10. Para resolver la siguiente ecuación diferencial: y'" + 2y' +y = 0 con y(0) = 1; y'(0) = 1 Se ha propuesto utilizar la transformada de Laplace, en el proceso que ha obtenido que la función Y(s), para posteriormente aplicar la transformada inversa. La función Y(s) está dada por:
10. Para resolver la siguiente ecuación diferencial: y'" + 2y' +y = 0 con y(0) = 1; y'(0) = 1 Se ha propuesto utilizar la transformada de Laplace, en el proceso que ha obtenido que la función Y(s), para posteriormente aplicar la transformada inversa. La función Y(s) está dada por:
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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To solve the following differential equation: ? ′ ′ + 2? ′ + ? = 0 with
? (0) = 1; ? ′ (0) = 1
It has been proposed to use the Laplace transform, in the process that has obtained the function Y (s), to later apply the inverse transform.
The function Y (s) is given by:
a) ? (?) = ? − 2 (? + 1) 2
b) ? (?) = ? (? + 1) 2
c) ? (?) = ? + 3 (? + 1) 2
d) ? (?) = ? − 1 (? + 1) 2
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