🔵16a - Bernoulli Differential Equations (dy/dx + p(x)y = q(x)y^n)

In this video, we shall consider another method in solving differential Equations, we shall be looking at Bernoulli differential equations. A Bernoulli Differential Equation is an equation of the form dy/dx + p(x) = q(x)y^n, where both p and q are all functions of x. Steps to solve Bernoulli DE 1. Rearrange the DE in the form: dy/dx + p(x)y = q(x)y^n 2. Find the integrating factor, u(x) 3. Solve for the general solution 00:00 - Ex 1 12:42 - Ex 2 Playlists on various Course 1. Applied Electricity    • APPLIED ELECTRICITY   2. Linear Algebra / Math 151    • LINEAR ALGEBRA   3. Basic Mechanics    • BASIC MECHANICS / STATICS   4. Calculus with Analysis / Calculus 1 / Math 152    • CALCULUS WITH ANALYSIS / CALCULUS 1 / MATH...   5. Differential Equations / Math 251    • DIFFERENTIAL EQUATIONS   6. Electric Circuit Theory / Circuit Design    • ELECTRIC CIRCUIT THEORY / CIRCUIT DESIGN   Make sure to watch till the end. Like, share, and subscribe. Thank you.

🔵16b - Bernoulli Differential Equations (dy/dx + p(x)y = q(x)y^n)
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🔵16b - Bernoulli Differential Equations (dy/dx + p(x)y = q(x)y^n)

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