In a technological or engineering application, you have a voltage signal that is given by the equation V(t) = 120V sin(120πts-1) Where V is the unit of a volt, and s is the unit of a second, these units are treated as numerical constants. The cycle in which the average value of the square of the function is evaluated starts at t=0s and ends at t =(1/60)s o calculate the rms value ("root mean square"), you must take the average value of the square of the function in the cycle mentioned above, and then take the square root. Which of the following options corresponds to the rms value of the signal?
In a technological or engineering application, you have a voltage signal that is given by the equation V(t) = 120V sin(120πts-1) Where V is the unit of a volt, and s is the unit of a second, these units are treated as numerical constants. The cycle in which the average value of the square of the function is evaluated starts at t=0s and ends at t =(1/60)s o calculate the rms value ("root mean square"), you must take the average value of the square of the function in the cycle mentioned above, and then take the square root. Which of the following options corresponds to the rms value of the signal?
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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In a technological or engineering application, you have a voltage signal that is given by the equation
V(t) = 120V sin(120πts-1)
Where V is the unit of a volt, and s is the unit of a second, these units are treated as numerical constants. The cycle in which the average value of the square of the function is evaluated starts at t=0s and ends at t =(1/60)s
o calculate the rms value ("root mean square"), you must take the average value of the square of the function in the cycle mentioned above, and then take the square root. Which of the following options corresponds to the rms value of the signal?
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