Fișier:Light dispersion conceptual waves.gif

Light_dispersion_conceptual_waves.gif(640 × 480 pixeli, mărime fișier: 1,14 MB, tip MIME: image/gif, în buclă, 90 imagini, 4,5 s)

Acest fișier se află la Wikimedia Commons. Consultați pagina sa descriptivă acolo.

Descriere fișier

Descriere
English: Schematic animation of a continuous beam of light being dispersed by a prism. The white beam represents many wavelengths of visible light, of which 7 are shown, as they travel through a vacuum with equal speeds c. The prism causes the light to slow down, which bends its path by the process of refraction. This effect occurs more strongly in the shorter wavelengths (violet end) than in the longer wavelengths (red end), thereby dispersing the constituents. As exiting the prism, each component returns to the same original speed and is refracted again.
Explanation
This is a conceptual animation of the dispersion of light as it travels through a triangular prism.

In vacuum (shown in black), light of any wavelength will travel at a fixed speed, c. But light slows down in a different medium (such as glass or water), and light of shorter wavelengths (like indigo) will tend to travel slower than light of longer wavelengths (like red)

White light, represented here by a white beam, is actually made out of light of several frequencies (colors) travelling together. These basic frequencies of visible light are part of what we call visible spectrum, and it is only tiny part of the entire electromagnetic spectrum.

As white light enters a medium (in this case, the prism), each of its composing wavelengths will travel at a different speed in the new medium, and this change in speed is what bends the path in which light is travelling. This is the phenomenon we call refraction. The ratio between the speed of light in vacuum and the speed of light in a medium is what we call index of refraction, and this value is specific for a given wavelength and medium.

Since light of different wavelengths will change direction by a different amount, we will experience a division of white light in its composing spectral colors, represented here by colored waves. This is what we call dispersion.

Once the basic frequencies are separated in this animation, we can easily see the difference on their speeds. Red, with a long wavelength, passes through almost without any change, whereas indigo (with short wavelength) is left behind by all the other colors. However, this difference in speed does not hold in vacuum, and this can be seen on how all light exiting the prism will once again travel at the constant speed of light in vacuum.

This is all just an easy way of seeing it, so it is important to stress once again the fact that this model is not entirely accurate, and white light can't exist on its own (as can be misunderstood from the beam).

Čeština: Schematická animace rozkladu viditelného světla lomem na optickém hranolu.
Español: Animación esquemática de un haz continuo de luz dispersado por un prisma. El haz blanco representa muchas longitudes de onda de luz visible, de las cuales se muestran 7, al atravesar un vacío a la misma velocidad c. El prisma hace que la luz se ralentice, curvando su camino por el proceso de refracción. Este efecto es más pronunciado en las longitudes de onda más cortas (como el extremo violeta) que en las longitudes de onda más largas (como el extremo rojo), dispersando así los componentes. Al salir del prisma, cada componente vuelve a la misma velocidad original y se refracta nuevamente.
Эрзянь: Схемань анимациясь свал апак сезне валдонь кермине, кона пансезь призмасо. Ало валдось те неявиксэв, 7 эйстэст невтезь, секс мекс сын ютыть вакуум трокс венке чиеманть марто.
Polski: Animacja schematycznie przedstawiająca rozszczepienie wiązki światła w pryzmacie. Biała wiązka reprezentuje wiele długości fal światła widzialnego, z których siedem porusza się w próżniprędkością światła. Pryzmat powoduje spowolnienie światła, które zmienia też kierunek w wyniku refrakcji. Załamanie jest mocniejsze dla krótszych długości fal („koniec fioletowy”) niż dla dłuższych długości fal („koniec czerwony”), co powoduje rozszczepienie wiązki na poszczególne składowe. Podczas wychodzeniu z pryzmatu składowe przyspieszają do prędkości światła oraz zostają ponownie załamane.
Dată
Sursă Operă proprie
Autor Lucas Vieira
Alte versiuni File:Light dispersion conceptual.gif

Licențiere

Public domain Eu, deținătorul drepturilor de autor ale acestei opere, o eliberez domeniului public. Aceasta se aplică în întreaga lume.
În anumite țări există posibilitatea ca acest lucru să nu fie legal posibil; în acest caz:
permit oricui să utilizeze această operă în orice scop, fără nicio condiție, atâta timp cât asemenea condiții nu sunt cerute de lege.

Assessment

Această imagine a fost evaluată conform criteriilor unei imagini de calitate, fiind declarată, în consecință, o imagine de calitate.

العربية  جازايرية  беларуская  беларуская (тарашкевіца)  български  বাংলা  català  čeština  Cymraeg  Deutsch  Schweizer Hochdeutsch  Zazaki  Ελληνικά  English  Esperanto  español  eesti  euskara  فارسی  suomi  français  galego  עברית  हिन्दी  hrvatski  magyar  հայերեն  Bahasa Indonesia  italiano  日本語  Jawa  ქართული  한국어  kurdî  Lëtzebuergesch  lietuvių  македонски  മലയാളം  मराठी  Bahasa Melayu  Nederlands  Norfuk / Pitkern  polski  português  português do Brasil  rumantsch  română  русский  sicilianu  slovenčina  slovenščina  shqip  српски / srpski  svenska  தமிழ்  తెలుగు  ไทย  Tagalog  Türkçe  toki pona  українська  vèneto  Tiếng Việt  中文  中文(简体)  中文(繁體)  +/−

Media of the day This file was selected as the media of the day for 31 August 2019. It was captioned as follows:
English: Schematic animation of a continuous beam of light being dispersed by a prism. The white beam represents many wavelengths of visible light, of which 7 are shown, as they travel through a vacuum with equal speeds c. The prism causes the light to slow down, which bends its path by the process of refraction. This effect occurs more strongly in the shorter wavelengths (violet end) than in the longer wavelengths (red end), thereby dispersing the constituents. As exiting the prism, each component returns to the same original speed and is refracted again.
Other languages
Čeština: Schematická animace rozkladu viditelného světla lomem na optickém hranolu.
English: Schematic animation of a continuous beam of light being dispersed by a prism. The white beam represents many wavelengths of visible light, of which 7 are shown, as they travel through a vacuum with equal speeds c. The prism causes the light to slow down, which bends its path by the process of refraction. This effect occurs more strongly in the shorter wavelengths (violet end) than in the longer wavelengths (red end), thereby dispersing the constituents. As exiting the prism, each component returns to the same original speed and is refracted again.
Español: Animación esquemática de un haz continuo de luz dispersado por un prisma. El haz blanco representa muchas longitudes de onda de luz visible, de las cuales se muestran 7, al atravesar un vacío a la misma velocidad c. El prisma hace que la luz se ralentice, curvando su camino por el proceso de refracción. Este efecto es más pronunciado en las longitudes de onda más cortas (como el extremo violeta) que en las longitudes de onda más largas (como el extremo rojo), dispersando así los componentes. Al salir del prisma, cada componente vuelve a la misma velocidad original y se refracta nuevamente.
Эрзянь: Схемань анимациясь свал апак сезне валдонь кермине, кона пансезь призмасо. Ало валдось те неявиксэв, 7 эйстэст невтезь, секс мекс сын ютыть вакуум трокс венке чиеманть марто.
Polski: Animacja schematycznie przedstawiająca rozszczepienie wiązki światła w pryzmacie. Biała wiązka reprezentuje wiele długości fal światła widzialnego, z których siedem porusza się w próżniprędkością światła. Pryzmat powoduje spowolnienie światła, które zmienia też kierunek w wyniku refrakcji. Załamanie jest mocniejsze dla krótszych długości fal („koniec fioletowy”) niż dla dłuższych długości fal („koniec czerwony”), co powoduje rozszczepienie wiązki na poszczególne składowe. Podczas wychodzeniu z pryzmatu składowe przyspieszają do prędkości światła oraz zostają ponownie załamane.

Captions

Add a one-line explanation of what this file represents
Dispersion of light

Items portrayed in this file

subiectul reprezentat

24 decembrie 2007

image/gif

Istoricul fișierului

Apăsați pe Data și ora pentru a vedea versiunea trimisă atunci.

Data și oraMiniaturăDimensiuniUtilizatorComentariu
actuală6 aprilie 2010 20:09Miniatură pentru versiunea din 6 aprilie 2010 20:09640x480 (1,14 MB)KalkiReverted to version as of 04:14, 27 February 2008
6 aprilie 2010 20:07Miniatură pentru versiunea din 6 aprilie 2010 20:07640x480 (1,17 MB)KalkiReverted to version as of 03:31, 27 February 2008
27 februarie 2008 07:14Miniatură pentru versiunea din 27 februarie 2008 07:14640x480 (1,14 MB)LucasVB
27 februarie 2008 06:31Miniatură pentru versiunea din 27 februarie 2008 06:31640x480 (1,17 MB)LucasVB{{Information |Description=Copnceptual animation of dispersion of light in a prism. Using waves. |Source=self-made |Date=2008-02-27 |Author= Lucas V. Barbosa (aka Kieff) |Permission=Public domain |other_versions=Light_dispersion_conceptual.
24 decembrie 2007 07:10Miniatură pentru versiunea din 24 decembrie 2007 07:10640x480 (348 KB)LucasVB{{Information |Description=Dispersion of light inside a prism. Now with waves. |Source=Self |Date=2007-12-24 |Author=Lucas V. Barbosa |Permission=Public Domain |other_versions=Image:Light_dispersion_conceptual.gif }}

Următoarele pagini conțin această imagine:

Utilizarea globală a fișierului

Următoarele alte proiecte wiki folosesc acest fișier:

Vizualizați utilizările globale ale acestui fișier.