Problem 1Q: You are conducting a single-slit diffraction experiment with light of wavelength . What appears, on... Problem 2Q: In a single-slit diffraction experiment, the top and bottom rays through the slit arrive at a... Problem 3Q: For three experiments, Fig. 36-30 gives the parameter of Eq. 36-20 versus angle for two-slit... Problem 4Q: For three experiments, Fig. 36-31 gives versus angle in one-slit diffraction using light of... Problem 5Q: Figure 36-32 shows four choices for the rectangular opening of a source of either sound waves or... Problem 6Q Problem 7Q: At night many people see rings called entoptic halos surrounding bright outdoor lamps in otherwise... Problem 8Q: a For a given diffraction grating, does the smallest difference in two wavelengths that can be... Problem 9Q: Figure 36-33 shows a red line and a green line of the same order in the pattern produced by a... Problem 10Q: For the situation of Question 9 and Fig. 36-33, if instead we increased the grating spacing, would a... Problem 11Q: a Figure 36-34a shows the lines produced by diffraction gratings A and B using light of the same... Problem 12Q: Figure 36-35 shows the bright fringes that lie within the central diffraction envelope in two... Problem 13Q: In three arrangements you view two closely spaced small objects that are the same large distance... Problem 14Q: For a certain diffraction grating, the ratio /a of wavelength to ruling spacing is 1/3.5. Without... Problem 1P: GO The distance between the first and fifth minima of a single-slit diffraction pattern is 0.35 mm... Problem 2P: What must be the ratio of the slit width to the wavelength for a single slit to have the first... Problem 3P: A plane wave of wavelength 590 nm is incident on a slit with a width of a = 0.40 mm. A thin... Problem 4P: In conventional television, signals are broadcast from towers to home receivers. Even when a... Problem 5P: A single slit is illuminated by light of wavelengths a and b, chosen so that the first diffraction... Problem 6P: Monochromatic light of wavelength 441 nm is incident on a narrow slit. On a screen 2.00 m away, the... Problem 7P: Light of wavelength 633 nm is incident on a narrow slit. The angle between the first diffraction... Problem 8P: Sound waves with frequency 3000 Hz and speed 343 m/s diffract through the rectangular opening of a... Problem 9P: SSM ILW A slit 1.00 mm wide is illuminated by light of wavelength 589 nm. We see a diffraction... Problem 10P: GO Manufacturers of wire and other objects of small dimension sometimes use a laser to continually... Problem 11P: A 0.10-mm-wide slit is illuminated by light of wavelength 589 nm. Consider a point P on a viewing... Problem 12P: Figure 36-38 gives versus the sine of the angle in a single-slit diffraction experiment using... Problem 13P: Monochromatic light with wavelength 538 nm is incident on a slit with width 0.025 mm. The distance... Problem 14P: In the single-slit diffraction experiment of Fig. 36-4, let the wavelength of the light be 500 nm,... Problem 15P: SSM WWW The full width at half-maximum FWHM of a central diffraction maximum is defined as the angle... Problem 16P: Babinets principle. A monochromatic beam of parallel light is incident on a collimating hole of... Problem 17P: a Show that the values of a at which intensity maxima for single-slit diffraction occur can be found... Problem 18P: The wall of a large room is covered with acoustic tile in which small holes are drilled 5.0 mm from... Problem 19P: a How far from grains of red sand must you be to position yourself just at the limit of resolving... Problem 20P: The radar system of a navy cruiser transmits at a wavelength of 1.6 cm, from a circular antenna with... Problem 21P: SSM WWW Estimate the linear separation of two objects on Mars that can just be resolved under ideal... Problem 22P Problem 23P: SSM The two headlights of an approaching automobile are 1.4 m apart. At what a angular separation... Problem 24P: Entoptic halos. If someone looks at a bright outdoor lamp in otherwise dark surroundings, the lamp... Problem 25P: ILW Find the separation of two points on the Moons surface that can just be resolved by the 200 in.... Problem 26P: The telescopes on some commercial surveillance satellites can resolve objects on the ground as small... Problem 27P: If Superman really had x-ray vision at 0.10 nm wavelength and a 4.0 mm pupil diameter, at what... Problem 28P: GO The wings of tiger beetles Fig. 36-41 are colored by interference due to thin cuticle-like... Problem 29P: a What is the angular separation of two stars if their images are barely resolved by the Thaw... Problem 30P: GO Floaters. The floaters you see when viewing a bright, featureless background are diffraction... Problem 31P: SSM Millimeter-wave radar generates a narrower beam than conventional microwave radar, making it... Problem 32P: a A circular diaphragm 60 cm in diameter oscillates at a frequency of 25 kHz as an underwater source... Problem 33P Problem 34P Problem 35P: Suppose that the central diffraction envelope of a double-slit diffraction pattern contains 11... Problem 36P: A beam of light of a single wavelength is incident perpendicularly on a double-slit arrangement, as... Problem 37P: In a double-slit experiment, the slit separation d is 2.00 times the slit width w. How many bright... Problem 38P: In a certain two-slit interference pattern, 10 bright fringes lie within the second side peak of the... Problem 39P: Light of wavelength 440 nm passes through a double slit, yielding a diffraction pattern whose graph... Problem 40P: GO Figure 36-45 gives the parameter of Eq. 36-20 versus the sine of the angle in a two-slit... Problem 41P: GO In the two-slit interference experiment of Fig. 35-10, the slit widths are each 12.0 m, their... Problem 42P: GO a In a double-slit experiment, what largest ratio of d to a causes diffraction to eliminate the... Problem 43P: SSM WWW a How many bright fringes appear between the first diffraction-envelope minima to either... Problem 44P: Perhaps to confuse a predator, some tropical gyrinid beetles whirligig beetles are colored by... Problem 45P: A diffraction grating 20.0 mm wide has 6000 rulings. Light of wavelength 589 nm is incident... Problem 46P: Visible light is incident perpendicularly on a grating with 315 rulings/mm. What is the longest... Problem 47P: SSM ILW A grating has 400 lines/mm. How many orders of the entire visible spectrum 400700 nm can it... Problem 48P: A diffraction grating is made up of slits of width 300 nm with separation 900 nm. The grating is... Problem 49P: SSM WWW Light of wavelength 600 nm is incident normally on a diffraction grating. Two adjacent... Problem 50P: With light from a gaseous discharge tube incident normally on a grating with slit separation 1.73 m,... Problem 51P: GO A diffraction grating having 180 lines/mm is illuminated with a light signal containing only two... Problem 52P: GO A beam of light consisting of wavelengths from 460.0 nm to 640.0 nm is directed perpendicularly... Problem 53P Problem 54P: Derive this expression for the intensity pattern for a three-slit grating: , where = 2d sin / and a... Problem 55P: SSM ILW A source containing a mixture of hydrogen and deuterium atoms emits red light at two... Problem 56P: a How many rulings must a 4.00-cm-wide diffraction grating have to resolve the wavelengths 415.496... Problem 57P: Light at wavelength 589 nm from a sodium lamp is incident perpendicularly on a grating with 40 000... Problem 58P: A grating has 600 rulings/mm and is 5.0 mm wide. a What is the smallest wavelength interval it can... Problem 59P: A diffraction grating with a width of 2.0 cm contains 1000 lines/cm across that width. For an... Problem 60P Problem 61P: With a particular grating the sodium doublet 589.00 nm and 589.59 nm is viewed in the third order at... Problem 62P: A diffraction grating illuminated by monochromatic light normal to the grating produces a certain... Problem 63P: Assume that the limits of the visible spectrum are arbitrarily chosen as 430 and 680 nm. Calculate... Problem 64P: What is the smallest Bragg angle for x rays of wavelength 30 pm to reflect from reflecting planes... Problem 65P Problem 66P Problem 67P Problem 68P: If first-order reflection occurs in a crystal at Bragg angle 3.4, at what Bragg angle does... Problem 69P: X rays of wavelength 0.12 nm are found to undergo second-order reflection at a Bragg angle of 28... Problem 70P Problem 71P Problem 72P Problem 73P: Consider a two-dimensional square crystal structure, such as one side of the structure shown in Fig.... Problem 74P: An astronaut in a space shuttle claims she can just barely resolve two point sources on Earths... Problem 75P: SSM Visible light is incident perpendicularly on a diffraction grating of 200 rulings/mm. What are... Problem 76P: A beam of light consists of two wavelengths, 590.159 nm and 590.220 nm, that are to be resolved with... Problem 77P: SSM In a single-slit diffraction experiment, there is a minimum of intensity for orange light = 600... Problem 78P: GO A double-slit system with individual slit widths of 0.030 mm and a slit separation of 0.18 mm is... Problem 79P: SSM A diffraction grating has resolving power R = avg/ = Nm. a Show that the corresponding frequency... Problem 80P: The pupil of a persons eye has a diameter of 5.00 mm. According to Rayleighs criterion, what... Problem 81P Problem 82P: A grating with d = 1.50 m is illuminated at various angles of incidence by light of wavelength 600... Problem 83P: SSM In two-slit interference, if the slit separation is 14 m and the slit widths are each 2.0 m, a... Problem 84P: GO In a two-slit interference pattern, what is the ratio of slit separation to slit width if there... Problem 85P: A beam of light with a narrow wavelength range centered on 450 nm is incident perpendicularly on a... Problem 86P: If you look at something 40 m from you, what is the smallest length perpendicular to your line of... Problem 87P: Two yellow flowers are separated by 60 cm along a line perpendicular to your line of sight to the... Problem 88P: In a single-slit diffraction experiment, what must be the ratio of the slit width to the wavelength... Problem 89P: A diffraction grating 3.00 cm wide produces the second order at 33.0 with light of wavelength 600... Problem 90P: A single-slit diffraction experiment is set up with light of wavelength 420 nm, incident... Problem 91P: A diffraction grating has 8900 slits across 1.20 cm. If light with a wavelength of 500 nm is sent... Problem 92P: In an experiment to monitor the Moons surface with a light beam, pulsed radiation from a ruby laser ... Problem 93P: In June 1985, a laser beam was sent out from the Air Force Optical Station on Maui, Hawaii, and... Problem 94P: A diffraction grating 1.00 cm wide has 10 000 parallel slits. Monochromatic light that is incident... Problem 95P: SSM If you double the width of a single slit, the intensity of the central maximum of the... Problem 96P: When monochromatic light is incident on a slit 22.0 m wide, the first diffraction minimum lies at... Problem 97P: A spy satellite orbiting at 160 km above Earths surface has a lens with a focal length of 3.6 m and... Problem 98P: Suppose that two points are separated by 2.0 cm. If they are viewed by an eye with a pupil opening... Problem 99P: A diffraction grating has 200 lines/mm. Light consisting of a continuous range of wavelengths... Problem 100P: A diffraction grating has 200 rulings/mm, and it produces an intensity maximum at = 30.0. a What... Problem 101P Problem 102P: Monochromatic light wavelength = 450 nm is incident perpendicularly on a single slit width = 0.40... Problem 103P: Light containing a mixture of two wavelengths, 500 and 600 nm, is incident normally on a diffraction... Problem 104P Problem 105P: Show that a grating made up of alternately transparent and opaque strips of equal width eliminates... Problem 106P: Light of wavelength 500 nm diffracts through a slit of width 2.0 m and onto a screen that is 2.00 m... Problem 107P: If, in a two-slit interference pattern, there are 8 bright fringes within the first side peak of the... Problem 108P: White light consisting of wavelengths from 400 nm to 700 nm is normally incident on a grating. Show... Problem 109P: If we make d = a in Fig. 36-50, the two slits coalesce into a single slit of width 2a. Show that Eq.... Problem 110P: Derive Eq. 36-28, the expression for the half-width of the lines in a gratings diffraction pattern. Problem 111P Problem 112P: How many orders of the entire visible spectrum 400700 nm can be produced by a grating of 500... Problem 113P: An acoustic double-slit system of slit separation d and slit width a is driven by two loudspeakers... Problem 114P: Two emission lines have wavelengths and , respectively, where . Show that their angular... format_list_bulleted