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picture1_Ndi1 Item Download 2023-01-28 15-09-11


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File: Ndi1 Item Download 2023-01-28 15-09-11
numerical differentiation and integration numerical differentiation finite differences interpolating polynomials taylor series expansion richardson extrapolation numerical integration basic numerical integration improved numerical integration trapezoidal simpson s rules rhombergintegration itcs4133 5133 ...

icon picture PDF Filetype PDF | Posted on 28 Jan 2023 | 2 years ago
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              Numerical Differentiation and Integration
          Numerical Differentiation
                ◦ Finite Differences
                ◦ Interpolating Polynomials
                ◦ Taylor Series Expansion
                ◦ Richardson Extrapolation
          Numerical Integration
                ◦ Basic Numerical Integration
                ◦ Improved Numerical Integration
                    ⇒ Trapezoidal, Simpson’s Rules
                ◦ RhombergIntegration
        ITCS4133/5133: Numerical Comp. Methods               1                 Numerical Differentiation and Integration
              Numerical Differentiation and Integration
          Many engineering applications require numerical estimates of
              derivatives of functions
          Especially true, when analytical solutions are not possible
          Differentiation: Use finite differences
          Integration (definite integrals): Weighted sum of function values
              at specified points (area under the curve).
        ITCS4133/5133: Numerical Comp. Methods               2                 Numerical Differentiation and Integration
          Application:Integral of a Normal Distribution
                                                                                                         2
          ◦ Represented as a Gaussian, a scaled form of f(x) = e−x , very
              important function in statistics
          ◦ Noteasytodetermineindefinite integral - use numerical techniques
                                                         Z b        2
                                                  A=           e−x
                                                           a
        ITCS4133/5133: Numerical Comp. Methods               3                 Numerical Differentiation and Integration
                            Application:Integral of a Sinc
                                                 f(x) = sin(x)
                                                                x
        ITCS4133/5133: Numerical Comp. Methods               4                 Numerical Differentiation and Integration
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...Numerical differentiation and integration finite differences interpolating polynomials taylor series expansion richardson extrapolation basic improved trapezoidal simpson s rules rhombergintegration itcs comp methods many engineering applications require estimates of derivatives functions especially true when analytical solutions are not possible use nite denite integrals weighted sum function values at specied points area under the curve application integral a normal distribution represented as gaussian scaled form f x e very important in statistics noteasytodetermineindenite techniques z b sinc sin...

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