Problem 1Q Problem 2Q Problem 3Q: a Figure 33-27 shows light reaching a polarizing sheet whose polarizing direction is parallel to a y... Problem 4Q Problem 5Q: In the arrangement of Fig. 33-l5a, start with light that is initially polarized parallel to the x... Problem 6Q Problem 7Q: Figure 33-30 shows fays of monochromatic Light propagating through three materials a, b, and c. Rank... Problem 8Q: Figure 33-31 shows the multiple reflections of a light ray along a glass corridor where the wails... Problem 9Q: Figure 33-32 shows four long horizontal layers AD of different materials, with air above and below... Problem 10Q: The leftmost block in Fig. 33-33 depicts total internal reflection for light inside a material with... Problem 11Q Problem 12Q Problem 1P Problem 2P Problem 3P Problem 4P: About how far apart must you hold your hands for them to be separated by 1.0 nano-light-second the... Problem 5P: SSM What inductance must be connected to a 17 pF capacitor in an oscillator capable of generating... Problem 6P Problem 7P Problem 8P Problem 9P Problem 10P Problem 11P Problem 12P Problem 13P: Sunlight just outside Earths atmosphere has an intensity of 1.40 kW/m2. Calculate a Em and b Bm for... Problem 14P Problem 15P: An airplane flying at a distance of 10 km from a radio transmitter receives a signal of intensity 10... Problem 16P Problem 17P Problem 18P Problem 19P Problem 20P: Radiation from the Sun reaching Earth just outside the atmosphere has an intensity of 1.4 kW/m2. a... Problem 21P: ILW What is the radiation pressure 1.5 m away from a 500 W lightbulb? Assume that the surface on... Problem 22P Problem 23P: Someone plans to float a small, totally absorbing sphere 0.500 m above an isotropic point source of... Problem 24P Problem 25P Problem 26P Problem 27P Problem 28P: The average intensity of the solar radiation that strikes normally on a surface just outside Earths... Problem 29P: SSM A small spaceship with a mass of only 1.5 103 kg including an astronaut is drifting in outer... Problem 30P: A small laser emits light at power 5.00 mW and wavelength 633 nm. The laser beam is focused narrowed... Problem 31P Problem 32P Problem 33P Problem 34P Problem 35P Problem 36P: At a beach the light is generally partially polarized due to reflections off sand and water. At a... Problem 37P Problem 38P Problem 39P Problem 40P Problem 41P: A beam of polarized light is sent into a system of two polarizing sheets. Relative to the... Problem 42P Problem 43P: A beam of partially polarized light can be considered to be a mixture of polarized and unpolarized... Problem 44P Problem 45P: When the rectangular metal tank in Fig. 33-46 is filled to the top with an unknown liquid, observer... Problem 46P: In Fig. 33-47a, a light ray in an underlying material is incident at angle 1 on a boundary with... Problem 47P: Light in vacuum is incident on the surface of a glass slab. In the vacuum the beam makes an angle of... Problem 48P: In Fig. 33-48a, a light ray in water is incident at angle 1 on a boundary with an underlying... Problem 49P: Figure 33-49 shows light reflecting from two perpendicular reflecting surfaces A and B. Find the... Problem 50P: In Fig. 33-50a, a beam of light in material 1 is incident on a boundary at an angle 1 = 40. Some of... Problem 51P: GO In Fig. 33-51, light is incident at angle 1 = 40.1 on a boundary between two transparent... Problem 52P: In Fig. 33-52a, a beam of light in material 1 is incident on a boundary at an angle of 1 = 30. The... Problem 53P: SSM WWW ILW in Fig. 33-53, a ray is incident on one face of a triangular glass prism in air. The... Problem 54P Problem 55P Problem 56P: Rainbows from square drops. Suppose that, on some surreal world, raindrops had a square cross... Problem 57P: A point source of light is 80.0 cm below the surface of a body of water. Find the diameter of the... Problem 58P: The index of refraction of benzene is 1.8. What is the critical angle for a light ray traveling in... Problem 59P: SSM ILW In Fig. 33-57, a ray of light is perpendicular to the face ab of a glass prism n = 1.52.... Problem 60P: In Fig. 33-58, light from ray A refracts from material 1 n1 = 1.60 into a thin layer of material 2... Problem 61P: GO In Fig. 33-59, light initially in material 1 refracts into material 2, crosses that material, and... Problem 62P: GO A catfish is 2.00 m below the surface of a smooth lake. a What is the diameter of the circle on... Problem 63P: In Fig. 33-60, light enters a 90 triangular prism at point P with incident angle , and then some of... Problem 64P: Suppose the prism of Fig. 33-53 has apex angle = 60.0 and index of refraction n = 1.60. a What is... Problem 65P: GO Figure 33-61 depicts a simplistic optical fiber: a plastic core n1 = 1.58 is surrounded by a... Problem 66P Problem 67P: GO In the ray diagram of Fig. 33-63, where the angles are not drawn to scale, the ray is incident at... Problem 68P: a At what angle of incidence will the light reflected from water be completely polarized? b Does... Problem 69P Problem 70P: In Fig. 33-64, a light ray in air is incident on a flat layer of material 2 that has an index of... Problem 71P Problem 72P: An electromagnetic wave with frequency 4.00 1014 Hz travels through vacuum in the positive... Problem 73P Problem 74P: A particle in the solar system is under the combined influence of the Suns gravitational attraction... Problem 75P: SSM In Fig, 33-65, a light ray enters a glass slab at point A at incident angle 1 = 45.0 and then... Problem 76P Problem 77P: Rainbow. Figure 33-67 shows a light ray entering and then leaving a falling, spherical raindrop... Problem 78P: The primary rainbow described in Problem 77 is the type commonly seen in regions where rainbows... Problem 79P: SSM emerges from the opposite face parallel to its initial direction but displaced sideways, as in... Problem 80P Problem 81P Problem 82P Problem 83P: SSM A ray of white light traveling through fused quartz is incident at a quartzair interface at... Problem 84P: Three polarizing sheets are stacked. The first and third are crossed; the one between has its... Problem 85P: In a region of space where gravirational forces can be neglected. a sphere is accelerated by a... Problem 86P: An unpolarized beam of light is sent into a stack of four polarizing sheets, oriented so that the... Problem 87P: SSM During a test, a NATO surveillance radar system, operating at 12 GHz at 180 kW of power,... Problem 88P: The magnetic component of an electromagnetic wave in vacuum has an amplitude of 85.8 nT and an... Problem 89P: Calculate the a upper and b lower limit of the Brewster angle for white light incident on fused... Problem 90P: In Fig. 33-71, two light rays pass from air through five layers of transparent plastic and then back... Problem 91P Problem 92P: In about A D 150, Claudius Ptolemy gave the following measured values for the angle of incidence 1... Problem 93P Problem 94P Problem 95P Problem 96P Problem 97P: Two polarizing sheets, one directly above the other, transmit p of the initially tin polarized light... Problem 98P Problem 99P Problem 100P Problem 101P Problem 102P Problem 103P Problem 104P Problem 105P Problem 106P: In Fig. 33-78, where n1 = l.70, n2 = l .50, and n3 = 1.30, light refracts from material l into... Problem 107P: When red light in vacuum is incident at the Brewster angle on a certain glass slab, the angle of... Problem 108P Problem 109P: SSM a Show that Eqs. 33-1 land 33-2 satisfy the wave equations displayed in Problem 108. b Show that... Problem 110P format_list_bulleted