Part A How far apart are the two slits? V X•10 d = 37.9 • 10-6 %3D mm Submit Previous Answers Request Answer X Incorrect; Try Again; 4 attempts remaining Part B At what distance from the central bright fringe will the third dark fringe occur? VO AE y = cm 18
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- When violet light of wavelength 415 nm falls on a single slit, it creates a central diffraction peak that is 9.20 cm wide on a screen that is 2.50 m away. Part A How wide is the slit? VE ΑΣΦ D = 7.14 Submit Previous Answers Request Answer X Incorrect; Try Again; 4 attempts remaining ? mQ2) Two microscope slides are placed together but held apart at one end by a thin piece of tin foil. Under sodium light (589 nm) normally incident on the air film formed between the slides, one observes exactly 25 bright fringes from the edges in contact to the edge of the tin foil, the thickness of the foil is [cm] a. 4.27*10-4 b. 7.22*10-4 c. 1.02*10-3 d. 1.31*10-3 e. 7.36*10-4Figure nmPart D Suppose the wavelength of the light is 530nm. How much farther is it from the dot on the screen in the center of fringe E to the left slit than it is from the dot to the right slit? Express your answer with the appropriate units. Ar Incorrect; Try Again; 2 attempts remaining|IIIII A_B_C_DE
- Exercise 35.16 Coherent light of frequency 6.38x1014 Hz passes through two thin slits and falls on a screen 84.0 cm away. You observe that the third bright fringe occurs at + 3.12 cm on either side of the central bright fringe.Ignore work done7. [-/1 Points] DETAILS OSCOLPHYS2016 27.4.WA.021. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER Find the angle for the third-order maximum for 581 nm wavelength light falling on a diffraction grating having 1520 lines per centimeter.
- From the figure, identify which point is the: A B J E F G H Second interference maximum point? ♥ Second interference minimum point? ♥ First diffraction minimum point? First diffraction maximum point? If a diffraction grating has 3500 lines per cm, what is the spacing d between lines nm.Hello, Can I please have help regarding this problem ? Thanks. Suppose that the clock on our lecture room has a minute-hand length of 10 cm.(Use a coordinate system with the origin at center of clock and +x axis along the3PM direction and the +y direction along the 12PM direction). From the 12 to 8mark, for the tip of the minute hand:a) Sketch a vector diagram labeling ri, rf, Δr, Vi, Vf, and ΔV.b) Calculate the displacement vector in unit-vector notation.c) Calculate the average velocity vector in unit-vector notation.d) Calculate the average acceleration vector in unit-vector notation.e) Calculate magnitude and direction of the average acceleration vector.f) Calculate the magnitude and direction of the total acceleration of the tip ofthe minute hand at the 6 mark.I Review Light with a wavelength of 700 nm passes through a slit 8.00 um wide and falls on a screen 1.85 m away. Part A Find the linear distance on the screen from the central bright fringe to the first bright fringe above it. Express your answer to three significant figures. Hν ΑΣφ ? y = cm Submit Request Answer Provide Feedback Next >
- 1. At what angle is the first-order maximum for 469 -nm wavelength blue light falling on double slits separated by 0.06 mm? Angle: OAssume that the limits of the visible spectrum are arbitrarily chosen as 400 and 700 nm. Calculate the number of rulings per millimeter of a grating that will spread the first-order spectrum through an angle of 23.0° Number i Units