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1. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.001. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER 6. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.013. Proceed as in Example 1 of

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1. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.001. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER 6. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.013. Proceed as in Example 1 of Section 4.8 to find a particular solution ,(x) of the given differential equation in the integral form MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER (10), Notx) = G(x. (41) . Proceed as in Example 3 of Section 4.8 to find a solution of the given initial-value problem, Evaluate the integral that defines " - 36y = (x) Ya(x). " - 25y = esx, y(0) = 0, y(0) = 0 2. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.003. MY NOTES ASK YOUR TEACHER oceed as in Example 1 of Section 4.8 to find a partic solution Vp(x) of the given "erential equation in the integral form 7. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.015. (10), Notx) = Gux. mmm) at MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER Proceed as in Example 3 of Section 4.8 to find a solution of the given Initial-value p Ya(x). " - 10y' + 25y = e ", y(0) = 0. (0) = 0 3. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.005. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER 8. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.017. MY NOTES ASK YOUR TEACHER Proceed as in Example 1 of Section 4.8 to find a particular solution vo(x) of the given differential equation in the integral form (10). re(x) = Gux, gym at. Proceed as in Example 3 of Section 4.8 to find a solution of the give al-value problem. Evaluate the integral that defines Yo(x). " + 4y = (x) " + y = cac x cot x, y(x/2) = 0, v'(=/2) = 0 4. [-/3 Points] DETAILS ZILLDIFFEQMODAP10 4.8.009. 9. [-/2 Points] DETAILS ZILLDIFFEQMODAP10 4.8.019. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER sider the following differential equation Proceed as in Example 5 of Section 4.8 to find a solution of the given initial-value problem, " + By' + 16yme" " - 16 = ex, y(0) = 1. yTO) = -6 Proceed as in Example 1 of Section 4.8 to find a particular solution ,(x) of the given differential equation in the Integral form (10), re(x) = Gx. man y(x) - Proceed as in Example 2 of Section 4.8 to find the r(x) = 5. [-/3 Points] DETAILS ZILLDIFFEQMODAP10 4.8.011. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER initial equation. " + 36p = x + sin x Proceed as in Example 1 of Se ion in the integral form (10), Me(x) = / G(x. net) at Proceed as in Example 2 of Section 4.8 to find the general solution of the given differential equation. y(x) =

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