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Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Dec 23, 2015

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Page 1: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.
Page 2: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Converging lenses

Page 3: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Diverging Lenses

Page 4: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

The Lens EquationWe can make use of the fact that changing

the focal length and position of the object we can change the size of the image created.

The lens maker equation relates the distance of the object and image with the focal length

Page 5: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Using the “thin lens” equation:A few rules are necessary to use the equation:

Object distances are always positiveImage distances are positive for real images

(when the image is on the opposite side of the lens as the object) and negative for virtual images (when the image is on the same side of the lens as the object).

The focal length is positive for converging lenses and negative for diverging lenses.

Page 6: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Thin Lens ExamplesA converging lens has a focal length of 20

cm. An object is located 50 cm from the lens. What type of image will be formed, and

where will it be located?

Page 7: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

MagnificationMany applications of lenses involve

magnification.Magnification helps us see distant or

small objects.For Example: a toy is placed 8 cm in

front of a lens. An upright, virtual image of magnification 3 is seen. Where is the image located?

Page 8: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Applications of OpticsWhat common devices use lens or mirrors?

Overhead projectorTelescopeMicroscopeBinocularsCamerasEye glassesHuman eye

Page 9: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

TelescopesTelescopes can be primarily composed of

refracting lenses or reflecting mirrors.

Page 10: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Simplistic Telescope Diagrams

Page 11: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Telescope Optics

Page 12: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Magnifying Glasses

What type of lens do you expect magnifying lenses use?

Page 13: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.
Page 14: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Overhead Projectors:

Page 15: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

EyesEyes are complex

optical devices!Notice the blind spot?What would happen if

the focal point changed?

Page 16: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Corrective LensesEye glasses are used to ensure the image is

focused on the sensors at the back of the eye.

Page 17: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Binoculars

Page 18: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.

Gravitational LensingLenses can take other forms…. Including galaxies

or other massive objects.Objects with very high gravity bend light like a

lens. This can create optical illusions!

Page 19: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.
Page 20: Converging lenses Diverging Lenses The Lens Equation We can make use of the fact that changing the focal length and position of the object we can change.