${\sin ^{ - 1}}\left( {\frac{{2x}}{{1 + {x^2}}}} \right)$ का ${\cos ^{ - 1}}\left( {\frac{{1 - {x^2}}}{{1 + {x^2}}}} \right)$ के सापेक्ष अवकलज क्या है?

  • A
    $-1$
  • B
    $1$
  • C
    $2$
  • D
    $4$

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यदि $\tan ^{-1} \frac{1}{5}+\frac{1}{2} \sec ^{-1} x+\tan ^{-1} \frac{1}{8}=\frac{\pi}{8}$ है, तो $x^2=$

$\mathop {Limit}\limits_{x \to \infty } \,\frac{{{{\cot }^{ - 1}}\left( {\sqrt {x + 1} \, - \,\sqrt x } \right)}}{{{{\sec }^{ - 1}}\left\{ {{{\left( {\frac{{2x + 1}}{{x - 1}}} \right)}^x}} \right\}}}$ का मान ज्ञात कीजिए।

$\operatorname{Tan}^{-1} 1 + \frac{1}{2} \operatorname{Cos}^{-1} x^2 - \operatorname{Tan}^{-1}\left(\frac{\sqrt{1+x^2}+\sqrt{1-x^2}}{\sqrt{1+x^2}-\sqrt{1-x^2}}\right) = 0$ के हलों की संख्या क्या है?

यदि $y = \cos \left(\frac{\pi}{3} + \cos^{-1} \frac{x}{2}\right)$ है,तो $(x - y)^2 + 3y^2$ का मान . . . . . . है।

सिद्ध कीजिए कि $\cos ^{-1} \frac{12}{13}+\sin ^{-1} \frac{3}{5}=\sin ^{-1} \frac{56}{65}$

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