Finding average velocity of a polynomial

    • [DOC File]Integration of discrete function

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      Method 3: Polynomial interpolation to find the velocity profile. Because we are finding the area under the curve from we must use three points, and to fit a quadratic polynomial through the data. Using polynomial interpolation, our resulting velocity function is …

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    • [DOC File]Equations and Graphs

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      Investigate the average velocity for t intervals close to t = 4 such as 3.9 ( t ( 4 and closer and see if a pattern is evident.) Review Answers. m = 6. For . At the tangent line is horizontal and thus has slope of 0. Many different examples; for instance, a polynomial function such as . Slope tends toward . 80, 20, -40. 333 units. 80, 20, -40 ...

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    • [DOC File]Flow rate in a pipe experimental data

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      v(r)= velocity along the radial location, r. a = radius of the pipe. I used three methods of finding the flow rate. In the first case, the velocity vs radial location data was regressed to a second order polynomial and then substituted in equation (1). In the second method, the average velocity was found and the flow rate was simply given by

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    • [DOC File]Pennsylvania State University

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      Section 3 Derivatives of Polynomial Functions 22. ... Average Velocity of an Object in Rectilinear Motion. The velocity of a moving object is a rate of change. Specifically, velocity compares changes in position to changes in time. ... Example 1.5 Finding average velocities over several intervals. As in Example 1.2, a rock thrown upward is at a ...

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    • [DOC File]Integration of discrete function - MATH FOR COLLEGE

      https://info.5y1.org/finding-average-velocity-of-a-polynomial_1_9daa00.html

      Method 3: Polynomial interpolation to find the velocity profile. Because we are finding the area under the curve from we must use three points, and to fit a quadratic polynomial through the data. Using polynomial interpolation, our resulting velocity function is …

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