The differential equation $\dfrac {dy}{dx}=\dfrac {1}{ax+by+c}$ where a,b,c are all non zero real number ,is
Tag: differentiation by substitution
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If ${ x }^{ 2 }.{ e }^{ y }+2x{ ye }^{ x }+13=0$, then $\dfrac { dy }{ dx }$ is
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Find: $\dfrac{d}{{\text dx}}\left( {\dfrac{{1 - \cos x}}{{\sin x}}} \right) \,\,\,$
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Derivative of ${ \log { x } }^{ \cos { x } }$ with respect to $x$ is
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If $xe^{xy}-y=\sin x$, then $\dfrac {dy}{dx}$ at $x=0$ is
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$\dfrac {d}{dx}(x^{\ell n x})$ is equal to
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If $y=(tan \, x)^{(tan\, x)^{tan\,x}}, $ then at $x=\dfrac{\pi}{4}, \dfrac{dy}{dx}$ is equal to
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The solution of the differential equation, $y\,dx + \left( {x + {x^2}y} \right)dy = 0$ is
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If $x=a\sin \theta$ and $y=b\cos\theta$, then $\displaystyle\frac{d^2y}{dx^2}$ is
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The set of all points, where the function $f(x) = \sqrt {1 - e^{-x^{2}}}$ is differentiable, is
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