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9TH GRADE PRACTICE

Physics Problems: Light phenomena, Grade 9

Geometric and wave optics, lenses, color and spectra.

12 problems across 8 sub-topics
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Problem statements

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12 problems
Position in this set: 1 from 12

Problem #40

Light propagation and reflection

Evaluate the statement: The incident ray, reflected ray and normal lie in the same plane, and the angles of incidence and reflection are equal.

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Given
Find

  1. Angles are measured from the normal to the surface, and not from the surface itself.

Answer

Position in this set: 2 from 12

Problem #41

Light propagation and reflection

Evaluate the statement: The concept “Image in a plane mirror” means: In a homogeneous transparent medium, light propagates in a straight line, which allows us to use the ray model.

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Given
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  1. The construction is carried out by continuation of the reflected rays, which visually converge behind the mirror.

Answer

Position in this set: 3 from 12

Problem #42

Reflection of light

The beam hits the mirror at an angle of 35° to the normal. What is the angle of reflection?

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Given
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Answer

Position in this set: 4 from 12

Problem #43

Refraction and total internal reflection

Evaluate the statement: The absolute indicator is equal to the ratio of the speed of light in a vacuum to the speed of light in a medium.

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Given
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  1. A larger number means a lower speed of light in the medium and usually a stronger deviation to the normal.

Answer

Position in this set: 5 from 12

Problem #44

Refraction and total internal reflection

Evaluate the statement: the concept of “Refraction of light” means: Light is completely reflected when leaving an optically denser medium at an angle greater than the critical one.

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Given
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  1. When passing into an optically denser medium, the beam usually deviates towards the normal.

Answer

Position in this set: 6 from 12

Problem #45

Refraction of light

Light propagates in a transparent medium at a speed of 2·10⁸ m/s. The speed of light in vacuum is 3·10⁸ m/s. Find the indicator.

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Given
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Answer

Position in this set: 7 from 12

Problem #46

Lenses, eyes and optical instruments

Evaluate the statement: A converging lens turns a parallel beam into a converging one, and a diverging lens makes it divergent.

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Given
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  1. The type of lens in the medium is determined by the shape of the surfaces and the relative refractive index.

Answer

Position in this set: 8 from 12

Problem #47

Lenses, eyes and optical instruments

Evaluate the statement: The concept of “Constructing an image with a lens” means: The eye focuses the image on the retina, and instruments control the path of rays to magnify or register.

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Given
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  1. A converging lens can give a real or virtual image, while a diverging lens usually gives an imaginary reduced one.

Answer

Position in this set: 9 from 12

Problem #48

Lenses

The focal length of the collecting lens is 0.25 m. Find its optical power.

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Given
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Answer

Position in this set: 10 from 12

Problem #49

Interference, diffraction and spectra

Evaluate the statement: Stable intensity redistribution when matched light waves are superimposed.

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Given
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  1. At some points the waves strengthen each other, at others they weaken each other, forming an alternation of maxima and minima.

Answer

Position in this set: 11 from 12

Problem #50

Interference, diffraction and spectra

Evaluate the statement: The term “Diffraction” means: Dispersion occurs due to the dependence of the refractive index on wavelength and separates white light into colors.

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Given
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  1. A diffraction grating separates light into wavelengths and is used to observe spectra.

Answer

Position in this set: 12 from 12

Problem #51

Spectrum

The wavelength of light in a vacuum is 600 nm. Find the frequency at c = 3·10⁸ m/s.

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Answer

The theory behind these problems

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Formulas by topic

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