Chapter 19 Section 1.

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Presentation transcript:

Chapter 19 Section 1

Properties of Light 1 What is light? A wave is a disturbance that carries energy through matter or space. Light is another type of wave that carries energy.

Properties of Light 1 What is light? A source of light such as the Sun or a lightbulb gives off light waves that spread out in all directions from the light source.

Properties of Light 1 What is light? A light ray is a narrow beam of light that travels in a straight line. You can think of a source of light as giving off, or emitting, a countless number of light rays that are traveling away from the source in all directions.

Light Travels Through Space Properties of Light 1 Light Travels Through Space The material through which a wave travels is called a medium. Light is an electromagnetic wave and doesn’t need a medium in which to travel. Electromagnetic waves can travel in a vacuum, as well as through materials such as air, water, and glass.

Properties of Light 1 Light and Matter Most objects around you do not give off light on their own. They can be seen only if light waves from another source bounce off them and into your eyes. The process of light striking an object and bouncing off is called reflection.

Opaque, Translucent, and Transparent Properties of Light 1 Opaque, Translucent, and Transparent When light waves strike an object, some of the waves are absorbed by the object, some are reflected by it, and some might pass through it. What happens to light when it strikes the object depends on the material that the object is made of.

Opaque, Translucent, and Transparent Properties of Light 1 Opaque, Translucent, and Transparent All objects reflect and absorb some light waves. Materials that let no light pass through them are opaque (oh PAYK). You cannot see other objects through opaque materials.

Opaque, Translucent, and Transparent Properties of Light 1 Opaque, Translucent, and Transparent On the other hand, you clearly can see other objects through materials such as glass and clear plastic that allow nearly all the light that strikes them to pass through. These materials are transparent.

Opaque, Translucent, and Transparent Properties of Light 1 Opaque, Translucent, and Transparent A third type of material allows only some light to pass through. Although objects behind these materials are visible, they are not clear.

Opaque, Translucent, and Transparent Properties of Light 1 Opaque, Translucent, and Transparent These materials, such as waxed paper and frosted glass, are translucent (trans LEW sent).

Properties of Light 1 Color The light from the Sun might look white, but it is a mixture of colors. Each different color of light is a light wave with a different wavelength. Red light waves have the longest wavelengths and violet light waves have the shortest wavelengths.

Properties of Light 1 Color White light is separated into different colors when it passes through a prism. The colors in white light range from red to violet. When light waves from all these colors enter the eye at the same time, the brain interprets the mixture as being white.

Why do objects have color? Properties of Light 1 Why do objects have color? When a mixture of light waves strikes an object that is not transparent, the object absorbs some of the light waves. Some of the light waves that are not absorbed are reflected.

Why do objects have color? Properties of Light 1 Why do objects have color? If an object reflects red waves and absorbs all the other waves, it looks red. An object that reflects all the light waves that strike it looks white, while one that reflects none of the light waves that strike it looks black.

Properties of Light 1 Primary Light Colors Light of almost any color can be made by mixing different amounts of red, green, and blue light. Red, green, and blue are known as the primary colors.

Properties of Light 1 Primary Light Colors White light is produced where beams of red, green, and blue light overlap. Yellow light is produced where red and green light overlap.

Properties of Light 1 Primary Light Colors You see the color yellow because of the way your brain interprets the combination of the red and green light striking your eye.

Properties of Light 1 Primary Light Colors This combination of light waves looks the same as yellow light produced by a prism, even though these light waves have only a single wavelength.

Primary Pigment Colors Properties of Light 1 Primary Pigment Colors Materials like paint that are used to change the color of other objects are called pigments. Mixing pigments together forms colors in a different way than mixing colored lights does.

Primary Pigment Colors Properties of Light 1 Primary Pigment Colors The color of the pigment you see is the color of the light waves that are reflected from it. The primary pigment colors are yellow, magenta, and cyan. You can make almost any color by mixing different amounts of these primary pigment colors.

Primary Pigment Colors Properties of Light 1 Primary Pigment Colors Each primary pigment color results when a pigment absorbs a primary light color. For example, magenta pigment absorbs green light and reflects red and blue light, which you see as magenta.

Primary Pigment Colors Properties of Light 1 Primary Pigment Colors Each of the primary pigment colors is the same color as white light with one primary color removed. Click box to view movie.

Section Check 1 Question 1 If you placed a ball inside a glass jar and pumped all the air out of the jar could you still see the ball? Answer Yes, because light waves don’t need a medium in which to travel. Crossing the vacuum inside the glass jar is no problem for light.

Question 2 Answer 1 Can you hear sounds in outer space? Section Check 1 Question 2 Can you hear sounds in outer space? Answer No, because sound waves need a medium in which to travel. Sound waves can’t travel through open space.

Section Check 1 Question 3 How is it that you are able to see your hand, even though it isn’t emitting any light? Answer Your hand is reflecting light from something that does emit its own light, either a light bulb or the Sun.