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  5. MTH603 Quiz 3 Solution and Discussion
dy/dx - = 1 - y,y(0) = 0 is an example of
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dy dx = 1 - y,y(0) = 0 is an example of Answer An ordinary differential equation A partial differential equation A polynomial equation None of the given choices
MTH603 - Numerical Analysis
In Double integration, the interval [a, b] should be divided into [c, d) should be divided into --sub intervals of size k. --subintervals of size h and the interval
zaasmiZ
In Double integration, the interval [a, b] should be divided into [c, d) should be divided into --sub intervals of size k. --subintervals of size h and the interval Answer equal, equal equal, unequal unequal, equal unequal, unequal
MTH603 - Numerical Analysis
The (n + 1) th difference of a polynomial of degree n is...
Kevin AustinK
The (n + 1) th difference of a polynomial of degree n is… Answer 0 Constant n +1
MTH603 - Numerical Analysis
Let P be any real number and h be the step size of any interval. Then the relation between h and P for the backward difference is given by
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Let P be any real number and h be the step size of any interval. Then the relation between h and P for the backward difference is given by Answer x-x, = Ph x- x, = P x + x, = Ph (x - x,)h= P
MTH603 - Numerical Analysis
In integrating $\int_{0}^{\frac{2}{2}} \cos x d x$ by dividing the interval into four equal parts, width of the interval should be
zaasmiZ
In integrating $\int_{0}^{\frac{2}{2}} \cos x d x$ by dividing the interval into four equal parts, width of the interval should be Answer $\frac{\pi}{2}$ $\pi$ $\frac{\pi}{8}$
MTH603 - Numerical Analysis
In fourth order Runge-Kutta method K 4
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In fourth order Runge-Kutta method K 4 is given by Answer k4 = hf(xn th,yn + kz) k4 = hf(xn + 2h, + 2kz) None of the given choices k4 = hf(x, — h,Yn — kz)
MTH603 - Numerical Analysis
In fourth order Runge-Kutta method k2
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In fourth order Runge-Kutta method k2 is given by Answer ^2-“/”“” З’Уп 3’ k2 = 45(-12.30-42)
MTH603 - Numerical Analysis
What is the Process of finding the values outside the interval (Xo,x,) called?
zaasmiZ
What is the Process of finding the values outside the interval (Xo,x,) called? Answer interpolation iteration Polynomial equation extrapolation
MTH603 - Numerical Analysis
When we apply Simpson's 3/8 rule, the number of intervals n must be
zaasmiZ
When we apply Simpson’s 3/8 rule, the number of intervals n must be Answer Even Odd Multiple of 3 Page 177 Similarly in deriving composite Simpson’s 3/8 rule, we divide the interval of integration into n sub-intervals, where n is divisible by 3, and applying the integration formula Multiple of 8
MTH603 - Numerical Analysis
Milne's P-C method is a multi step method where we assume that the solution to the given initial value problem is known at past --equally spaced points.
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Milne’s P-C method is a multi step method where we assume that the solution to the given initial value problem is known at past –equally spaced points. Answer 2 1 3 4 1
MTH603 - Numerical Analysis
The truncation error in Adam's predictor formula is ....-times more than that in corrector formula
zaasmiZ
The truncation error in Adam’s predictor formula is …-times more than that in corrector formula Answer 10 11 12 13
MTH603 - Numerical Analysis
To apply Simpson's 3/8 rule, the number of intervals be
zaasmiZ
Answer 10 11 12 13
MTH603 - Numerical Analysis
Which formula is useful in finding the interpolating polynomial?
zaasmiZ
Given the following data Which formula is useful in finding the interpolating polynomial? Answer Lagrange’s interpolation formula X 1 2 5 9 f(x) 2 0 30 132 Page 135 Newton’s forward difference interpolation formula Newton’s backward difference interpolation formula None of the given choices
MTH603 - Numerical Analysis
Rate of change of any quantity with respect to another can be modeled by
zaasmiZ
Answer An ordinary differential equation A partial differential equation A polynomial equation None of the given choices
MTH603 - Numerical Analysis
Romberg's integration method is ------ than Trapezoidal and Simpson's rule.
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Answer more accurate less accurate equally accurate none of the given choices
MTH603 - Numerical Analysis
In integrating f, e2* dx by dividing into eight equal parts, width of the interval should be......
zaasmiZ
Answer 0.250 0.500 0.125 0.625
MTH603 - Numerical Analysis
To apply Simpson's 1/3 rule, valid number of intervals are?
zaasmiZ
7 8 5 3 Page 177 The Simpson’s 1/3 rule, we have used two sub-intervals of equal width. In order to get a composite formula, we shall divide the interval of integration [a, b] Into an even number
MTH603 - Numerical Analysis
Newton's divided difference interpolation formula is used when the values of the independent variable are
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Equally spaced Not equally spaced Constant None of the above
MTH603 - Numerical Analysis
If there are (n+1) values of y corresponding to (n+1) values of x, then we can represent the function f(x) by a polynomial of degree
zaasmiZ
If there are (n+1) values of y corresponding to (n+1) values of x, then we can represent the function f(x) by a polynomial of degree
MTH603 - Numerical Analysis
MTH603 Assignment 1 Solution and Discussion
cyberianC
Re: MTH603 Assignment 1 Solution and Discussion Assignment No. 1 MTH603 (Spring 2022) Total Marks: 20 Due Date: 8th June, 2022 DON’T MISS THESE: Important instructions before attempting the solution of this assignment: • To solve this assignment, you should have good command over 1-8 lectures. • Upload assignments properly through the LMS, No Assignment will be accepted through email. • Write your ID on the top of your solution file. Don’t use colored backgrounds in your solution files. Use Math Type or Equation Editor, etc. for mathematical symbols. You should remember that if the solution files of some students are finding the same (copied), we will reward zero marks to all those students. Make a solution by yourself and protect your work from other students, otherwise both original and copied assignments will be awarded zero marks. Also remember that you are supposed to submit your assignment in Word format, any other format like scanned images, etc. will not be accepted and be awarded zero marks Question 1 Find a real root of the equation 2x+cos⁡(x)+e^x=0 using Bisection Method using Newton Raphson Method Also compare the results and comment which of the methods performs better and which is worst. You will consider x_0=-0.6557 as a best approximation while comparing the roots. Note: In each of the above methods,you are required to perform three iterations. Spring 2022_MTH603_1.docx
MTH603 - Numerical Analysis

MTH603 Quiz 3 Solution and Discussion

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mth603quiz 3solutiondiscussionfall 2019
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  • zareenZ Offline
    zareenZ Offline
    zareen
    Cyberian's Gold
    wrote on last edited by
    #6

    An improper integral is the limit of a definite integral as an endpoint of the interval of integration approaches either a specified real number or 8 or -8 or, in some cases, as both endpoints approach limits.

    True

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    • zareenZ Offline
      zareenZ Offline
      zareen
      Cyberian's Gold
      wrote on last edited by
      #7

      Euler’s Method numerically computes the approximate derivative of a function.

      False

      What is Euler method used for?
      In mathematics and computational science, the Euler method (also called forward Euler method) is a first-order numerical procedure for solving ordinary differential equations (ODEs) with a given initial value.

      Reff

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      • zareenZ Offline
        zareenZ Offline
        zareen
        Cyberian's Gold
        wrote on last edited by
        #8

        If we wanted to find the value of a definite integral with an infinite limit, we can instead replace the infinite limit with a variable, and then take the limit as this variable goes to _________.

        constant
        finite
        infinity
        zero

        We will replace the infinity with a variable (usually t ), do the integral and then take the limit of the result as t goes to infinity. On a side note, notice that the area under a curve on an infinite interval was not infinity as we might have suspected it to be. In fact, it was a surprisingly small number.

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        • zareenZ Offline
          zareenZ Offline
          zareen
          Cyberian's Gold
          wrote on last edited by zareen
          #9

          The determinant of a diagonal matrix is the product of the diagonal elements.
          True

          The determinant of a lower triangular matrix (or an upper triangular matrix) is the product of the diagonal entries. In particular, the determinant of a diagonal matrix is the product of the diagonal entries.

          Reff

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          • zareenZ Offline
            zareenZ Offline
            zareen
            Cyberian's Gold
            wrote on last edited by
            #10

            Power method is applicable if the eigen vectors corresponding to eigen values are linearly independent.

            Power method is applicable if the eigenvectors corresponding to eigenvalues are linearly independent.

            True
            False

            linearly independent eigenvectors. … We could still compute the ratio of corresponding components for some index, but the … Using your power method code, try to determine the largest eigenvalue of the … So far, the methods we have discussed seem suitable for finding one or a few eigenvalues and eigenvectors at a time.

            Reff

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            • zareenZ Offline
              zareenZ Offline
              zareen
              Cyberian's Gold
              wrote on last edited by
              #11

              A 3 x 3 identity matrix have three and different eigen values.
              True
              False

              Eigenvalues and Eigenvectors of a 3 by 3 matrix. … The picture is more complicated, but as in the 2 by 2 case, our best insights come from finding the matrix’s eigenvectors: that is, those vectors whose direction the transformation leaves unchanged.

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              • zareenZ Offline
                zareenZ Offline
                zareen
                Cyberian's Gold
                wrote on last edited by
                #12

                If n x n matrices A and B are similar, then they have the different eigenvalues (with the same multiplicities).

                True
                False
                A proof of the fact that similar matrices have the same eigenvalues and their … Show that if A and B are similar matrices, then they have the same eigenvalues and their … Eigenvalues and their Algebraic Multiplicities of a Matrix with a Variable … Suppose that all the eigenvalues of A are distinct and the matrices A and B …

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                • zareenZ Offline
                  zareenZ Offline
                  zareen
                  Cyberian's Gold
                  wrote on last edited by
                  #13

                  The Jacobi’s method is a method of solving a matrix equation on a matrix that has ____ zeros along its main diagonal.

                  Unity
                  Zero

                  Reff

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                  • zareenZ Offline
                    zareenZ Offline
                    zareen
                    Cyberian's Gold
                    wrote on last edited by
                    #14

                    The Gauss-Seidel method is applicable to strictly diagonally dominant or symmetric positive definite matrices A.

                    True
                    False

                    Explanation: Gauss-Seidel method is applicable to strictly diagonally dominant or symmetric positive definite matrices because only in this case convergence is possible. 7. Gauss seidal requires less number of iterations than Jacobi’s method. … Gauss-seidal is used for solving system of linear equations.

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                    • zareenZ Offline
                      zareenZ Offline
                      zareen
                      Cyberian's Gold
                      wrote on last edited by
                      #15

                      The determinant of a _______ matrix is the product of the diagonal elements.

                      • diagonal
                      • upper triangular
                      • lower triangular
                      • scalar

                      By linearity then, the determinant of AB is the product of the diagonal elements of A times the determinant of B, that is, it is the product of the determinant of A and that of B, as we have claimed. and we will have det A = det A’ , and det AB = det A’B.

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                      • zareenZ Offline
                        zareenZ Offline
                        zareen
                        Cyberian's Gold
                        wrote on last edited by
                        #16

                        Eigenvalues of a symmetric matrix are all _________.

                        • real
                        • zero
                        • positive
                        • negative

                        In linear algebra, a symmetric matrix is a square matrix that is equal to its transpose. Formally, … geometry, for each tangent space to a manifold may be endowed with an inner product, giving rise to what is called a Riemannian manifold. … Every real symmetric matrix is Hermitian, and therefore all its eigenvalues are real.

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                        • zareenZ Offline
                          zareenZ Offline
                          zareen
                          Cyberian's Gold
                          wrote on last edited by
                          #17

                          The Power method can be used only to find the eigenvalue of A that is largest in absolute value—we call this eigenvalue the dominant eigenvalue of A

                          True
                          False

                          For large values of n, polynomial equations like this one are difficult and time-consuming to solve. Moreover, numerical techniques for approximating roots of polynomial equations of high degree are sensitive to rounding errors. In this section we look at an alternative method for approximating eigenvalues. As presented here, the method can be used only to find the eigenvalue of A that is largest in absolute value—we call this eigenvalue the dominant eigenvalue of A. Although this restriction may seem severe, dominant eigenval- ues are of primary interest in many physical applications.

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                          • zareenZ Offline
                            zareenZ Offline
                            zareen
                            Cyberian's Gold
                            wrote on last edited by zareen
                            #18

                            The Jacobi’s method is a method of solving a matrix equation on a matrix that has no zeros along its main diagonal.

                            True
                            False

                            Jacobi Method.
                            The Jacobi method is a method of solving a matrix equation on a matrix that has no zeros along its main diagonal (Bronshtein and Semendyayev 1997, p. … Each diagonal element is solved for, and an approximate value plugged in. The process is then iterated until it converges.

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                            • zareenZ Offline
                              zareenZ Offline
                              zareen
                              Cyberian's Gold
                              wrote on last edited by
                              #19

                              The characteristics polynomial of a 3x 3 identity matrix is __________, if x is the eigen values of the given 3 x 3 identity matrix. where symbol ^ shows power.

                              • (x-1)^3
                              • (x+1)^3
                              • x^3-1
                              • x^3+1

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                              • zareenZ Offline
                                zareenZ Offline
                                zareen
                                Cyberian's Gold
                                wrote on last edited by
                                #20

                                For differences methods we require the set of values.

                                True
                                False

                                Method of Differences. The method of finite differences gives us a way to calculate a polynomial using its values at several consecutive points. This is often a good approach to finding the general term in a pattern, if we suspect that it follows a polynomial form.

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                                • zareenZ Offline
                                  zareenZ Offline
                                  zareen
                                  Cyberian's Gold
                                  wrote on last edited by
                                  #21

                                  If n x n matrices A and B are similar, then they have the different eigenvalues (with the same multiplicities).

                                  True
                                  False

                                  If A and B are positive definite, is A + B positive definite? We don’t know … to A. If two matrices have the same n distinct eigenvalues, they’ll be similar to the same diagonal

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