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- Exact Differential Equation
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Rewrite the differential equation using Leibniz notation
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$\frac{dy}{dx}\cos\left(x\right)+y\sin\left(x\right)=1$
Learn how to solve problems step by step online. Solve the differential equation cos(x)y^'+ysin(x)=1. Rewrite the differential equation using Leibniz notation. Divide all the terms of the differential equation by \cos\left(x\right). Simplifying. We can identify that the differential equation has the form: \frac{dy}{dx} + P(x)\cdot y(x) = Q(x), so we can classify it as a linear first order differential equation, where P(x)=\frac{\sin\left(x\right)}{\cos\left(x\right)} and Q(x)=\frac{1}{\cos\left(x\right)}. In order to solve the differential equation, the first step is to find the integrating factor \mu(x).