[ -100 25 2 {-A-E-A} Let = , = 50 , = find an orthogonal basis under the Euclidean inner product. Orthogonal basis: 3 -76 57 be a basis for R³. Use the Gram-Schmidt process to α V3 = b {--0--[1]-0} V1 = 4 V2= 50 с a = Ex: 1.23 b = Ex: 1.23 C = Ex: 1.23
[ -100 25 2 {-A-E-A} Let = , = 50 , = find an orthogonal basis under the Euclidean inner product. Orthogonal basis: 3 -76 57 be a basis for R³. Use the Gram-Schmidt process to α V3 = b {--0--[1]-0} V1 = 4 V2= 50 с a = Ex: 1.23 b = Ex: 1.23 C = Ex: 1.23
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
Related questions
Question
A,B and C in decimal form please
![[
-100
25
2
{-A-E-A}
Let
=
, =
50
, =
find an orthogonal basis under the Euclidean inner product.
Orthogonal basis:
3
-76
57
be a basis for R³. Use the Gram-Schmidt process to
α
V3 = b
{--0--[1]-0}
V1 = 4 V2=
50
с
a =
Ex: 1.23
b = Ex: 1.23
C = Ex: 1.23](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbdef5b53-2acf-4587-9caf-137577214115%2Fb15dd434-6ecc-4f58-8b0c-f515f0ac04b8%2F1i5fio4_processed.png&w=3840&q=75)
Transcribed Image Text:[
-100
25
2
{-A-E-A}
Let
=
, =
50
, =
find an orthogonal basis under the Euclidean inner product.
Orthogonal basis:
3
-76
57
be a basis for R³. Use the Gram-Schmidt process to
α
V3 = b
{--0--[1]-0}
V1 = 4 V2=
50
с
a =
Ex: 1.23
b = Ex: 1.23
C = Ex: 1.23
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