• ClipSaver
ClipSaver
Русские видео
  • Смешные видео
  • Приколы
  • Обзоры
  • Новости
  • Тесты
  • Спорт
  • Любовь
  • Музыка
  • Разное
Сейчас в тренде
  • Фейгин лайф
  • Три кота
  • Самвел адамян
  • А4 ютуб
  • скачать бит
  • гитара с нуля
Иностранные видео
  • Funny Babies
  • Funny Sports
  • Funny Animals
  • Funny Pranks
  • Funny Magic
  • Funny Vines
  • Funny Virals
  • Funny K-Pop

Are Photons & Electrons Particles or Waves? Make up your mind god! скачать в хорошем качестве

Are Photons & Electrons Particles or Waves? Make up your mind god! 3 years ago

wave particle duality

wave particle duality explained

two slits quantum physics

double slit experiment explained

double slit experiment

de broglie wavelength

de broglie equation

are photons particles or waves

are electrons waves or particles

quantum mechanics

wave–particle duality

what are particles

what are particles made of

what is a matter wave

waves or particles

what is wave function

what is wave function collapse

what is wave function in quantum mechanics

Не удается загрузить Youtube-плеер. Проверьте блокировку Youtube в вашей сети.
Повторяем попытку...
Are Photons & Electrons Particles or Waves? Make up your mind god!
  • Поделиться ВК
  • Поделиться в ОК
  •  
  •  


Скачать видео с ютуб по ссылке или смотреть без блокировок на сайте: Are Photons & Electrons Particles or Waves? Make up your mind god! в качестве 4k

У нас вы можете посмотреть бесплатно Are Photons & Electrons Particles or Waves? Make up your mind god! или скачать в максимальном доступном качестве, видео которое было загружено на ютуб. Для загрузки выберите вариант из формы ниже:

  • Информация по загрузке:

Скачать mp3 с ютуба отдельным файлом. Бесплатный рингтон Are Photons & Electrons Particles or Waves? Make up your mind god! в формате MP3:


Если кнопки скачивания не загрузились НАЖМИТЕ ЗДЕСЬ или обновите страницу
Если возникают проблемы со скачиванием видео, пожалуйста напишите в поддержку по адресу внизу страницы.
Спасибо за использование сервиса ClipSaver.ru



Are Photons & Electrons Particles or Waves? Make up your mind god!

FreeView of Magellan Video: https://www.magellantv.com/series/sec... Get your SPECIAL OFFER for MagellanTV here: https://try.magellantv.com/arvinash - It's an exclusive offer for our viewers! Start your free trial today. MagellanTV is a new kind of streaming service run by filmmakers with 3,000+ documentaries! Check out our personal recommendation and MagellanTV’s exclusive playlists: https://www.magellantv.com/genres/sci... Background videos: Wave collapse and decoherence:    • How Quantum Mechanics produces REALIT...   Intro to quantum fields:    • QFT: What is the universe really made...   Become an ArvinAsh Patron: https://www.patreon.com/bePatron?u=17... Chapters: 00:00 - World is quantized 2:17 - How de Broglie found particle wave duality 4:30 - Is a photon a wave or particle? Double slit experiment 7:59 - What is the wave function 9:57 - What is a particle intuitively? 10:34 - Why don't large things behave like quantum objects? 11:07 - What is de Broglie wavelength? 13:50 - What is a particle? Summary: By the end of 1905, we had two big new equations in physics. Max Planck’s, Energy equals Planck’s constant times the frequency, and Einstein’s Energy equals the mass times the speed of light squared. A young physicist, Louis Debroglie decided to combined them: MC^2 = hf, Since c and h are constants, if you ignore them, it simplifies to M = f – mass is essentially equal to frequency. But how can mass equal frequency because these are two completely different things. Mass is associated with particles. Frequency is associated with a wave. Waves like water waves and sound waves can disappear, but the particles doing the waving would still be there. What is doing the waving in quantum objects? Quantum mechanics says that that the particle is not only a particle but is also a wave. They are not separate. This duality can be demonstrated with the double slit experiment. The original experiment done by Thomas Young in 1801 showed that light is a wave. But modern versions of this experiment show that individual photons of light behave like waves, but behave like particles if measured. But why did it change when we measured it? What caused this change to occur. This is the measurement problem in physics. There is no definitive answer. What does the wave function in quantum mechanics mean? For Newtonian mechanics, the primary equation is F = MA – Force equals mass times acceleration. Using this if we know the initial position, velocity, and all the forces acting on a particle, I can tell you its exact position at a later time. The primary equation for quantum mechanics is the Schrodinger equation. In this equation, instead of solving for the particle’s position, we need to solve it for something called the wave function. Now what is psi – the wavefunction? It is a mathematical expression that represents the state of a quantum system. It is related to the probability of finding the particle in a particular location. Specifically, the square of the norm of the wave function gives you the probability density of the particle. Solving this for an object, I can't tell you where the particle will be. I can only tell you the probability of where you might find it if you measured it. So quantum objects are kind of smeared across space. They are not like little balls that we can point to and say – it’s there, and it’s moving this fast. All matter behaves like this including things like sand grains, basketballs, and even your body. But if that is the case, then why don’t basketballs behave the way electrons do – like waves smeared across space? The answer is because the wave behavior of objects that we can see with our eyes, like sand grains or even dust particles is so small that we do not notice it. To understand why, we have to invoke de Broglie. He believed particles and waves have the same traits, and he derived an equation that describes this. He came up with the de Broglie wavelength, lambda is equal to h, Planck’s constant over mass times velocity, which is also momentum. Using this relationship, we can find the wavelength of any particle. Solving for an electron in a hydrogen atom, its wavelength is 3.3 x 10^-10 meters. The wavelength of a grain of sand moving 10 m/s would have a wavelength of 10^-25 meters. And for larger things like a basketball, the wavelength would be even smaller - 10^-34 meters. This is not measurable. #waveparticleduality A wavelength is one quantum of action. The smaller the wavelength, the less quantum-like the object is. If the wavelength becomes extremely small, any action of that object appears to be continuous. This is why we don’t notice any quantum behavior in macro scale objects. The smaller the wavelength, the less the wavy-ness the object has. This is why particles with large wavelengths compared to their size like electrons, photons, and other quantum objects exhibit wavelike and thus quantum-like behavior.

Comments
  • What Is A Particle? A Visual Explanation of Quantum Field Theory 3 years ago
    What Is A Particle? A Visual Explanation of Quantum Field Theory
    Опубликовано: 3 years ago
    767670
  • The 9 Experiments That Will Change Your View of Light (And Blow Your Mind) 1 year ago
    The 9 Experiments That Will Change Your View of Light (And Blow Your Mind)
    Опубликовано: 1 year ago
    4040881
  • The Trouble with Gravity: Why Can't Quantum Mechanics explain it? 2 years ago
    The Trouble with Gravity: Why Can't Quantum Mechanics explain it?
    Опубликовано: 2 years ago
    1067797
  • I never understood why electrons have spin... until now! 1 year ago
    I never understood why electrons have spin... until now!
    Опубликовано: 1 year ago
    972512
  • Why No One Knows If Photons Really Are Massless: What if they Aren't? 1 year ago
    Why No One Knows If Photons Really Are Massless: What if they Aren't?
    Опубликовано: 1 year ago
    389753
  • The origin of Electromagnetic waves, and why they behave as they do 2 years ago
    The origin of Electromagnetic waves, and why they behave as they do
    Опубликовано: 2 years ago
    1674320
  • Physicist Brian Cox explains quantum physics in 22 minutes 1 month ago
    Physicist Brian Cox explains quantum physics in 22 minutes
    Опубликовано: 1 month ago
    1581007
  • All Fundamental Forces and Particles Visually Explained 3 years ago
    All Fundamental Forces and Particles Visually Explained
    Опубликовано: 3 years ago
    653245
  • What is Quantum Mechanics Really Trying to Tell us about Reality? Featuring @SabineHossenfelder 3 years ago
    What is Quantum Mechanics Really Trying to Tell us about Reality? Featuring @SabineHossenfelder
    Опубликовано: 3 years ago
    412492
  • What *is* a photon? 1 year ago
    What *is* a photon?
    Опубликовано: 1 year ago
    246882

Контактный email для правообладателей: [email protected] © 2017 - 2025

Отказ от ответственности - Disclaimer Правообладателям - DMCA Условия использования сайта - TOS