x+ 5x' + 6x=8 (1-4), x(0) = 20, x'(0) = 7 Solve the above IVP using Laplace Transforms and then find x(4.5). Put x(4.5) accurately calculated to the nearest thousandth (3 decimal places) in the answer box. Notation: x"= d²x d1² and x'= dx - and x=x (t). dt 8(t) is the Dirac delta function. CS canned with CamScanner
x+ 5x' + 6x=8 (1-4), x(0) = 20, x'(0) = 7 Solve the above IVP using Laplace Transforms and then find x(4.5). Put x(4.5) accurately calculated to the nearest thousandth (3 decimal places) in the answer box. Notation: x"= d²x d1² and x'= dx - and x=x (t). dt 8(t) is the Dirac delta function. CS canned with CamScanner
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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