Learning Goal: To understand the concept of intensity, the relationship between the power of the source and the intensity of the wave, and the dependence of intensity on distance. Since waves transfer energy from one point to another, one can define the power of a wave as the rate at which the wave transports energy. The intensity of a wave, in contrast, is the power relative to a certain surface. Consider a wave traveling across a surface perpendicular to the direction of propagation. The intensity I of the wave is defined as the ratio of the power P of the wave to the area A of that surface: I = ²₁ Note that the surface may be real (physical, like an eardrum or a windowpane) or mathematical. Quite frequently, we will be interested in the intensity produced by a relatively small source at a relatively large distance. If the source emits waves uniformly in all possible directions (produces spherical waves), the formula given here makes it possible to find the intensity at a distance r from the source: 1 = ² P Note that, in all parts of this problem, assume that the source generates spherical waves, so that this intensity formula is applicable Intensity is measured in watts per square meter (W/m²). All the information presented here is pertinent to any kind of wave. In this problem, we will be focusing on sound waves. A popular car stereo has four speakers, each rated at 60 W. In answering the following questions, assume that the speakers produce sound at their maximum power. ▼ ▼ Part A Find the intensity I of the sound waves produced by one 60-W speaker at a distance of 1.0 m Express your answer numerically in watts per square meter. Use two significant figures. I= Submit Part B I= ΓΕΙ ΑΣΦ ΑΣΦΑΛΙ Part C Request Answer Find the intensity I of the sound waves produced by one 60-W speaker at a distance of 1.5 m. Express your answer numerically in watts per square meter. Use two significant figures. Submit Request Answer I= IVE| ΑΣΦ| ? IVE| ΑΣΦ| [5] ? W/m² Find the intensity I of the sound waves produced by four 60-W speakers as heard by the driver. Assume that the driver is located 1.0 m from each of the two front speakers and 1.5 m from each of the two rear speakers. Express your answer numerically in watts per meter squared. ? W/m² Review W/m²
Learning Goal: To understand the concept of intensity, the relationship between the power of the source and the intensity of the wave, and the dependence of intensity on distance. Since waves transfer energy from one point to another, one can define the power of a wave as the rate at which the wave transports energy. The intensity of a wave, in contrast, is the power relative to a certain surface. Consider a wave traveling across a surface perpendicular to the direction of propagation. The intensity I of the wave is defined as the ratio of the power P of the wave to the area A of that surface: I = ²₁ Note that the surface may be real (physical, like an eardrum or a windowpane) or mathematical. Quite frequently, we will be interested in the intensity produced by a relatively small source at a relatively large distance. If the source emits waves uniformly in all possible directions (produces spherical waves), the formula given here makes it possible to find the intensity at a distance r from the source: 1 = ² P Note that, in all parts of this problem, assume that the source generates spherical waves, so that this intensity formula is applicable Intensity is measured in watts per square meter (W/m²). All the information presented here is pertinent to any kind of wave. In this problem, we will be focusing on sound waves. A popular car stereo has four speakers, each rated at 60 W. In answering the following questions, assume that the speakers produce sound at their maximum power. ▼ ▼ Part A Find the intensity I of the sound waves produced by one 60-W speaker at a distance of 1.0 m Express your answer numerically in watts per square meter. Use two significant figures. I= Submit Part B I= ΓΕΙ ΑΣΦ ΑΣΦΑΛΙ Part C Request Answer Find the intensity I of the sound waves produced by one 60-W speaker at a distance of 1.5 m. Express your answer numerically in watts per square meter. Use two significant figures. Submit Request Answer I= IVE| ΑΣΦ| ? IVE| ΑΣΦ| [5] ? W/m² Find the intensity I of the sound waves produced by four 60-W speakers as heard by the driver. Assume that the driver is located 1.0 m from each of the two front speakers and 1.5 m from each of the two rear speakers. Express your answer numerically in watts per meter squared. ? W/m² Review W/m²
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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