Physics: Light Ray in a Transparent Plate
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Questions and Answers

What is the wavelength of the light ray in vacuum?

650 nm

What is the thickness of the plate?

1 cm

What is the refractive index of the plate?

1.5

What color is the light ray?

<p>Orange</p> Signup and view all the answers

Calculate the frequency of the light ray.

<p>4.62 x 10^14 Hz</p> Signup and view all the answers

Calculate the speed of the light ray in the plate.

<p>2 x 10^8 m/s</p> Signup and view all the answers

Calculate the wavelength of the light ray in the plate.

<p>433.33 nm</p> Signup and view all the answers

Calculate the frequency of the light ray in the plate.

<p>4.62 x 10^14 Hz</p> Signup and view all the answers

What is the relationship between the speed of light in a medium and the refractive index of that medium?

<p>The speed of light in a medium is inversely proportional to the refractive index of that medium.</p> Signup and view all the answers

Quelle est la couleur de cette radiation?

<p>Orange</p> Signup and view all the answers

Calculer la fréquence de cette radiation.

<p>$3\times10^{14}$ Hz</p> Signup and view all the answers

Calculer la vitesse de cette radiation dans la lame.

<p>$2\times10^8$ m/s</p> Signup and view all the answers

Calculer la longueur d'onde de cette radiation dans la lame.

<p>325 nm</p> Signup and view all the answers

Calculer la fréquence de cette radiation dans la lame.

<p>$3\times10^{14}$ Hz</p> Signup and view all the answers

Construire les rayons réfléchis et les rayons réfractés de cette radiation à travers la lame.

<p>Les rayons réfléchis et les rayons réfractés de la lumière peuvent être construits à l'aide des lois de la réflexion et de la réfraction.</p> Signup and view all the answers

Flashcards

Light wavelength

The distance between two consecutive peaks or troughs of a light wave.

Vacuum

An empty space with no matter or particles.

Refractive index

A measure of how much a material slows down light.

Plate thickness

The depth of the transparent material.

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Light frequency

The number of wave cycles passing a point per second.

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Refraction

Changing direction of light as it passes from one medium to another

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Reflection

Light bouncing off a surface

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Wavelength in material

Wavelength of light in a given medium.

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Speed of light in material

Speed of light within a specified medium.

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Color of radiation

Determined by the wavelength of light.

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Longueur d'onde (nm)

Distance entre deux crêtes successives d'une onde lumineuse.

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Milieu (vacu)

Espace sans matière, influence la vitesse de la lumière.

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Indice de réfraction (n)

Mesure comment la lumière ralentit dans un matériau.

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Épaisseur de la plaque (e)

Profondeur du matériau transparent.

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Couleur du rayonnement

Déterminée par la longueur d'onde de la lumière.

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Fréquence du rayonnement (Hz)

Nombre de cycles d'onde par seconde.

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Vitesse de la lumière dans le matériau (m/s)

Dépend de l'indice de réfraction du matériau.

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Longueur d'onde dans le matériau (nm)

Longueur d'onde de la lumière dans le milieu donné.

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Fréquence du rayonnement dans le matériau (Hz)

Nombre de cycles d'onde par seconde.

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Diagramme/dessin des rayons

Représentation des rayons réfléchis et réfractés.

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Study Notes

Exercise: Light Ray in a Transparent Plate

  • A light ray with a wavelength of 650 nm enters a transparent plate with a thickness (e) of 1 cm and refractive index (n) of 1.5.

Questions:

  • Identify the color of the radiation.
  • Calculate the frequency of the radiation.
  • Determine the speed of the radiation within the plate.
  • Calculate the wavelength of the radiation within the plate.
  • Calculate the frequency of the radiation within the plate.
  • Draw the reflected and refracted rays of the radiation passing through the plate.

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Description

Test your knowledge on light rays and their interaction with transparent materials. This quiz covers wavelength, frequency, speed, and graphical representation of light as it passes through a plate. Challenge yourself with calculations and visual understanding of refraction and reflection.

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