Calculus: Early Transcendentals
Calculus: Early Transcendentals
8th Edition
ISBN: 9781285741550
Author: James Stewart
Publisher: Cengage Learning
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### Solving Differential Equations with Independent Variable x

To solve the given third-order differential equation with \( x \) as the independent variable, follow the steps below:

#### Differential Equation
\[ y''' - 3y'' - 40y' = 0 \]

Find a general solution for this differential equation.

#### General Solution
A general solution expressed with \( x \) as the independent variable can be denoted as \( y(x) \). To solve this, you'll typically use methods involving characteristic equations for ordinary differential equations.

The textbox where the solution should be input is denoted as:
\[ y(x) = \_\_\_\_\_\_\_\_ \]

Be sure to follow the method appropriate for solving third-order linear ordinary differential equations.

For further learning and a step-by-step guide, refer to our tutorials and examples section on solving higher-order differential equations.
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Transcribed Image Text:### Solving Differential Equations with Independent Variable x To solve the given third-order differential equation with \( x \) as the independent variable, follow the steps below: #### Differential Equation \[ y''' - 3y'' - 40y' = 0 \] Find a general solution for this differential equation. #### General Solution A general solution expressed with \( x \) as the independent variable can be denoted as \( y(x) \). To solve this, you'll typically use methods involving characteristic equations for ordinary differential equations. The textbox where the solution should be input is denoted as: \[ y(x) = \_\_\_\_\_\_\_\_ \] Be sure to follow the method appropriate for solving third-order linear ordinary differential equations. For further learning and a step-by-step guide, refer to our tutorials and examples section on solving higher-order differential equations.
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