If the following differential equation is exact, select the solution to the initial value problem (2y – x + 1) + (2.x – y)y = 0; y(1) = 3. If it is not exact, select "NOT EXACT". y = x – Vr+ 3 y = 2x + V3x² + 2x – 4 O 2. seçenek O 3. seçenek y = 2x - V3² + 2.x – 4 y = x + Vx+3

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.CR: Chapter 11 Review
Problem 15CR
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If the following differential equation is exact, select the
solution to the initial value problem
(2y – x + 1) + (2.x – y)y = 0;
y(1) = 3.
If it is not exact, select "NOT EXACT".
y = x – Vr+ 3
y = 2x + V3x² + 2x – 4
O 2. seçenek
O 3. seçenek
y = 2x - V3² + 2.x – 4
y = x + Vx+3
O 4. seçenek
1. seçenek
Transcribed Image Text:If the following differential equation is exact, select the solution to the initial value problem (2y – x + 1) + (2.x – y)y = 0; y(1) = 3. If it is not exact, select "NOT EXACT". y = x – Vr+ 3 y = 2x + V3x² + 2x – 4 O 2. seçenek O 3. seçenek y = 2x - V3² + 2.x – 4 y = x + Vx+3 O 4. seçenek 1. seçenek
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