Advanced Math Consider the autonomous initial value problem X = x² + 4 a. After rearranging the ODE we set up the integrals as S b. After integration we obtain the equation F(x) = t, where F(x) = F(z)=t, cannot be solved for o(t) = x = F¯¹(t). c. The largest interval that contains (0) and where f(1) CC x² +4 #₁ = and ₂ = Enter Inf or infinity for co. d. The interval of existence is (T₁, T₂), where T₁ = lim F(x)= ZI (0) = -5 has the same sign as dy = . Note that equation f(z(0)) is the interval (71, 7₂), where and T₂= lim F(x) = da

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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Advanced Math
Consider the autonomous initial value problem
X
=
x² + 4
a. After rearranging the ODE we set up the integrals as
S
b. After integration we obtain the equation F(x) = t, where F(x):
F(z)=t, cannot be solved for o(t) = x = F¯'(t).
c. The largest interval that contains (0) and where f(1)
CC
x² + 4
#₁ =
and ₂ =
Enter Inf or infinity for co.
d. The interval of existence is (T₁, T₂), where T₁
=
lim F(x)=
z 1₂
(0) = -5
has the same sign as
dy=
. Note that equation
f(z(0)) is the interval (71, 7₂), where
and T₂= lim F(x) =
I I
da
Transcribed Image Text:Advanced Math Consider the autonomous initial value problem X = x² + 4 a. After rearranging the ODE we set up the integrals as S b. After integration we obtain the equation F(x) = t, where F(x): F(z)=t, cannot be solved for o(t) = x = F¯'(t). c. The largest interval that contains (0) and where f(1) CC x² + 4 #₁ = and ₂ = Enter Inf or infinity for co. d. The interval of existence is (T₁, T₂), where T₁ = lim F(x)= z 1₂ (0) = -5 has the same sign as dy= . Note that equation f(z(0)) is the interval (71, 7₂), where and T₂= lim F(x) = I I da
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