In Exercises 1 and 2, compute u + vand u-2v. -[1]-[3] V = 2 1. u=

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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1.3 EXERCISES
In Exercises 1 and 2, compute u + vand u-2v.
anonas
1. u=
ni siq
2.
31
u =
u=
−1
V
[]+=B]
2
5. X1
6. X1
asd
V =
3
,
2
In Exercises 3 and 4, display the following vectors using
on an xy-graph: u, v, -v, -2v, u + v, u - v, and u-2v.
that u - v is the vertex of a parallelogram whose other verti
u, 0, and -v.
6
-1
[-]+
5
3. u and v as in Exercise 1
avo no It
In Exercises 5 and 6, write a system of equations that is equ
to the given vector equation.
-27
3
21
2700
+ x2
{W1, W2, W
Practice Problem
It is useful to rev
-3
4
-7
[][]
0
-5
+ x2
8
5
4. u and v as in Exercis
del no 23.& plen
3
bus
+ x₁ [ 6 ] = [8]
X3
-6
Transcribed Image Text:1.3 EXERCISES In Exercises 1 and 2, compute u + vand u-2v. anonas 1. u= ni siq 2. 31 u = u= −1 V []+=B] 2 5. X1 6. X1 asd V = 3 , 2 In Exercises 3 and 4, display the following vectors using on an xy-graph: u, v, -v, -2v, u + v, u - v, and u-2v. that u - v is the vertex of a parallelogram whose other verti u, 0, and -v. 6 -1 [-]+ 5 3. u and v as in Exercise 1 avo no It In Exercises 5 and 6, write a system of equations that is equ to the given vector equation. -27 3 21 2700 + x2 {W1, W2, W Practice Problem It is useful to rev -3 4 -7 [][] 0 -5 + x2 8 5 4. u and v as in Exercis del no 23.& plen 3 bus + x₁ [ 6 ] = [8] X3 -6
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