Let y=f(x) be the solution to the differential equation dydx=x−y−1dydx=x−y−1 with the initial condition f(1)=−2 . What is the approximation for f(1.4) if Euler’s method is used, starting at x=1 with two steps of equal size? thank you

Calculus: Early Transcendentals
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Author:James Stewart
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Chapter1: Functions And Models
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Let y=f(x) be the solution to the differential equation dydx=x−y−1dydx=x−y−1 with the initial condition f(1)=−2 . What is the approximation for f(1.4) if Euler’s method is used, starting at x=1 with two steps of equal size? thank you

Let y=f(x) be the solution to the differential equation
= x – y – 1 with the initial condition f(1)=-2. What is the approximation for f(1.4) if Euler's method is used, starting at x=1 with two steps of equal size?
dz
(A
-2
-1.24
-1.2
-0.64
E
0.2
Transcribed Image Text:Let y=f(x) be the solution to the differential equation = x – y – 1 with the initial condition f(1)=-2. What is the approximation for f(1.4) if Euler's method is used, starting at x=1 with two steps of equal size? dz (A -2 -1.24 -1.2 -0.64 E 0.2
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