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RAY DIAGRAMS and REFRACTION IN NATURE

Date post: 18-Jan-2018
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Mirrors reflect, and make the image appear as if they are behind the mirror. Because of reflection the image appears farther away. Mirrors follow the Equal Angle Rule for each light ray – the angle coming in, is the same as the angle going out.
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RAY DIAGRAMS and REFRACTION IN NATURE This is NOT refraction, but it’s funny… Tahoma Jr. High 8 th Grade Science Maple Valley, WA
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Page 1: RAY DIAGRAMS and REFRACTION IN NATURE

RAY DIAGRAMSand

REFRACTIONIN NATURE

This is NOT refraction, but it’s funny…

Tahoma Jr. High8th Grade ScienceMaple Valley, WA

Page 2: RAY DIAGRAMS and REFRACTION IN NATURE

Mirrors reflect, and makethe image appear as ifthey are behind the mirror. Because of reflection the image appears farther away.

Mirrors follow the Equal Angle Rule for each light ray – the angle coming in, is the same as the angle going out.

Page 3: RAY DIAGRAMS and REFRACTION IN NATURE

Forget all the letters in the picture, just notice that a concave mirror makes the rays converge on one point (the “Focal Point”) – just like a satellite dish!

Weak signals are concentrated into one point.

Page 4: RAY DIAGRAMS and REFRACTION IN NATURE

You’ve seen guys like this at football games running along the sidelines. They’re picking up faint sounds on the field and using their parabolic microphones to make them louder. This guy, however, is listening to hummingbirds!

It’s a concavemirror!

He’s also using lenses in the binoculars to look at the hummingbirds!

Page 5: RAY DIAGRAMS and REFRACTION IN NATURE

Funhouse mirrors are just that… FUN!

Page 6: RAY DIAGRAMS and REFRACTION IN NATURE

Sideview mirrors (convex mirror) may distort the image, but they help eliminate blindspots!

Page 7: RAY DIAGRAMS and REFRACTION IN NATURE

Can you name all the lenses here?

A: double convex

B. single convex

C. convex / concave

D. double concave

E. single concave

F. convex / concave(but more curve than “c” equals more refraction)

This is how eyeglass work, the inside curveis different from the outside curve.

Page 8: RAY DIAGRAMS and REFRACTION IN NATURE

Notice a convex lens converges the light rays.(lenses work opposite of mirrors)

Page 9: RAY DIAGRAMS and REFRACTION IN NATURE

Again, convex lens = converges

Page 10: RAY DIAGRAMS and REFRACTION IN NATURE

However, a concave lens will make the rays diverge.

Page 11: RAY DIAGRAMS and REFRACTION IN NATURE

DIVERGE (“divide”) Converge (“collide”)

Did you learn these words in the Earth Science done in 7th grade with Plate Tectonics ?

Page 12: RAY DIAGRAMS and REFRACTION IN NATURE

Watch what a change in angle does in atriangular prism.

This allows rainbows to form. (∆ means “change”)

Page 13: RAY DIAGRAMS and REFRACTION IN NATURE

ROYGBIV

Red wavelengthswith low energy, change directionthe least.

Page 14: RAY DIAGRAMS and REFRACTION IN NATURE

Raindrops will act like a prism and mirror, making rainbows.

So will diamonds, and this is why diamond cutters make so much money!

Page 15: RAY DIAGRAMS and REFRACTION IN NATURE

Light rays refract when they enter a medium with a different density (the light actually changes speed

causing the change in direction).

No change in direction when the incoming rayis perpendicular (90°) to the surface.

Page 16: RAY DIAGRAMS and REFRACTION IN NATURE

Why was Tom Hanks so bad at spearing fish in “Castaway”?

(he didn’t know about refraction !)

Page 17: RAY DIAGRAMS and REFRACTION IN NATURE

Is this fish actually

SPITTING ?!

Sure is…

It’s an “Archer fish”.

It’s shooting at a bugthat’s out of the waterbut it’s eyes are underthe water.

BIG PROBLEM !!

Can a “stupid” fishdo trigonometry ??

Page 18: RAY DIAGRAMS and REFRACTION IN NATURE

Compensation needed ! Shoot straight !“SMART FISH” !

Page 19: RAY DIAGRAMS and REFRACTION IN NATURE

Remember, if the bug is perpendicular, there’s no angle change (shoot straight), but if there’s an angle, the fish has to compensate.

Page 20: RAY DIAGRAMS and REFRACTION IN NATURE

Here’s a good (and dangerous) example of refraction…a desert mirage! (imagine you saw water).

The object appears much closer than it really is because air with different densities acts like a lens!

Page 21: RAY DIAGRAMS and REFRACTION IN NATURE

You can’t even trust where the Sun really is!The change in density of the atmosphere

acts like a lens.

Page 22: RAY DIAGRAMS and REFRACTION IN NATURE

Refraction of sound waves is used for underwatermapping. Warm, less dense water reflects the

sound waves differently than the deeper cold water.

Page 23: RAY DIAGRAMS and REFRACTION IN NATURE

This is a cool “Over / Under” photograph.

Page 24: RAY DIAGRAMS and REFRACTION IN NATURE

You’ve all seen this one:

Refraction In Action !

Page 25: RAY DIAGRAMS and REFRACTION IN NATURE

When does light not follow a straight path?

When there’s a massive “gravity well” in the way!like the yellow star below with a huge

super-star or galaxy in the way.

This is called a “gravitational lens”.

End show


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