Six second-order equations and four y(t)-graphs are given below. For each y(t)-graph, determine the second-order equation for which y(t) is a solution, and state briefly how you know your choice is correct. You should do this exercise WITHOUT using technology. d'y (i) +16y=10 (ii) +16y=-10 dt² + 16y = 5 cos(3t) (iv) d + 14y= 2 cos(4t) d² dt2 + 16y (vi) +2+16y= cos(4t) (a) htt (c) (d) fim. N -2+ cos(41) (b) -2+ y(t)-graphs for Exercise 3.

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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I need the graph matching of these questions without using any device plz match graph and give me exact answer plz Don't reject plz
Six second-order equations and four y(t)-graphs are given below. For each y(t)-graph, determine the second-order
equation for which y(t) is a solution, and state briefly how you know your choice is correct. You should
do this exercise WITHOUT using technology.
(i) +16y=10
(ii)
+16y=-10
+16y=5 cos(3t)
(iv) +14y= 2 cos(4t)
d'y
dt2
+16y= cos(4t)
+ +16y= cos(4t)
dt
(a)
(b)
(c)
dt²
dt2
ܫܫܫܬܐ
pm
-2+
(d)
N₁
2m
MAGAZ
-2+
y(t)-graphs for Exercise 3.
Transcribed Image Text:Six second-order equations and four y(t)-graphs are given below. For each y(t)-graph, determine the second-order equation for which y(t) is a solution, and state briefly how you know your choice is correct. You should do this exercise WITHOUT using technology. (i) +16y=10 (ii) +16y=-10 +16y=5 cos(3t) (iv) +14y= 2 cos(4t) d'y dt2 +16y= cos(4t) + +16y= cos(4t) dt (a) (b) (c) dt² dt2 ܫܫܫܬܐ pm -2+ (d) N₁ 2m MAGAZ -2+ y(t)-graphs for Exercise 3.
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