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The wavelength of light emitted from two distant objects is 715 nm. What is the minimum angle at which these objects can just be resolved when using binoculars with a 50-mm objective lens?


A) 10-2 degrees
B) 10-3 degrees
C) 10-4 degrees
D) 10-5 degrees
E) 10-6 degrees

F) A) and B)
G) D) and E)

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Which one of the following statements provides the most convincing evidence that electromagnetic waves have a transverse character?


A) Electromagnetic waves can be refracted.
B) Electromagnetic waves can be reflected.
C) Electromagnetic waves can be polarized.
D) Electromagnetic waves can be diffracted.
E) Electromagnetic waves exhibit interference.

F) A) and D)
G) A) and B)

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Two stars are just barely resolved by a telescope with a lens diameter of 0.500 m. Determine the angular separation of the two stars. Assume incident light of wavelength 500.0 nm.


A) 1.22 × 10-6 rad
B) 5.66 × 10-5 rad
C) 2.44 × 10-7 rad
D) 4.88 × 10-5 rad
E) 1.22 × 10-7 rad

F) D) and E)
G) None of the above

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Two identical light waves, A and B, are emitted from different sources and meet at a point P. The distance from the source of A to the point P is LA; and the source of B is a distance LB from P. Which one of the following statements is necessarily true concerning the interference of the two waves?


A) A and B will interfere constructively because their amplitudes are the same.
B) A and B will interfere constructively if LA = LB.
C) A and B will interfere destructively if LA - LB = m λ\lambda where m = 0, 1, 2, 3, ...
D) A and B will interfere destructively if LA is not equal to LB.
E) A and B will interfere constructively because their wavelengths are the same.

F) C) and D)
G) A) and E)

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White light is passed through a diffraction grating that has 2.50 × 105 lines/m. On each side of the white central maximum, a spectrum of colors is observed. What is the wavelength of the light observed at an angle of 7.00° in the first-order bright fringes?


A) 487 nm
B) 589 nm
C) 632 nm
D) 668 nm
E) 731 nm

F) A) and E)
G) A) and B)

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Which one of the following statements best explains why interference patterns are not usually observed for light from two ordinary light bulbs?


A) Diffraction effects predominate.
B) The two sources are out of phase.
C) The two sources are not coherent.
D) The interference pattern is too small to observe.
E) Light from ordinary light bulbs is not polarized.

F) B) and E)
G) A) and C)

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C

Light with a wavelength of 600.0 nm is incident on a single slit of width 6.5 μ\mu m. The resulting diffraction pattern is observed on a nearby screen and has a central maximum of width 3.5 m. What is the distance between the screen and the slit?


A) 9.5 m
B) 19 m
C) 38 m
D) 57 m
E) 76 m

F) All of the above
G) C) and D)

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B

What is the minimum (non-zero) thickness of a benzene (n = 1.501) thin film that will result in constructive interference when viewed at normal incidence and illuminated with orange light ( λ\lambda vacuum = 615 nm) ? A glass slide (ng = 1.620) supports the thin film.


A) 51.0 nm
B) 306 nm
C) 204 nm
D) 102 nm
E) 76.0 nm

F) A) and B)
G) A) and C)

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Light is incident on two slits that are separated by 0.2 mm. The figure shows the resulting interference pattern observed on a screen 1.0 m from the slits. Determine the wavelength of light used in this experiment. Light is incident on two slits that are separated by 0.2 mm. The figure shows the resulting interference pattern observed on a screen 1.0 m from the slits. Determine the wavelength of light used in this experiment.   A) 0.05 nm B) 0.50 nm C) 50 nm D) 500 nm E) 5000 nm


A) 0.05 nm
B) 0.50 nm
C) 50 nm
D) 500 nm
E) 5000 nm

F) D) and E)
G) C) and D)

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Light from two sources, λ\lambda 1 = 623 nm and λ\lambda 2 = 488 nm, is incident on a diffraction grating that has 5550 lines/cm. What is the angular separation, θ\theta 1 - θ\theta 2, of the second order maxima of the two waves?


A) 11.0°
B) 15.0°
C) 25.0°
D) 32.8°
E) 43.8°

F) B) and C)
G) A) and E)

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Light of wavelength 625 nm passes through a single slit of width 0.320 mm and forms a diffraction pattern on a flat screen located 8.00 m away. Determine the distance between the middle of the central bright fringe and the first dark fringe.


A) 0.156 cm
B) 0.516 cm
C) 1.56 cm
D) 5.16 cm
E) 6.51 cm

F) B) and E)
G) A) and E)

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A lens that has an index of refraction of 1.61 is coated with a non-reflective coating that has an index of refraction of 1.45. Determine the minimum thickness for the film if it is to be non-reflecting for light of wavelength 5.60 × 102 nm.


A) 1.93 × 10-7 m
B) 3.86 × 10-7 m
C) 4.83 × 10-8 m
D) 9.66 × 10-8 m
E) 8.69 × 10-8 m

F) A) and D)
G) B) and D)

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A portion of a soap bubble appears yellow ( λ\lambda = 588.0 nm in vacuum) when viewed at normal incidence in white light. Determine the two smallest, non-zero thicknesses for the soap film if its index of refraction is 1.40.


A) 89 nm and 179 nm
B) 89 nm and 268 nm
C) 105 nm and 315 nm
D) 125 nm and 375 nm.
E) 170 nm and 536 nm

F) D) and E)
G) None of the above

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C

Light with a wavelength of 644 nm uniformly illuminates a single slit. What is the width of the slit if the first-order dark fringe is located at θ\theta = 0.125°?


A) 9.42 × 10-4 m
B) 7.60 × 10-4 m
C) 4.71 × 10-4 m
D) 3.80 × 10-4 m
E) 2.95 × 10-4 m

F) A) and B)
G) C) and D)

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The figure shows the interference pattern obtained in a double-slit experiment using light of wavelength 600 nm. v The figure shows the interference pattern obtained in a double-slit experiment using light of wavelength 600 nm. v   -Which one of the following phenomena would be observed if the distance between the slits is increased? A) The fringes would become brighter. B) The central bright fringe would change position. C) The distance between dark fringes would increase. D) The distance between bright fringes would increase. E) The angular separation between the dark fringes would decrease. -Which one of the following phenomena would be observed if the distance between the slits is increased?


A) The fringes would become brighter.
B) The central bright fringe would change position.
C) The distance between dark fringes would increase.
D) The distance between bright fringes would increase.
E) The angular separation between the dark fringes would decrease.

F) A) and E)
G) All of the above

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A double slit is illuminated with monochromatic light of wavelength 6.11 × 102 nm. The m = 0 and m = 1 bright fringes are separated by 1.8 cm on a screen which is located 3.5 m from the slits. What is the separation between the slits?


A) 4.0 × 10-5 m
B) 8.0 × 10-5 m
C) 1.2 × 10-4 m
D) 1.6 × 10-4 m
E) 2.4 × 10-4 m

F) B) and D)
G) A) and D)

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The Hubble Space Telescope in orbit above the Earth has a 2.4 m circular aperture. The telescope has equipment for detecting ultraviolet light. What is the minimum angular separation between two objects that the Hubble Space Telescope can resolve in ultraviolet light of wavelength 95 nm?


A) 4.8 × 10-8 rad
B) 7.0 × 10-8 rad
C) 1.9 × 10-7 rad
D) 1.5 × 10-7 rad
E) 3.3 × 10-9 rad

F) A) and D)
G) All of the above

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Two candles are lit and separated by 0.10 m. If the diameter of the pupil of an observer's eye is 3.5 mm, what is the maximum distance that the candles can be away from the observer and be seen as two light sources? Use 545 nm for the wavelength of light in the eye.


A) 170 m
B) 340 m
C) 530 m
D) 680 m
E) 850 m

F) A) and B)
G) B) and D)

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The figure shows the interference pattern obtained in a double-slit experiment using light of wavelength 600 nm. v  The figure shows the interference pattern obtained in a double-slit experiment using light of wavelength 600 nm. v   -Which fringe results from a phase difference of 4 \pi ? A) A B) B C) C D) D E) E -Which fringe results from a phase difference of 4 π\pi ?


A) A
B) B
C) C
D) D
E) E

F) B) and C)
G) All of the above

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A 30.0-mm wide diffraction grating produces a deviation of 30.0° in the second order principal maxima. The wavelength of light is 600.0 nm. What is the total number of slits on the grating?


A) 10 000
B) 11 500
C) 12 500
D) 14 000
E) 15 000

F) None of the above
G) A) and E)

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