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B19-Describe how light is absorbed, reflected, and refracted by different surfaces.
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B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Dec 29, 2015

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Page 1: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

B19-Describe how light is absorbed, reflected, and refracted by different

surfaces.

Page 2: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Form of energy that travels in waves that the human eye sees as visible light.

Example: White Light (Roy-G-Biv) and Visible Light which reflects off of objects so we can see them. (colors)

Page 3: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

The colors you are able to see are called visible light.

Example: The colors of the visible spectrum you are able to see are called: ROY-G-BIV (visible spectrum) or Red, Green, Blue, Indigo, and Violet

Page 4: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Light that is made up of all the colors of the visible spectrum (ROY-G-BIV)

Example: Light from the sun is made up of all the colors of the visible spectrum (ROY-G-BIV)

Page 5: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Vibrating electric and magnetic fields that move through space at the speed of light (300,000KM/per sec.)

Example: Light waves from the sun are electrical vibrations that have a magnetic field. They do not need a medium to travel.

Page 6: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

The ability to cause change

Light rays can cause heat that moves molecules (ie. Heat makes ice melt!)

Light gives energy to our plants and helps the process of photosynthesis (we get to breathe in air!!)

Page 7: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Rhythmic pattern that carries energy

Light waves travel from the sun and reach earth

Page 8: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Narrow beam of light that travels in a straight line from a light source

Light rays coming from the sun

Page 9: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Light that bounces off of objects and allows us to see the colors that are in the pigments

Example: Light hits a red shirt and we see the color red. All the other colors of ROY-G-BIV get absorbed.

Page 10: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

The ability of an object to “bounce off” another object

Page 11: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Created when light hits a smooth, shiny surface

Example: you can see an image of yourself when light is reflected off of a mirror

Page 12: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Light that is taken in by an object

Colors of white light that are not in common with the pigments they are shining on get absorbed.

Page 13: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

The bending of light as it moves from one material to another

Explanation:◦ Light waves travel in straight

lines◦ When light waves move from

one kind of material to another, like from air to water, their speed changes

◦ the change in speed causes the light rays to bend (this is the result of a change in direction)

◦ . The bending of light is called refraction (ri frak shan)

Example: Pencil in the cup of water!

Page 14: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

The bending of light as it passes through air of different temperatures

Sometimes it looks like there is water on a road when actually its just a mirage or image of a blue sky caused by refracted light

Page 15: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

definition ELECTROMAGNETIC Spectrum

The complete range of electromagnetic waves placed in order of increasing frequency.

It is made up of radio waves, infrared rays, visible light, ultraviolet rays, X-rays, and gamma rays.

Page 16: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: Substances that are used to color materials!

Example: A shirt that has red pigment will reflect red when hit by white light!

Page 17: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition:◦ Cyan◦ Yellow ◦ Magenta

Page 18: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: A new color of pigment is produced as a result of the absorption of colors and the reflection of similar color groups.

Explanation: Colors combine to form new colors

because pigments do not actually absorb every color of light

The colors of pigment that are mixed have certain pigments in common; these colors get reflected!

We actually see the reflected color that both pigments have in common!!

Example: When cyan and yellow pigments are mixed, we see the color green because all the other

colors but green get absorbed (subtracted) while the green color

gets reflected!!.

Page 19: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition:◦ Green◦ Red◦ Blue

Page 20: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: The mixing of various colored light making the light more intense and bringing the color of the mixture closer to white light (ROY-G-BIV)

Example: When we mix blue and yellow light beams, the colors get added thus moving the light closer to white. Therefore, the color of light is a soft white light.

Page 21: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: Creating a new color by a process that adds one set of wavelengths to another set of wavelengths.

Example: When all the colors of white light are added, we see white light!

Page 22: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

When white light hits an object the colors of white light (ROY-G-BIV) get reflected and absorbed!

The certain color of pigment that is in the object gets reflected and the remaining colors of white light get absorbed.

We see the color that gets reflected and the remaining colors that we don’t see get absorbed!!

Ie. Yellow light reflects off of a sweater that has yellow pigment so we see yellow. The other colors of light get absorbed.

Page 23: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: The colors that combine to make any other color.

Example: Green, Red, and Blue can be used to form other colors!

Page 24: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: Two primary colors combine in equal amounts to produce a secondary color.

Example: Red and Blue mixed together make the secondary color called purple!

Page 25: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: Any two colors that combine to form white light.

Example: Yellow and Blue combine to form white light!!

Page 26: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: A transparent material transmits most of the light that strikes it.

Example: Light going through glass or a clear substance!!

Page 27: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: A material that scatters light that passes through.

Example: Wax paper! (only some of the light gets through)

Page 28: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

Definition: A material that absorbs or reflects all the light that strikes it!

Examples:◦ Wood◦ Metal◦ Cotton clothing

Page 29: B19-Describe how light is absorbed, reflected, and refracted by different surfaces.

An object of transparent material (clear) with three straight faces at an angle to each other. This device refracts or bends visible light into a spectrum.