TEXTBOOK PROBLEM 9. (Section 24-3) A parallel beam of light from a He-Ne laser, with a wavelength 633 nm, falls on two very narrow slits 0.068 mm apart. How far apart are the fringes in the center of the pattern on a screen 3.3 m away?
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A: Write a given values of this question. λ=580Nm=580×10-9md=2.75×10-6mD=2.00m
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- Solutions to question 3 pleaseReview I Consta The two most prominent wavelengths in the light emitted by a hydrogen discharge lamp are 656 nm (red) and 486 nm (blue). Light from a hydrogen lamp illuminates a diffraction grating with 550 Part A lines/mm , and the light is observed on a screen 1.6 m behind the grating. What is the distance between the first-order red and blue fringes? You may want to review (Page 940) . Express your answer to two significant figures and include the appropriate units For general problem-solving tips and strategies for this topic, you may want to view a Video Tutor Solution of Diffraction grating. HẢ d = Value Unitsvapor problem
- Part (a) What is the ratio of the slit width to the wavelength of the incident light? Part (b) What is the wavelength of the incident light, in nanometers?Solution to question 4 please18. Suppose that you are shining light through a small slit (width = 400 nm). Which will diffract more: a red laser with a wavelength of 650 nm or a green laser with a wavelength of 450 nm? not enough information to determine the diffraction will be the same green laser red laser