Search Brief: When you go to the drugstore to buy reading glasses, they are classified by numbers like "+2" or "+3.5". So how do we use ray diagrams to figure out where an image is located?

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So how do we use ray diagrams to figure out where an image is located? When you go to the drugstore to buy reading glasses, they are classified by numbers like "+2" or "+3.5".

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  • When you go to the drugstore to buy reading glasses, they are classified by numbers like "+2" or "+3.5".
  • So how do we use ray diagrams to figure out where an image is located?

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Supporting Gallery

Negative Lens  | Physics with Professor Matt Anderson | M27-17
Power of a Lens | Physics with Professor Matt Anderson | M27-16
What Happens if you Block Half a Lens? | Physics with Professor Matt Anderson | M27-14
Lenses | Physics with Professor Matt Anderson | M27-12
Virtual Images | Physics with Professor Matt Anderson | M27-15
Picture of a Tree - Thin Lens Equation | Physics with Professor Matt Anderson | M27-18
Image Location - Virtual Image Example  | Physics with Professor Matt Anderson | M27-19
The Polarizer | Physics with Professor Matt Anderson | M28-17
Thin Lens and Image Formation | Physics with Professor Matt Anderson | M27-13
The Magnifying Glass | Physics with Professor Matt Anderson | M28-10
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Negative Lens  | Physics with Professor Matt Anderson | M27-17

Negative Lens | Physics with Professor Matt Anderson | M27-17

Read more details and related context about Negative Lens | Physics with Professor Matt Anderson | M27-17.

Power of a Lens | Physics with Professor Matt Anderson | M27-16

Power of a Lens | Physics with Professor Matt Anderson | M27-16

When you go to the drugstore to buy reading glasses, they are classified by numbers like "+2" or "+3.5". What does that mean?

What Happens if you Block Half a Lens? | Physics with Professor Matt Anderson | M27-14

What Happens if you Block Half a Lens? | Physics with Professor Matt Anderson | M27-14

Read more details and related context about What Happens if you Block Half a Lens? | Physics with Professor Matt Anderson | M27-14.

Lenses | Physics with Professor Matt Anderson | M27-12

Lenses | Physics with Professor Matt Anderson | M27-12

Read more details and related context about Lenses | Physics with Professor Matt Anderson | M27-12.

Virtual Images | Physics with Professor Matt Anderson | M27-15

Virtual Images | Physics with Professor Matt Anderson | M27-15

What the heck does a "virtual" image mean? Does that mean it's just in my imagination? If yes, then am I just imagining this video?

Picture of a Tree - Thin Lens Equation | Physics with Professor Matt Anderson | M27-18

Picture of a Tree - Thin Lens Equation | Physics with Professor Matt Anderson | M27-18

You're using a camera to take a picture of a tree. Where should the film (or ccd) be placed?

Image Location - Virtual Image Example  | Physics with Professor Matt Anderson | M27-19

Image Location - Virtual Image Example | Physics with Professor Matt Anderson | M27-19

Let's look at a specific example now of virtual image formation. Where is it located and how big is it?

The Polarizer | Physics with Professor Matt Anderson | M28-17

The Polarizer | Physics with Professor Matt Anderson | M28-17

You've probably heard of polarized sunglasses. Maybe you even own a pair. But how does it work, and what is this polarization ...

Thin Lens and Image Formation | Physics with Professor Matt Anderson | M27-13

Thin Lens and Image Formation | Physics with Professor Matt Anderson | M27-13

So how do we use ray diagrams to figure out where an image is located? Well, it's not that complicated, just watch.

The Magnifying Glass | Physics with Professor Matt Anderson | M28-10

The Magnifying Glass | Physics with Professor Matt Anderson | M28-10

Read more details and related context about The Magnifying Glass | Physics with Professor Matt Anderson | M28-10.