Question 4. Find an approximation for the solution of Y"(t) + 4Y"(t)+ 5Y'(t) + 2Y(t) = 2t² + 10t + 8, Y(0) = 1, Y'(0) = -1, Y"(0) = 3. %3D at t=0.2, by employing Euler's method with the step size h=0.1.
Question 4. Find an approximation for the solution of Y"(t) + 4Y"(t)+ 5Y'(t) + 2Y(t) = 2t² + 10t + 8, Y(0) = 1, Y'(0) = -1, Y"(0) = 3. %3D at t=0.2, by employing Euler's method with the step size h=0.1.
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Question 4 . Find an approximation for the solution of Y " ( t ) + 4Y " ( t ) + 5Y ' ( t ) + 2Y ( t ) = 2t2 + 10 + 8 , Y ( 0 ) = 1 , Y ' ( 0 ) = -1 , Y " ( 0 ) = 3 . at t = 0.2 , by employing Euler's method with the step size h = 0.1 .
![Question 4.
Find an approximation for the solution of
Y"(t) + 4Y"(t)+ 5Y'(t) + 2Y(t) = 2t² + 10t + 8,
Y (0) = 1, Y'(0) = –1, Y"(0) = 3.
at t=0.2, by employing Euler's method with the step size h=0.1.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6706c313-9b10-4e18-8cd0-db42c7de8ff5%2F86b6d008-98df-4d4f-bd5d-efaf9d89ac2b%2Fl1fpop_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Question 4.
Find an approximation for the solution of
Y"(t) + 4Y"(t)+ 5Y'(t) + 2Y(t) = 2t² + 10t + 8,
Y (0) = 1, Y'(0) = –1, Y"(0) = 3.
at t=0.2, by employing Euler's method with the step size h=0.1.
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