Problem IV Let V be a subspace of R' spanned by three vectors given below. Find the distance from the vector y = (0, 0, 12, 0) the subspace V. 61. (1,1, 1, 1), (0,3,2,3), (-3, 5, 1, 1). 62. (1,1, 1, 1), (1,0,3,0), (1,0,5,-2). 63. (1,1,0,0), (2,0, 1, 1), (1, -5,2,0). 64. (1,0, 1, 1), (1,1,2,0), (0, 1, 4,2). 71. (1,1,1,1), (2,3,0,3), (1, 1, -3,5). 72. (1,1,1,1), (1,3,0,0), (1,5, 0, -2). 73. (1,0,0,1), (2, 1, 1,0), (1,0,2,-5). 74. (1,1,1,0), (1, 0, 2, 1), (0, 2, 4, 1).
Problem IV Let V be a subspace of R' spanned by three vectors given below. Find the distance from the vector y = (0, 0, 12, 0) the subspace V. 61. (1,1, 1, 1), (0,3,2,3), (-3, 5, 1, 1). 62. (1,1, 1, 1), (1,0,3,0), (1,0,5,-2). 63. (1,1,0,0), (2,0, 1, 1), (1, -5,2,0). 64. (1,0, 1, 1), (1,1,2,0), (0, 1, 4,2). 71. (1,1,1,1), (2,3,0,3), (1, 1, -3,5). 72. (1,1,1,1), (1,3,0,0), (1,5, 0, -2). 73. (1,0,0,1), (2, 1, 1,0), (1,0,2,-5). 74. (1,1,1,0), (1, 0, 2, 1), (0, 2, 4, 1).
Elementary Linear Algebra (MindTap Course List)
8th Edition
ISBN:9781305658004
Author:Ron Larson
Publisher:Ron Larson
Chapter5: Inner Product Spaces
Section5.CM: Cumulative Review
Problem 2CM: Take this test to review the material in Chapters 4and Chapters 5. After you are finished, check...
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