Concept explainers
The dispersion of the first three maxima that fall on the screen.
Answer to Problem 44PQ
The dispersion of the first order is
Explanation of Solution
Write the expression for
Here,
Write the expression for diffraction grating in the first order.
Here,
Conclusion:
Calculate grating spacing as follows.
Substitute
Substitute
Substitute
Substitute
Substitute
Substitute
Therefore, the dispersion of the first order is
Want to see more full solutions like this?
Chapter 36 Solutions
EBK PHYSICS FOR SCIENTISTS AND ENGINEER
- Two point sources of light are separated by 5.5 cm a. As viewed through a 13 μmμm diameter pinhole, what is the maximum distance from which they can be resolved if red light ( λλ = 690 nmnm) is used? b. If violet light ( λλ = 420 nmnm ) is used?arrow_forwardAn electric current through hydrogen gas produces several distinct wavelengths of visible light. What are the wavelengths of the hydrogen spectrum, if they form first-order maxima at angles of 24.2o,25.7o,29.1o,and 41.0o when projected on a diffraction grating having 10,000 lines per centimeter?arrow_forwardThe yellow light from a sodium vapor lamp seems to be of pure wave- length, but it produces two first-order maxima at 36.093◦ and 36.129◦ when projected on a 10,000 line per centimeter diffraction grating. What are the two wavelengths to an accuracy of 0.1 nm?arrow_forward
- A diffraction grating has 1550 slits/cm. How many full spectral orders can be seen (400 to 700 nm) when it is illuminated by white light? Express your answer as an integer. Find m.arrow_forwardA beam of white light is incident normally on a grating with 1,440 lines. per cm. The grating separates the light into its component colors. What is the angular separation of the first order red light (650 nm) and the second order blue light(450 nm) in degree? Enter a number with two digits behind the decimal point.arrow_forwardWhat angular separation is obtained after two spectral lines of 550.0 nm and 632.0 nm areobserved with a diffraction grating that is 4000 groves/mm?.arrow_forward
- The limit to the eye’s visual acuity is related to diffraction by the pupil.D = 2.85 mmdh = 1.25 m a. What is the angle between two just-resolvable points of light for a 2.85 mm diameter pupil in radians, assuming an average wavelength of 550 nm? θmin = b. Take your result to be the practical limit for the eye. What is the greatest possible distance in km a car can be from you if you can resolve its two headlights, given they are 1.25 m apart? L= c. What is the distance between two just-resolvable points held at an arm’s length (0.800 m) from your eye in mm? da =arrow_forwardThe hydrogen spectrum includes a red line at 656 nm and a blue-violet line at 434 nm. What are the angular separations between these two spectral lines for all visible orders obtained with a diffraction grating that has 5,000 grooves/cm? (In this problem assume that the light is incident normally on the gratings.)arrow_forwardi did this probelm and got an answer of 1.04 but the correct answer is 1.08. what did i do wrong?arrow_forward
- 632.8 nm) is used to calibrate a diffraction grating. If the first-order maximum occurs at 21.0°, what is the spacing between adjacent grooves in the grating? (In this problem, assume that the light is incident normally on the grating.) μm A helium-neon laser (1 =arrow_forwardA He-Ne gas laser which produces monochromatic light of a known wavelength ? =6.35 ? 10^−7 ? is used to calibrate a reflection grating in a spectroscope. The first-orderdiffraction line is found at an angle of 22 degrees to the incident beam. How many lines per meter are there on the grating?arrow_forwardMonochromatic light with wavelength 620 nm passes through a circular aperture with diameter 7.4 um. The resulting diffraction pattern is observed on a screen that is 4.5 m from the aperture. What is the diameter of the Airy disk on the screen?arrow_forward
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning