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Chapter 7 Solutions
Applied Physics (11th Edition)
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- Two horizontal wires are joined end to end, each with a diameter of 2.000 mm. The two joined wires are connected to fixed points a total distance of 4.00000 m apart. When both wires are at a temperature of 43.0°C, each wire has an unstretched length of 2.00000 m, and the tension in each is negligible. The first wire is made of steel and extends from x = -2.00000 m to x = 0, and the second is made of brass and extends from x = 0 to x = 2.00000 m. The temperature of both wires is then lowered to 18.0°C, and the wires stay joined together as they cool. The steel wire is composed of an alloy that has an average coefficient of linear expansion of 1.10 x 10-5 (°C) -1 and a Young's modulus of 2.00 x 1011 N/m². The brass wire is composed of an alloy that has an average coefficient of linear expansion of 1.90 x 10-5 (°C)¹ and a Young's modulus of 9.10 x 10 10 N/m². (Due to the nature of this problem, do not use rounded intermediate values-including answers submitted in WebAssign-in your…arrow_forward! Required information The radius of the Moon is 1.737 Mm and the distance between Earth and the Moon is 384.5 Mm. The intensity of the moonlight incident on her eye is 0.0220 W/m². What is the intensity incident on her retina if the diameter of her pupil is 6.54 mm and the diameter of her eye is 1.94 cm? W/m²arrow_forwardRequired information An object is placed 20.0 cm from a converging lens with focal length 15.0 cm (see the figure, not drawn to scale). A concave mirror with focal length 10.0 cm is located 76.5 cm to the right of the lens. Light goes through the lens, reflects from the mirror, and passes through the lens again, forming a final image. Converging lens Object Concave mirror 15.0 cm -20.0 cm- 10.0 cm d cm d = 76.5. What is the location of the final image? cm to the left of the lensarrow_forward
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