Can you answer the multiple choice all 1-7? The focal length of a converging leas is...
Answer the following. a. The ray of light shown passes from air (n_1 = 1) to water (n_2 = 1.33) to glass (n_3 = 1.5). i. If the light enters the water at an angle of incidence of 40 degree, then what is the refracted angle in the glass? ii. How would the refracted angle in glass change if the water was removed? Explain. b. Green light (lambda = 546 nm) passes through a single slit. What width must the...
1) A magnifying glass has a convex lens with a focal length of 12 cm. A rock is placed 30 cm away from the lens. What is the magnification factor of the rock? 2) A laser has a wavelength of 1064 nm in air. It enters some diamond with an index of refraction of 2.42. What is the wavelength of the light in the diamond? a. 530 nm b. 2600 nm c. 440 nm d. 100 nm e. 1060 nm
plz
help
1. If the speed of light changes to one third of its value entering from air to another medium, what is the refractive index of that medium with respect to air (nair-1) 3.0 A) B) 0.5 С) 2.0 D) Can't be determined from the information given. 2. Carbon disulfide (n, 1.63) is poured into a container made of crown glass (n2-1.49). What is the critical angle for internal reflection of a ray in the liquid when it is...
A monochromatic light ray enters a glass sphere of radius 5 cm from air as shown in the figure. The incident ray is parallel to the diameter AOB with a separation of h = 4 cm. After entering the glass sphere, the ray crosses the diameter AOB at a certain point between center O and point B.mainly ask (d) and (e)(d) If incident light is unpolarized, is the reflected light at point P perfectly polarized? If not, find another separation...
16. A Young's double slit has a slit separation of 2.50 x 10 m on which a monochromatic light beam is directed. The resultant bright fringes on a screen 1.00 m from the double slit are separated by 2.30 x 10 m. What is the wavelength of this beam?(1 nm-10 m) a. 373 nm b, 454 nm 575 nm d. 667 nm 17. What is the minimum thickness of a glycerin film (n 1.47) on which light of wavelength 600...
(a) (4 marks) Unpolarised light is incident on a set of three polarising sheets as shown in the figure. The polarising directions of the first and third sheets make angles 01 = 0.0°, and 03 = 90.0° to the vertical, respectively. Find the fraction of the incident intensity that passes through the set of three sheets when 02 is (i) 0°, (ii) 90°, and (iii) 45.00 Air Glass (b) (6 marks) Two rays of light are propagating through a glass...
Please explain how to solve
this. The answer should be B
8) (5 pts) Light with wavelength of 650 nm shines down on a curved piece of glass that rests on a flat glass as shown. The bottom image shows the reflected light. Assuming the light is incident close to normal to the surface, what is the thickness of the air gap at point Q, which has the maximum intensity? The refractive index of air is 1.0, and the refractive...
Problem 1 A concave miror has a focal length of 20 cm. What is the position of the resulting image if the image inverted and 3 times smaller than the object? is A) 27 cm B) 30 cm C) 35 cm D) 25 cm E) 29 cm Problem 2 A catfish is spotted at the bottom of a creek. The depth of the water is 1.5 m. A hunter (with no knowledge of optics) fires a rifle shot, directly aimed...
1. You have a converging lens with a focal length of 1.5 cm and a diverging lens with a focal length of 2.5 cm. You also have a binder clip with a height of 1.6 cm. A. Sketch the ray tracing if the binder clip is 4.1 cm from the converging lens. B. Use the thin lens equation to calculate the location and size of the image if the binder clip is 4.1 cm from the converging lens. C. What...
question 2 please and thank you
Physics 210 Review Problems for Final Lab I. Two converging lenses are separated by 5.00 cm. The left-hand lens has a focal length of 10.0 cm and the righ lens has a focal length of 15.0cm An object with a height of 1.00cm is place 300cm to the left of the left. hand lens. a. Find the location of the final image b. Find the lateral magnification c. Find the magnification assuming the object...