dy - xy y(2) =1 %3D 2. dx

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
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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Elementary Differential Equations

**Problem 2:**

\[
\frac{dy}{dx} = xy^3
\]

**Initial Condition:**

\[ 
y(2) = 1 
\]

In this problem, you are dealing with a first-order differential equation, where the derivative of \(y\) with respect to \(x\) is expressed as the product of \(x\) and \(y^3\). The initial condition provided is \(y(2) = 1\), which can be used to solve for the constant after integrating the differential equation.
Transcribed Image Text:**Problem 2:** \[ \frac{dy}{dx} = xy^3 \] **Initial Condition:** \[ y(2) = 1 \] In this problem, you are dealing with a first-order differential equation, where the derivative of \(y\) with respect to \(x\) is expressed as the product of \(x\) and \(y^3\). The initial condition provided is \(y(2) = 1\), which can be used to solve for the constant after integrating the differential equation.
*(Assume that \( y > 0 \).)*

This statement establishes a condition that the variable \( y \) is greater than zero. In mathematical problems, such assumptions are often made to simplify solutions or to specify the domain in which the problem is being considered.
Transcribed Image Text:*(Assume that \( y > 0 \).)* This statement establishes a condition that the variable \( y \) is greater than zero. In mathematical problems, such assumptions are often made to simplify solutions or to specify the domain in which the problem is being considered.
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