Beginning & Intermediate Algebra Plus NEW MyLab Math with Pearson eText -- Access Card Package (6th Edition)
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Chapter PFE, Problem 47PFE
To determine

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3x+1>5

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R denotes the field of real numbers, Q denotes the field of rationals, and Fp denotes the field of p elements given by integers modulo p. You may refer to general results from lectures. Question 1 For each non-negative integer m, let R[x]m denote the vector space consisting of the polynomials in x with coefficients in R and of degree ≤ m. x²+2, V3 = 5. Prove that (V1, V2, V3) is a linearly independent (a) Let vi = x, V2 = list in R[x] 3. (b) Let V1, V2, V3 be as defined in (a). Find a vector v € R[×]3 such that (V1, V2, V3, V4) is a basis of R[x] 3. [8] [6] (c) Prove that the map ƒ from R[x] 2 to R[x]3 given by f(p(x)) = xp(x) — xp(0) is a linear map. [6] (d) Write down the matrix for the map ƒ defined in (c) with respect to the basis (2,2x + 1, x²) of R[x] 2 and the basis (1, x, x², x³) of R[x] 3. [5]
Question 4 (a) The following matrices represent linear maps on R² with respect to an orthonormal basis: = [1/√5 2/√5 [2/√5 -1/√5] " [1/√5 2/√5] A = B = [2/√5 1/√5] 1 C = D = = = [ 1/3/5 2/35] 1/√5 2/√5 -2/√5 1/√5' For each of the matrices A, B, C, D, state whether it represents a self-adjoint linear map, an orthogonal linear map, both, or neither. (b) For the quadratic form q(x, y, z) = y² + 2xy +2yz over R, write down a linear change of variables to u, v, w such that q in these terms is in canonical form for Sylvester's Law of Inertia. [6] [4]
part b please

Chapter PFE Solutions

Beginning & Intermediate Algebra Plus NEW MyLab Math with Pearson eText -- Access Card Package (6th Edition)

Ch. PFE - Prob. 11PFECh. PFE - Prob. 12PFECh. PFE - Prob. 13PFECh. PFE - Prob. 14PFECh. PFE - Prob. 15PFECh. PFE - Prob. 16PFECh. PFE - Prob. 17PFECh. PFE - Prob. 18PFECh. PFE - Prob. 19PFECh. PFE - Prob. 20PFECh. PFE - Prob. 21PFECh. PFE - Prob. 22PFECh. PFE - Prob. 23PFECh. PFE - Prob. 24PFECh. PFE - Prob. 25PFECh. PFE - Prob. 26PFECh. PFE - Prob. 27PFECh. PFE - Prob. 28PFECh. PFE - Prob. 29PFECh. PFE - Prob. 30PFECh. PFE - Prob. 31PFECh. PFE - Prob. 32PFECh. PFE - Prob. 33PFECh. PFE - Prob. 34PFECh. PFE - Prob. 35PFECh. PFE - Prob. 36PFECh. PFE - Prob. 37PFECh. PFE - Prob. 38PFECh. PFE - Prob. 39PFECh. PFE - Prob. 40PFECh. PFE - Prob. 41PFECh. PFE - Prob. 42PFECh. PFE - Prob. 43PFECh. PFE - Prob. 44PFECh. PFE - Prob. 45PFECh. PFE - Prob. 46PFECh. PFE - Prob. 47PFECh. PFE - Prob. 48PFECh. PFE - Prob. 49PFECh. PFE - Prob. 50PFECh. PFE - Prob. 51PFECh. PFE - Prob. 52PFECh. PFE - Prob. 53PFECh. PFE - Prob. 54PFECh. PFE - Prob. 55PFECh. PFE - Prob. 56PFECh. PFE - Prob. 57PFECh. PFE - Prob. 58PFECh. PFE - Prob. 59PFECh. PFE - Prob. 60PFECh. PFE - Prob. 61PFECh. PFE - Prob. 62PFECh. PFE - Prob. 63PFECh. PFE - Prob. 64PFECh. PFE - Prob. 65PFECh. PFE - Prob. 66PFECh. PFE - Prob. 67PFECh. PFE - Prob. 68PFECh. PFE - Prob. 69PFECh. PFE - Prob. 70PFECh. PFE - Prob. 71PFECh. PFE - Prob. 72PFECh. PFE - Prob. 73PFECh. PFE - Prob. 74PFECh. PFE - Prob. 75PFECh. PFE - Prob. 76PFECh. PFE - Prob. 77PFECh. PFE - Prob. 78PFECh. PFE - Prob. 79PFECh. PFE - Prob. 80PFECh. PFE - Prob. 81PFECh. PFE - Prob. 82PFECh. PFE - Prob. 83PFECh. PFE - Prob. 84PFECh. PFE - Prob. 85PFECh. PFE - Prob. 86PFE
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