Question

Derive the thin lens equation using scalar parabolic waves. you can assume the Fresnel approximation is...

Derive the thin lens equation using scalar parabolic waves. you can assume the Fresnel approximation is valid

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
Write the equation down for the thin lens. How is this equation related to the lens...
Write the equation down for the thin lens. How is this equation related to the lens maker equations, are any approximations made to reduce the lens maker equation to the thin lens equation? Discuss. When light enters and exits the lens, the rays are shown in the diagrams in the laboratory write up as bending. What phenomenon accounts for the bending of the light moving from air to glass and then again from glass to air? A water droplet can...
question 3: Use the lens maker's equation to determine the position of an object if the...
question 3: Use the lens maker's equation to determine the position of an object if the image formed by a thin convex lens is 66.7cm from the center of the lens (next to opposite of the object). The lens has a focal length of 40cm. You have to draw the object, image, lens type and light rays using a scale (eg 10 cm each brand) to. (8pts) Drawing: (3pts) Light rays drawn correctly and to scale; (4pts) focus, image and...
Describe the complex used in Michaelis-Menten model and derive Michaelis-Menten reaction equation using steady state assumption....
Describe the complex used in Michaelis-Menten model and derive Michaelis-Menten reaction equation using steady state assumption. Explain why specific rate constant(s) can be ignored.
Some of you wear contact lenses: a contact lens is essentially a plastic disk. If during...
Some of you wear contact lenses: a contact lens is essentially a plastic disk. If during putting it on a person bend it by 10 degrees and the eye can apply a force of 1N across the entire lens (for this problem the lens is 2 cm in diameter and the bending happens equally on both sides from the center), what is the elasticity of the material? Write down the equation you are using.
Objectives: To be able to derive the necessary rate equations for multistep reactions using rate limiting...
Objectives: To be able to derive the necessary rate equations for multistep reactions using rate limiting cases and the steady-state approximation. Further we should be able to derive the necessary half-life equations based on 1st order rate kinetics. Question 1. This is a consecutive reaction irreversible first-rate reactions below A →B →C →.... 12 <Suppose that And you are interested in isolating the largest possible amount of B. Given the values of k1 and k2, derive an equation for the...
A light ray in air, indicated by the arrow, is incident on a convex glass lens...
A light ray in air, indicated by the arrow, is incident on a convex glass lens at an angle of 31° to the normal. a) Some of the light will be reflected from the lens. At what angle will it be reflected? b) Find the angle at which the light ray is refracted when entering the lens. (5 points) c) Find the angle at which the ray is incident on the other side of the lens and the angle of...
Using Interpolation methods derive a predictive equation for dissolved oxygen concentration for a chloride concentration of...
Using Interpolation methods derive a predictive equation for dissolved oxygen concentration for a chloride concentration of 10 g/L. Determine what the DO is at T= 8 C and 18 C. You must use a minimum of 4 data points. Dissolved Oxygen (mg/L) for Temperature (C) and Concentration of Chloride (g/L) T(C) Cl=0g/L Cl=10g/L Cl=20g/L 0 14.6 12.9 11.4 5 12.8 11.3 10.3 10 11.3 10.1   8.96 15 10.1   9.03 8.08 20 9.09 8.17 7.35 25 8.26 7.46 6.73 30 7.56...
1. In the space below, a. state Archimedes’ Principle b. define density c. Mathematically, derive an...
1. In the space below, a. state Archimedes’ Principle b. define density c. Mathematically, derive an equation based on this laboratory that uses Archimedes principle to measure the density of an object in terms of measurable quantities. Make sure the density of the object is NOT in terms of the unknown volume of the object in question. You can assume you know the density of water. d. Be sure to draw a free-body diagram of the mass attached to the...
Please show steps and formulas on how you solved the equation. Thanks 25. Assume you can...
Please show steps and formulas on how you solved the equation. Thanks 25. Assume you can buy a pure discount bond today at a price of $735. The bond matures in 5 years. What would be the percentage of capital gain over the life of the bond? Make sure your answer is rounded as a percentage
You are given a solution that may contain Ba2+ and Pb2+ ions. You can assume that...
You are given a solution that may contain Ba2+ and Pb2+ ions. You can assume that no other ions are present. Devise a method for separating, isolating, and confirming these ions. You can select from the techniques used in this lab, and any others that you might find appropriate. There are several valid alternative approaches to answer this question. Provided your approach appears logical and complete, it will be acceptable.