thin-lens-equation-converging-convex-and-diverging-concave-lens-ray-diagram-sign-conventions

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Interactive video lesson plan for: Thin Lens Equation Converging / Convex and Diverging / Concave Lens Ray Diagram & Sign Conventions

Activity overview:

This physics tutorial shows you how to use the thin lens equation / formula to calculate variables such as the image height and image distance in addition to the lateral magnification as well. This video contains plenty of examples and practice problems for you to work on.

Here is a list of topics:
1. Converging and Diverging Lens - Sign of Focal Length
2. Convex vs Concave Lens - Shape and Size at the Center
3. Thin Lens Equation
4. Focal Length, Object Distance, & Image Distance
5. Real vs Virtual Images Explained
6. How to Tell if an Image is Upright or Inverted, Reduced or Enlarged, Real or Virtual
7. Lateral Magnification Formula and Image Height
8. Sign Convention - di, do, f, hi, ho, and m
9. Negative Image Distance - Forms to the Left of the Lens - Virtual Image
10. Positive di Value - Forms to the right of the lens - Real Image
11. Ray diagram for Converging and Diverging Lens
12. Ray Diagram - Concave Lens - Virtual Image
13. Convex Lens - Ray Diagram - Real or Virtual Image

Tagged under: thin lens equation,converging diverging lens,lens,converging lens ray diagram,converging lens,physics,convex lens,convex lens ray diagram,concave lens,convex lens concave lens,focal length,ray diagram,concave lens ray diagram,diverging lens ray diagram,diverging lens,real image virtual image,real image,magnification,virtual image,lateral magnification

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