$\int(\sqrt{\tan x}+\sqrt{\cot x}) d x=$

  • A
    $\sqrt{2} \tan^{-1}\left(\frac{\tan x-1}{\sqrt{2 \tan x}}\right)+c$
  • B
    $\sqrt{2} \tan^{-1}\left(\frac{\tan x+1}{\sqrt{2 \tan x}}\right)+c$
  • C
    $\frac{1}{\sqrt{2}} \tan^{-1}\left(\frac{\tan x-1}{\sqrt{2 \tan x}}\right)+c$
  • D
    $\frac{1}{\sqrt{2}} \tan^{-1}\left(\frac{\tan x+1}{\sqrt{2 \tan x}}\right)+c$

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જો $\int {\frac{{\sqrt {1 - {x^2}} }}{{{x^4}}}} dx\, = \,A(x)\,{(\sqrt {1 - {x^2}} )^m}\, + \,C,$ કોઈ યોગ્ય પૂર્ણાંક $m$ અને વિધેય $A(x)$ માટે,જ્યાં $C$ એ સંકલનનો અચળાંક છે,તો $(A(x))^m$ ની કિંમત શોધો.

$\int \cos^{-3/7} x \sin^{-11/7} x \, dx = $

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વિધેય $\tan^{3} 2x \sec 2x$ નું સંકલન શોધો.

$\int \frac{dx}{\tan x + \cot x + \sec x + \csc x} =$

વિધેયનું સંકલન કરો: $\frac{x-1}{\sqrt{x^{2}-1}}$

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