y(1) is a solution of an ordinary differantial equation. y(1) function's graph is shown in the figure. which following ordinary differantial equation has a solution as y(t)? I→y" + y=0, y(0) = 0 II →y' +2y' +2y= 0, y(0) = 2 III → y" - y = 0, y(0) = 2 IV → y" +4y' +5y = 0, y(0)= 0 V→y-y=0, y(0) = 2

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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y(1) is a solution of an ordinary differantial equation.
y(1) function's graph is shown in the figure.
40 -
which following ordinary differantial equation has a solution as y(t)?
I→y" + y= 0, y(0) = 0
II » y" +2y' + 2y= 0, y(0) = 2
III → y" - y = 0, y(0) = 2
IV → y" + 4y' +5y = 0, y(0)= 0
V→y'-y = 0, y(0) = 2
O A) II
O B) I
OC) IV
OD) II
O E) V
Transcribed Image Text:y(1) is a solution of an ordinary differantial equation. y(1) function's graph is shown in the figure. 40 - which following ordinary differantial equation has a solution as y(t)? I→y" + y= 0, y(0) = 0 II » y" +2y' + 2y= 0, y(0) = 2 III → y" - y = 0, y(0) = 2 IV → y" + 4y' +5y = 0, y(0)= 0 V→y'-y = 0, y(0) = 2 O A) II O B) I OC) IV OD) II O E) V
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