Light Waves
Light Particles
Bending Light
Newtonian Telescopes
Refracting Telescopes
100

This term describes the distance between two consecutive crests of a wave.

What is wavelength?

100

These tiny packets of light carry energy.

What are photons?

100

When light bounces off a surface, like a mirror, it is called this.

What is reflection?

100

This large, curved mirror at the back of a Newtonian telescope gathers and focuses incoming starlight.

What is the primary mirror?

100

This is the bending of light as it passes from one transparent material into another.

What is refraction?

200

Measured in hertz, this is the number of wavelengths that pass a point each second.

What is frequency?

200

This physicist explained the photoelectric effect by showing that light can behave as particles.

Who is Einstein?

200

By the law of reflection, the angle of incidence always equals this angle.

What is the angle of reflection?

200

This small, flat mirror redirects the focused light out to the side of the tube.

What is the secondary mirror?

200

This large lens at the front of a refracting telescope collects and focuses the light.

What is the objective lens?

300

When laser light bends around a thin hair and spreads out, this wave behavior is occurring.

What is diffraction?

300

In the photoelectric effect, photons with enough energy knock these negatively charged particles off a metal surface.

What are electrons?

300

Reflecting telescopes use a concave mirror of this curved shape to bring parallel light rays to a single focal point.

What is parabolic?

300

You look through this small lens on the side of the tube to see the final image.

What is the eyepiece?

300

Newton passed sunlight through a glass prism and refraction spread it into this rainbow of colors.

What is a spectrum?

400

The dark bands in a diffraction pattern are caused by this type of interference, where a crest meets a trough.

What is destructive interference?

400

Increasing this, the number of photons hitting the metal per second, ejects more electrons but doesn't make any of them more energetic.

What is intensity (photon flux)?

400

A large telescope mirror can be supported here, which a lens cannot be, and this is one reason mirrors can be built much bigger.

What is from behind (its back side)?

400

Blocking part of the primary mirror with a secondary mirror makes the image this, but it does not create a hole in it.

What is dimmer?

400

Different colors refract by different amounts, causing colored fringes around images in lens-based telescopes. This problem is called this.

What is chromatic aberration?

500

All light travels at the same speed in a vacuum, so if a light's wavelength gets shorter, its frequency does this.

What is increases?

500

A dim ultraviolet light can free electrons that a very bright red light cannot, because a photon's energy depends on this property, not on brightness.

What is frequency (or inverse of wavelength)?

500

Modern telescopes use this technology to reshape a mirror in real time to cancel out blurring from Earth's atmosphere.

What is adaptive optics?

500

If one primary mirror has twice the diameter of another, it has this many times the light-gathering area.

What is 4 (four times the amount)?

500

When white light passes through a prism or lens, this color of visible light is bent the most.

What is violet?

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