Chapter 1.1 Solve the ODE by integration or by remembering a differentiation formula. y' +e=/½ = 0 Problem 1.1.2 Problem 1.1.4 y' = -1.5y Problem 1.1.8 y" = e-0.2x

Calculus: Early Transcendentals
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Author:James Stewart
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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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THEME: First-order ODES
Solve the following exercises from the text (Kreyszig).
Chapter 1.1
Solve the ODE by integration or by remembering a differentiation formula.
y' +e*/2 = 0
Problem 1.1.2
Problem 1.1.4
y = -1.5y
y" =
Problem 1.1.8
-0.2x
Chapter 1.3
Find a general solution. Show the steps of derivation. Check your answer by substitution.
Problem 1.3.2
y³y' = -x3
Problem 1.3.4
y sin (2πx)
- πycos (2 πx)
Solve the IVP. Show the steps of derivation, beginning with the general solution.
Problem 1.3.16 y' = (x + y – 2)²
Chapter 1.4
Test for exactness. If exact, solve. If not, use an integrating factor as given or obtained by inspection
or by the theorems in the text. Also, if an initial condition is given, find the corresponding particular
solution.
Problem 1.4.2
x³dx + y°dy = 0
Problem 1.4.6
3(у + 1) dx %3D 2x dy,
F = (y + 1)x¬4
Problem 1.4.8
e*(cos y dx – sin y dy) = 0
Problem 1.4.12
(2ху dx + dy)eе** 3D 0,
y(0) = 2
Transcribed Image Text:THEME: First-order ODES Solve the following exercises from the text (Kreyszig). Chapter 1.1 Solve the ODE by integration or by remembering a differentiation formula. y' +e*/2 = 0 Problem 1.1.2 Problem 1.1.4 y = -1.5y y" = Problem 1.1.8 -0.2x Chapter 1.3 Find a general solution. Show the steps of derivation. Check your answer by substitution. Problem 1.3.2 y³y' = -x3 Problem 1.3.4 y sin (2πx) - πycos (2 πx) Solve the IVP. Show the steps of derivation, beginning with the general solution. Problem 1.3.16 y' = (x + y – 2)² Chapter 1.4 Test for exactness. If exact, solve. If not, use an integrating factor as given or obtained by inspection or by the theorems in the text. Also, if an initial condition is given, find the corresponding particular solution. Problem 1.4.2 x³dx + y°dy = 0 Problem 1.4.6 3(у + 1) dx %3D 2x dy, F = (y + 1)x¬4 Problem 1.4.8 e*(cos y dx – sin y dy) = 0 Problem 1.4.12 (2ху dx + dy)eе** 3D 0, y(0) = 2
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