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4. [6 marks] Using the following graph representation (G(VE,w)): V a, b,c, d,e, fh E -la, b, [a, fl,la,d, (b,ej, [b,d, c,fl,fc,d],Id,el, sd, f) W(a, b) 4, W(a, f)-9, W(a, d)-10 W(b, e) 12, W (b, d)7, W(c,d) 3 a) [3 marks] Draw the graph including weights. b) [2 + 1-3 marks] Given the following algorithm for finding a minimum spanning tree for a graph: Given a graph (G(V,E)) create a new graph (F) vith nodes (V)...
R R 5. To compute 1 = lim 2 COS dr and J = lim 22+1 sinc dx simultaneously .22 +1 R R0 R R using Residue Theorem, let f(x) 22 +1 C COSC sinc (1) Show that if z = x + iy, then Rf(R2) = and Sf(R2) = x2 +1 x2 +1 (2) Find Res[f, i]. (3) Show that I = 0 and J (4) Prove I = 0) in the above problem without using Residue Theorem. IT
Simple Möbius. semi-disk z<1 with Imz> 0 onto the first quadrant Re w is mapped Find a Möbius transformation w (azb)/(cz d) that maps the 0 with Im w> 0 such that z = -1 0 and z 1 is mapped onto the point at infinity. Also find the inverse f(2) onto w transformation.
Simple Möbius. semi-disk z 0 onto the first quadrant Re w is mapped Find a Möbius transformation w (azb)/(cz d) that maps the 0 with Im...
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erf(x) = 2-1 e_pdt Vr Joe Composte trapezoid rule (MATLAB trapz andlor cuntrapr tunctions) Three point Gauss-Legendre quadrature MATLAB's builb-in integral function (Adaptive Gauss-Kronrod Quadrature) Write a function that receives the following single input 1. A column vector of one or more values at which el) is to be computed Your function should reburn the following outputs (in order, column vectors when input is a vector) 1. The estimate(s) for ert) caculated using composite...
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Let V and W be vector spaces, let B = (j,...,Tn) be a basis of V, and let C = (Wj,..., Wn) be any list of vectors in W. (1) Prove that there is a unique linear transformation T : V -> W such that T(V;) i E 1,... ,n} (2) Prove that if C is a basis of W, then the linear transformation T : V -> W from part (a)...
(4.2) Consider the integral -f 1 J dec 1+3 (a) Show that (4) 1 da 1 +x3 dr 1+r3 (b) Deduce that (3) -re) J f() dr where f is a function to be determined (8) and the (c) Approximate J by means of the three-term Gaussian Quadrature Hint: The roots of the third Legendre polynomial are xo corresponding coefficients for the three-term Gaussian Quadrature are co =,C= , C2= 15 15, 1 0, 32 5 Y 9 (2) (25]...
Digital Signal Processing (ELEC30001.1) - Spring -2019-CW2(ASSMNT )-All-Qp b. Calculate FFT of a signal x(n)- [7, 3+j2, 2, 5, 9, 6,0,j] using the signal flow graph given in (15 Marks) figure 3. Show the intermediate values at every nodes of the flow graph. X121 (3 z(4) wg wi
Digital Signal Processing (ELEC30001.1) - Spring -2019-CW2(ASSMNT )-All-Qp b. Calculate FFT of a signal x(n)- [7, 3+j2, 2, 5, 9, 6,0,j] using the signal flow graph given in (15 Marks) figure 3....
z+1 The linear fractional transformation shown below is related to w = u + jv and z = x + jy w= z-2' a. Calculate the curves that the lines v = constant maps to in the x-y plane, b. Calculate the curves that the lines y = constant maps to in the u-v plane, c. What is the line in the x-y plane that maps to a line in the u-v plane?
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Problem #4: (16 points) Estimate the following integral using a three point Gauss Legendre rule I = | xe* +3dz Gauss zeroes and weights - 3/5 5/9 10 8/9 3 + 3/5 5/9 22. what is the required mapping (3) (a) x(E)= $ + 3.5 x()= 1.75 $ +3.75 x(E)= 3.5 $ +1.5 (d) x(E)= 1.5 & + 3.5 (e) none of the...
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25. Approximate the following functions f(x) as a linear combination of the first four Legendre polynomials over the interval [-1,1]: Lo(x) = 1, Li(x) = x, L2(x) = x2-1. L3(x) = x3-3x/5. (a) f(x) = X4 (b) f(x) = k (c) f(x) =-1: x < 0, = 1: x 0 Example 8. Approximating e by Legendre Polynomials Let us use the first four Legendre polynomials Lo(x) 1, Li(x)...