The given differential equation is already in standard form, as the coefficient of the highest order derivative is 1. 1 6 + ex W₁ The next Wronskians to calculate use y₁ = function of x that makes the equation nonhomogeneous, f(x) - = y" + 3y + 2y = = W₂ = - 1₁6 +07) - = 0 Y2 f(x) y/₂ (6 + ex)-1 -2e-2x Y₁ 0 Y₁' f(x) e-x and Y₂ = e 0 +85-1/ -e-x (6 + ex)-1| -2x that we identified from the complementary function and the 1 == 6 + ex
The given differential equation is already in standard form, as the coefficient of the highest order derivative is 1. 1 6 + ex W₁ The next Wronskians to calculate use y₁ = function of x that makes the equation nonhomogeneous, f(x) - = y" + 3y + 2y = = W₂ = - 1₁6 +07) - = 0 Y2 f(x) y/₂ (6 + ex)-1 -2e-2x Y₁ 0 Y₁' f(x) e-x and Y₂ = e 0 +85-1/ -e-x (6 + ex)-1| -2x that we identified from the complementary function and the 1 == 6 + ex
Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter11: Differential Equations
Section11.1: Solutions Of Elementary And Separable Differential Equations
Problem 59E: According to the solution in Exercise 58 of the differential equation for Newtons law of cooling,...
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