156@kaushalsuvarna5156Ай бұрын
  • Exactly what I was looking for, Thank you! And the video is high quality, looks and sounds awesome

    @kwillo4@kwillo4 Жыл бұрын
  • Thanks for clearing up a misconception that was taught to me that I've been passing down to my students. Why doesn't the parallel component have to decrease, I missed that.

    @integratorpi@integratorpi4 жыл бұрын
    • Same here, wondering why the parallel one did not decrease

      @LWL-sz5lh@LWL-sz5lh2 жыл бұрын
    • Because both initial components are actually derived from boundary conditions for M and E part. So this is only valid at entrance point. Further on, the wave propagates straight through that medium and both components are affected by the medium and as long as the medium remains the same, it behaves like perpendicular entrance to that same medium. Otherwise the light would curve in that medium which is not the case.

      @miasanmia3229@miasanmia32292 жыл бұрын
    • Apparently the ‘epsolom’ (sorry don’t know spelling) is bigger in glass than in air. This effects the perpendicular component. (I’m not sure myself why this doesn’t affect the parallel component too. Apparently it’s just the perpendicular component 🧐) Because of this, the angle of the perpendicular component is different to that of the parallel component. It is made shorter This creates the angle we see when light his glass.

      @leahfletcher6100@leahfletcher61002 жыл бұрын
    • You didn't miss it. He didn't explain it - he asserted it "from the calculus".

      @gilroy0@gilroy02 жыл бұрын
    • He didn't explain it. 12:22 He showed E field entering perpendicular to the surface, thus the electrons in the glass lined up horizontally to cancel it, so he 'cleverly' deduced that the perpendicular E component got reduced in the glass. If E field entered at an inclination (which should be when light entered at any random angle), then by same logic, electrons in the glass should line up in appropriate direction to cancel it, so both parallel and perpendicular E field components should change.

      @rgudduu@rgudduu2 жыл бұрын
  • Thanks! Great video! Reminds me of what one of my professor told me long ago. Classical geometric optics is just Maxwell's equations + matching boundary conditions

    @jcr723@jcr7235 жыл бұрын
  • Everytime when he says "Physics is Everything", that brings a smile on my face (being a student of physics maybe !)

    @yashupase4464@yashupase44643 жыл бұрын
    • Yes, when you study differential equations you imagine the whole world is an equation. Preposterous of course.

      @nosuchthing8@nosuchthing83 жыл бұрын
    • @@nosuchthing8 Whoooaaa

      @maxwellsequation4887@maxwellsequation48873 жыл бұрын
    • Yeah 😀

      @eb3574i@eb3574i3 жыл бұрын
  • I always loved to think about refraction in terms Fermat's principle of least time. Though I never really understood why would light obey this principle and know how to smartly change directions . Thank you for clearing things out

    @diniaadil6154@diniaadil61542 жыл бұрын
  • I searched a lot for this question but no answer was satisfying me, but your explanation is amazing, I never ever even imagine that the knowledge of electromagnetism is behind the bending of light

    @satechknowledge2303@satechknowledge23033 жыл бұрын
  • Best simple explanation based on true theory. You're great!

    @igorkarlic2297@igorkarlic22975 жыл бұрын
  • I have derived those two results about perpendicular and parallel components in my electromagnetic field theory class but never thought it had so much connection with light bending...i wish my professors were like you to tell the real stuff and not making me derive these results for mere marks in exam.

    @harshsharma5768@harshsharma57685 жыл бұрын
    • Yeah, that has always been a problem for me. I'm fine with learning equations and seeing that it works, but I want to know how it works, otherwise I'm not understanding a god damn thing. 'The sun shines' is not an explanation as to why it emits light. Might as well say god diddit and here's an equation that can calculate the angle when it hits glass.

      @stylis666@stylis6665 жыл бұрын
    • Talking about radio waves: These can be bent and change polarization in electric fields - think antenna theori. So that should also be possible with light? Is there any examples of bending light or changing polarity shining it between charged plates?

      @Tore_Lund@Tore_Lund4 жыл бұрын
  • I'm an RF engineer and this is one of the best electromagnetic videos that I've seen.

    @danielbailey6957@danielbailey6957 Жыл бұрын
  • This presentation is quite excellent. Thank you

    @ninja5411@ninja54112 жыл бұрын
  • There's a readable explanation of the quantum kind in Feyman's QED book. This video gave the best classical explanation that I've seen.

    @hanks.9833@hanks.98335 жыл бұрын
    • What page?

      @bradbadley1@bradbadley15 жыл бұрын
    • @@bradbadley1 You can also watch his lectures, google "feynman new zealand lectures"

      @davorinmestric5134@davorinmestric51345 жыл бұрын
    • Thank you for telling us this.

      @apolloniuspergus9295@apolloniuspergus92955 жыл бұрын
  • "Don't forget Uli's goodbye cake! 2:30pm" I don't know why that cracks me up. Dr. Don, you are freaking awesome!

    @hamentaschen@hamentaschen5 жыл бұрын
    • The cake is a lie

      @Trias805@Trias8055 жыл бұрын
  • I've been contemplating this so much! Thank you! 😁

    @acathosh@acathosh4 жыл бұрын
  • Excellent presentation. Please keep enlightening us straightforward, with no bendings 😁😁!!!

    @drdagotos30@drdagotos304 жыл бұрын
  • Very nice video. The example shown is for TM polarized light. Given that the boundary conditions are quite different for E and B, it'd be interesting to explain why we obtain the exactly same deviation for TE polarized light :)

    @guerom00@guerom003 жыл бұрын
    • You dont need any specific form of boundary condition. It is entirely generic. Check Griffiths.

      @mrtienphysics666@mrtienphysics6665 ай бұрын
  • And yeah, almost forgot. This wasn't a long video. I really like good explanations. A good explanation deserves ALL the time needed for that. I wouldn't mind longer videos in the future if it is required. I'm subscribing cause I love physics and this channel makes me love physics even more.

    @ShenLong33@ShenLong335 жыл бұрын
  • Thank you! I love how you explain why the misconceptions are wrong.

    @Strumtreppen@Strumtreppen9 ай бұрын
  • Thamkyou for this video. I have taught this to my students every year for the last decade. I have found that if you use a car in method 2 , instead of a matching band it works much better, one wheel slips and slows as it moves onto the mud, the other wheel grips and pushes the car around.

    @deanbettiol1984@deanbettiol19844 жыл бұрын
  • Thank you for the lovely explanation. I have a couple of questions for you and would be grateful for your thoughts: 1. Why doesn't the parallel component polarize the charge/substrate molecules? I mean what's happening physically that prevents that, not mathematically? 2. If I pump in external charge to a substrate using something like a Van de Graaff generator, would it change the permittivity and hence the ref. index of the substrate?

    @kshitizgupta2213@kshitizgupta22132 жыл бұрын
    • Woah fuking great comment

      @dedhuntgaming5613@dedhuntgaming5613 Жыл бұрын
    • I subscribe to that first question. All i can find is math/physics hellish formula stuff.

      @CCVEstremoz@CCVEstremoz3 ай бұрын
  • I taught science & marked HSC physics over 34 years & although I have since retired from teaching; I learnt something that I didn't know. You are always learning & that is what makes life soooo inteesting!

    @deanjericevic8912@deanjericevic89122 жыл бұрын
    • 34 years teaching science and marking hsc physics…and you never knew the answer to this question, nor in 34 years try to figure it out on your own in case someone asked?? What else don’t you know and never took the time to learn answers to basic questions?? YikeZzzzzzzz

      @AirborneAnt@AirborneAnt3 ай бұрын
    • Yes, I taught Science; geology, chemistry, biology & physics along with mathematics over the 34 years. You are obviously ignorant of a teachers work load to somehow think that you have time to find out & research every nuance of every subject that you teach. There was not a weekend that I was not marking assignments, tests or setting them. Apart from that also engaged in students welfare. Then you have a fool like you make the comment you make! @@AirborneAnt

      @deanjericevic8912@deanjericevic89123 ай бұрын
  • U are doing an amazing job sir!!!! Pls don’t stop making such informative videos

    @kunjpatel7261@kunjpatel72613 жыл бұрын
  • This makes so much more sense and is so much simpler than any of those other "explanations" (none of which I'd heard before, although I never took a proper physics class; I did Chemistry in HS!)

    @natedawww@natedawww3 жыл бұрын
  • Light bends because it is weak on the knees.

    @carcaperu4041@carcaperu40415 жыл бұрын
    • Fookin Kneelers!

      @T33K3SS3LCH3N@T33K3SS3LCH3N4 жыл бұрын
    • You are the weakest link, kneeeeeeeee'!

      @billob1305@billob13054 жыл бұрын
  • In the animation, the electric charges of the molecules in the glass moves/reorient themselves according to the direction of the light, but light travels through my window from many directions at the same time. So please explain how each light beam can bend when it transitions from air to glass, consistent with the equtions. One would think the charges of the molecules in the glass gets confused by the bombardment of light travelling through it from various directions? BTW, I love your videos - sooo much better that what you stumble upon on the web.

    @mby_dk@mby_dk5 жыл бұрын
    • What a hard question! I'm delighted that you have asked it. May I say it's all about the supremacy of geometry over physical mater. Any model that includes light waves or rays, and in particular the directions of these waves and rays is wrong by definition. Every such a model is by necessity a 3D structure displayed in an instantaneous space. It doesn't meter if these models were kinetically animated, they are still only the sequences of frozen 3D frames. BTW, the eternity could be the three dimensional only. To be able to answer your question one have to realize that there is no underlying reality of pictorial, i.e. geometrical, models and they should be looked at as if they were eternal objects themselves. However, there is no such thing as the 3D eternal model of light, or of electromagnetic extension in general. Light does have a peculiar direction which is always toward the observing, receipting, point. If you are interested in ... Respect

      @belajedra6129@belajedra61295 жыл бұрын
    • The equations are linear so the solutions just add up. Look up 'superposition of waves'

      @danielauto3767@danielauto37675 жыл бұрын
  • I had the quest for it since long. Thanks a lot!

    @shuvrodebbiswas3884@shuvrodebbiswas38843 жыл бұрын
  • yes, finally a video that explains what is going on. I don't know maxwell's equations at my current level so I am glad you didn't just leave it at that and you actually took the time to explain what epsilon means physically.

    @huonsmith@huonsmith3 жыл бұрын
  • Wow! I love how this channel approaches seemingly complex physics, with easy-to-understand explanations. The real mechanism for the bending of light is really interesting. But it creates several other questions: 1) As molecular rearrangements differ between different facets of a crystal, does this mean that different facets of crystals have different refractive indices due to different electric field environments? 2) Does this mechanism also explain total internal reflection? Or to be more precise, how does it explain total internal reflection?

    @Ardabiochem@Ardabiochem4 жыл бұрын
  • Q: Why does light bend when it enters glass? A: Because it is a pane in the glass.

    @tron3entertainment@tron3entertainment4 жыл бұрын
    • What was the last thing to thru the bugs mind when it the glass windshield? Its rear end. Why? Because he wasnt light enough.

      @es8559@es85594 жыл бұрын
  • I have been searching for this answer for the last 5 years ... Now I have finally got the perfect explanation 😍🥺

    @nikolatesla8853@nikolatesla88533 жыл бұрын
  • You don't know what I feel. It's really awesome... Thank you so much for this explanation. Love from india

    @RajAryanMYSTRY-MAN@RajAryanMYSTRY-MAN2 жыл бұрын
  • Great job, I love this channel, knowledge on the highest level that I can fully trust. I've been looking for an answer for this question after watching last video but nothing convinced me. Now I know why :) P.S. I also like your sense of humor, and I'm the person that prefers logical explanations than equations :P

    @criper4830@criper48305 жыл бұрын
  • Thank you for a beautiful explanation! I’ve always been confused by people applying Snell’s law to the incidence of refraction, often by using an ATV crossing into mud similar to the marching soldiers explanation. But I always wondered how that would work, as it implies photons have dimensionality that allow one part of it to cross the boundary before the other. One question: how come as the angle of incidence gets increasingly small you simply get reflection, as in fibre optic cable?

    @ANelsonViolin@ANelsonViolin Жыл бұрын
  • Absolutely beautiful. Thank you very much for this video.

    @shjescaresme@shjescaresme Жыл бұрын
  • Thank you for all these interesting videos. A really appreciate the effort and passion.

    @guillermocorrea2025@guillermocorrea20252 жыл бұрын
  • This video is not very long, it is long enough.

    @formolzinho@formolzinho5 жыл бұрын
    • like our good buddy Einstein said: Everything should be made as simple as possible, but not simpler.

      @TuttleScott@TuttleScott5 жыл бұрын
    • formolzinho a teacher once told me when I asked how long my paper should be his answer was that it should be like a skirt. Long enough to cover the subject yet short enough to still be interesting.

      @dave_dennis@dave_dennis5 жыл бұрын
    • Barely long enough! I'd have liked it to be even more in-depth. Then again, not sure if I'd have clicked on a 40-minute video.

      @Maplaplaplapla@Maplaplaplapla5 жыл бұрын
    • @@TuttleScott Omg, how come I have never heard that one. I love it

      @mr.rabbit5642@mr.rabbit56425 жыл бұрын
    • anyway I don't understand nothing because in genere physics today are made to don't understand nothing because instead to be something fun and relaxing is contrarity like a very long run of a deer in a forest. everything can be very clear if you want tolearn something but to learn something what is not so precious like a new form of energy bec ause this planet must clean herself from many forms of pollution. I heard light people don't knows what is it.

      @jdaniel3185@jdaniel31855 жыл бұрын
  • And that was a very GOOD video. thank you, Dr.

    @CyberwizardProductions@CyberwizardProductions5 жыл бұрын
  • Don, that was superb! Take a bow, many thanks

    @johnmason8787@johnmason87872 жыл бұрын
  • At 12:05, shouldn't the charges move around in the opposite way? Positive must be downwards and negative upwards. BTW thank you so much, watching your videos really help me understand Physics better.

    @nkpapa333@nkpapa3332 жыл бұрын
  • Perfect explanation!!! Thanks for this video. Maxwell equations give exactly the needed framework to explain most of the phenomena. These completed with the boundary equations and field conservation principles are a really elegant way to solve complex problems.

    @moisixhaferaj4914@moisixhaferaj49144 жыл бұрын
  • Finally an explanation. Excellent video! Could you make one on how is it that we can stand above the ground and not simply pass through the atoms? I have heard about Pauli's exclusion principle but couldn't understand it well.

    @marcellotoscano4776@marcellotoscano47763 жыл бұрын
  • damn. This was so much needed. I had been searching for this answer. I almost had given up on this. Before this, I had an impression that it follows the marching soldier analogy with the fixed line, the only difference was I assumed that fixes line to be electric field but finally got the correct explanation.

    @JKBEAST@JKBEAST Жыл бұрын
  • Ok, this is a good classical explanation, but let's go back to Fermat's principle for a moment. In particular I'm thinking of the explanation given in Feynman's little book "QED" (which I recommend to everyone's attention). Now it's true that Fermat's principle (i.e. of "least time"), as stated in the video, doesn't actually provide an "explanation". But when combined with the path-integral of the wave-function of the light Fermat's principle simply falls out of the physics. (Now, I want to clear that my respect for Dr Lincoln is absolute, and I'm perfectly willing to accept that I'm missing something here. But i'm not sure what that is.)

    @arcanechili@arcanechili5 жыл бұрын
    • Least action of path integrals is a real and important thing, but it's pretty non-intuitive for a 12 minute video, especially where a lot is debunking common explanations.

      @drdon5205@drdon52055 жыл бұрын
    • Still, the Fermat's principle on its own doesn't explain anything. Feynman's path integrals are really not a common knowledge that would be used in "dumbing down" the underlying causes for light bending on an interface. Being a _part_ of one of the possible solutions doesn't make the Fermat's principle a correct explanation.

      @Tomas.Malina@Tomas.Malina5 жыл бұрын
    • @@drdon5205 : Perhaps this should be a request for a discussion of the path-integral view of QM? ;-)

      @NichaelCramer@NichaelCramer5 жыл бұрын
    • @@Tomas.Malina : > Being a part of one of the possible solutions doesn't make > the Fermat's principle a correct explanation. Um.. of course it doesn't Which is precisely why I made this point in my comment.

      @NichaelCramer@NichaelCramer5 жыл бұрын
    • I was wondering about TE waves in the video explanation... For TE waves there is no perpendicular electric field yet the wave still bend... Did I miss something or the explanation is incomplete and fails for different wave polarization?

      @alephii@alephii5 жыл бұрын
  • Dr. Lincoln, would you please make a video with the quantum explanation?

    @pacoruiz4004@pacoruiz40045 жыл бұрын
    • don't Ruiz everything.

      @monumento.f.501@monumento.f.5015 жыл бұрын
  • Thanks, you answered a question itching my brain since a long time :) I discovered your channel via PBS Space Time, I like it, you have a new fan ;)

    @virgilscipion@virgilscipion4 жыл бұрын
  • Easy to understand. Love this!

    @garudabowo@garudabowo2 жыл бұрын
  • Forgive me, I don't understand why the horizontal electric field doesn't lowered in the same way as the vertical one

    @paulsochinfan@paulsochinfan5 жыл бұрын
    • I think it's because the beam's vertical electric field is moving against the intrinsic electric field of the material, whereas the beam's horizontal electric field isn't. I'm only guessing though, and I'll defer to anyone who actually knows what they're talking about.

      @ThinkingSpeck@ThinkingSpeck5 жыл бұрын
    • Look to the equations, he showed it

      @bastiklein4724@bastiklein47245 жыл бұрын
    • He did not show it. But said that we can get there after some calculus. The so called boundary conditions between two media are shown in em.geosci.xyz/content/maxwell1_fundamentals/interface_conditions/derivation.html It uses the Maxwell equations mentioned in the video, but in its integral form.

      @saspinski@saspinski5 жыл бұрын
    • @@saspinski That's the math. It doesn't explain the physics. You would think the charges in the material would get polarized by the parallel component. The dielectric constant is also just an approximation, because it assumes the material is continuous.

      @cryora@cryora5 жыл бұрын
    • To fully appreciate this result, you'd need to read the electromagnetic theory. The electromagnetic theory says that light is an electromagnetic wave, it is nothing but oscillating electric and magnetic fields. Electric fields and magnetic fields satisfy a set of 4 equations, 2 for electric fields and 2 for magnetic fields. The 4 equations are different for different media or materials. But at the boundary of two media, both equations of medium 1 and medium 2 must be satisfied, because the boundary belongs to both the media. So the electric field equations in one medium must be equal to the electric field equations in the second medium. This is what we call a boundary "constraint". The electric field is constrained to move in such a way that the boundary conditions or boundary constraints are satisfied. It turns out the boundary constraints you get on solving the equations is that the parallel component of the electric field must not change, and the perpendicular component must decrease. Please not that it is ok if you fully do not understand this, this is something that is taught in undergraduate physics course.

      @MrNerdpwn@MrNerdpwn5 жыл бұрын
  • Best explanation ever... Physical intuition+mathematical derivation. Thanks a lot!

    @amartanshdubey9750@amartanshdubey97505 жыл бұрын
  • This was surprisingly fascinating, even for one of your videos

    @philcurry4959@philcurry49594 жыл бұрын
  • Very Good Video. I always enjoy your explanations. Oft times we don't understand the details (or the 'why's') of phenomena in the world that we have seen every day. Great Job!

    @andypuempel2570@andypuempel25704 жыл бұрын
  • Excellent!!! Thank you for the explanation Fermilab team ❤️❤️❤️❤️❤️

    @AdityaKadamMechanical@AdityaKadamMechanical5 жыл бұрын
KZhead