Question
Solve the following differential equation:
$\text{x}^2\frac{\text{dy}}{\text{dx}}=\text{x}^2-2\text{y}^2+\text{xy}$

Answer

Consider the given differential equation
$\text{x}^2\frac{\text{dy}}{\text{dx}}=\text{x}^2-2\text{y}^2+\text{xy}$
$\Rightarrow\ \frac{\text{dy}}{\text{dx}}=\frac{\text{x}^2-2\text{y}^2+\text{xy}}{\text{x}^2}$
This is a homogeneous differential equation.
Substituting y = vx and $\frac{\text{dy}}{\text{dx}}=\text{v + x}\frac{\text{dv}}{\text{dx}}$, we have
$\text{v + x}\frac{\text{dv}}{\text{dx}}=\frac{\text{x}^2-2\text{v}^2\times\text{x}^2+\text{x}\times\text{v}\times\text{x}}{\text{x}^2}$
$\Rightarrow\ \text{v + x}\frac{\text{dv}}{\text{dx}}=1-2\text{v}^2+\text{v}$
$\Rightarrow\ \text{x}\frac{\text{dv}}{\text{dx}}=1-2\text{v}^2$
$\Rightarrow\ \frac{\text{dv}}{1-2\text{v}^2}=\frac{\text{dx}}{\text{x}}$
$\Rightarrow\ \frac{\text{dv}}{\text{v}^2-\frac{1}2}=-2\frac{\text{dx}}{\text{x}}$
$\Rightarrow\ \int\frac{\text{dv}}{\big(\frac{1}{\sqrt2}\big)^2-\text{v}^2}=2\int\frac{\text{dx}}{\text{x}}$
$\Rightarrow\ \frac{\sqrt2}2\log\bigg(\frac{\frac{1}{\sqrt2}+\text{v}}{\frac{1}{\sqrt2}-\text{v}}\bigg)=2\log\text{x}+\log\text{C}$
$\Rightarrow\ \frac{1}{\sqrt2}\log\Bigg(\frac{\frac{1}{\sqrt2}+\frac{\text{y}}{\text{x}}}{\frac{1}{\sqrt2}-\frac{\text{y}}{\text{x}}}\Bigg)2\log\text{x}+\log\text{C}$
$\Rightarrow\ \frac{1}{\sqrt2}\log\Big(\frac{\text{x + y}\sqrt2}{\text{x}-\text{y}\sqrt2}\Big)2\log\text{x}+\log\text{C}$
$\Rightarrow\ \frac{1}{\sqrt2}\log\Big(\frac{\text{x + y}\sqrt2}{\text{x}-\text{y}\sqrt2}\Big)\log\text{x}^2+\log\text{C}$
$\Rightarrow\ \log\Big(\frac{\text{x + y}\sqrt2}{\text{x}-\text{y}\sqrt2}\Big)^{\frac{1}{\sqrt2}}=\log\text{Cx}^2$
$\Rightarrow\ \Big(\frac{\text{x + y}\sqrt2}{\text{x}-\text{y}\sqrt2}\Big)^{\frac{1}{\sqrt2}}=\text{Cx}^2$
$\Rightarrow\ \Big(\frac{\text{x + y}\sqrt2}{\text{x}-\text{y}\sqrt2}\Big)=\big(\text{Cx}^2\big)^{\sqrt2}$

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Prove that:
$\begin{vmatrix} 1&\text{a}&\text{bc}\\1&\text{b}&\text{ca}\\1&\text{c}&\text{ab}\end{vmatrix}=\begin{vmatrix} 1&\text{a}&\text{a}^2\\1&\text{b}&\text{b}^2\\1&\text{c}&\text{c}^2\end{vmatrix}$
Solve the following linear programming problem graphically.Minimise $\text{z = 3x + 5y}$
subject to the constraints
$\text{x + 2y}\geq 10$
$\text{x + y}\geq 6$
$\text{3x + y}\geq 8$
$\text{x, y}\geq 0.$
If $\hat{\mathbf{i}}+\hat{\mathbf{j}}+\hat{\mathbf{k}}, 2 \hat{\mathbf{i}}+5 \hat{\mathbf{j}}, 3 \hat{\mathbf{i}}+2 \hat{\mathbf{j}}-3 \hat{\mathbf{k}}$ and $\hat{\mathrm{i}}-6 \hat{\mathrm{j}}-\hat{\mathrm{k}}$ are the position vectors of points A, B, C and D respectively, then find the angle between $\vec {AB}$ and $\vec {CD}$. Deduce that $\overrightarrow{A B}$ and $\overrightarrow{C D}$ are collinear.
Find the equations of the tangent and the normal to the following curves at the indicated points.
$y = x^4 - bx^3 + 13x^2 - 10x + 5$ at $(0, 5)$
Find the equation of a plane which is at a distance of $3\sqrt{3}\text{ units}$ from the origin and the normal to which is equally inclined to the coordinate axes.
If $\text{y}=\sin^{-1}\big(6\text{x}\sqrt{1-9\text{x}^2}\big), -\frac{1}{3\sqrt{2}}<\text{x}<\frac{1}{3\sqrt{2}},$ then find $\frac{\text{dy}}{\text{dx}}.$
If $\text{A}=\begin{bmatrix}\cos2\theta&\sin2\theta\\-\sin2\theta&\cos2\theta\end{bmatrix},$ find $A^2$.
A wire of length 28m is to be cut into two pieces. One of the pieces is to be made into a square and the other into a circle. What should be the lengths of the two pieces so that the combined area of the circle and the square is minimum?
Maximize $Z = 3x_1 + 4x_2,$ if possible,
Subject to the constraints
$\text{x}_1-\text{x}_2\leq-1$
$-\text{x}_1+\text{x}_2\leq0$
$\text{x}_1,\text{x}_2\geq0$
In order to supplement daily diet, a person wishes to take $X$ and $Y$ tablets. The contents (in milligrams per tablet) of iron, calcium and vitamins in $X$ and $Y$ are given as below:
Tablets Iron Calcium Vitamin
$X$ $6$ $3$ $2$
$Y$ $2$ $3$ $4$
The person needs to supplement at least $18$ milligrams of iron, $21$ milligrams of calcium and $16$ milligrams of vitamins. The price of each tablet of $X$ and $Y$ is $₹ 2$ and $₹1$ respectively. How many tablets of each type should the person take in order to satisfy the above requirement at the minimum cost? Make an LPP and solve graphically.