2. 9) is = 1 claim T= {A, B, C } O {[:] [:] [:]} A 13 C Pr 2. b) set C₁ linearly c) In A S = Sa reason up 4. S= + independent. why 3x3 C₂B+ C & span (A, systern C3 C each case, State Span (S) = = that [88] whether Span (T) in TR B) Explation why. {[:], [+], [::], [²:]} {[:], [!], [!], [..] } • [³]} {[:], [8], (:) 3. S = 3 0-2 has guarantees 2x2 [],[C], (),[ 0 only O } a trivial Solution
2. 9) is = 1 claim T= {A, B, C } O {[:] [:] [:]} A 13 C Pr 2. b) set C₁ linearly c) In A S = Sa reason up 4. S= + independent. why 3x3 C₂B+ C & span (A, systern C3 C each case, State Span (S) = = that [88] whether Span (T) in TR B) Explation why. {[:], [+], [::], [²:]} {[:], [!], [!], [..] } • [³]} {[:], [8], (:) 3. S = 3 0-2 has guarantees 2x2 [],[C], (),[ 0 only O } a trivial Solution
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
![2.
9)
is
=
1
claim
T= {A, B, C }
{[:] [:] [:]}
A
13
C
Pr
2.
b) set
linearly
c) In
reason
up
3x3
c₁ A + C₂ B + C₂ C =
S =
Sa
independent.
why
4. S=
C & span (A,
systern
each case, State
Span (S) =
that
[88]
whether
Span (T)
in TR
B)
Explation why.
{[:], [+], [::], [²:]}
{[:], [!], [!], [..] }
• [²]}
{[:], [8], (:)
3
3. S =
0-2
[6].[6], (6), [8]]
2x2
has
guarantees
only
a
trivial
Solution](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1a52f50e-f337-471a-921b-d2b360c21876%2F639de76b-0af3-4cd9-bfae-c845600c8857%2F9gztyi8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2.
9)
is
=
1
claim
T= {A, B, C }
{[:] [:] [:]}
A
13
C
Pr
2.
b) set
linearly
c) In
reason
up
3x3
c₁ A + C₂ B + C₂ C =
S =
Sa
independent.
why
4. S=
C & span (A,
systern
each case, State
Span (S) =
that
[88]
whether
Span (T)
in TR
B)
Explation why.
{[:], [+], [::], [²:]}
{[:], [!], [!], [..] }
• [²]}
{[:], [8], (:)
3
3. S =
0-2
[6].[6], (6), [8]]
2x2
has
guarantees
only
a
trivial
Solution
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