If \( \lambda_{1} \) and \( \lambda_{2} \) are the two values of \( \lambda \) such that the roo....

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If \( \lambda_{1} \) and \( \lambda_{2} \) are the two values of \( \lambda \) such that the roots \( \alpha \) and \( \beta \) of the quadratic equation, \( \lambda\left(x^{2}-x\right)+x+5= \)
\( \mathrm{P} \)
0 satisfy \( \frac{\alpha}{\beta}+\frac{\beta}{\alpha}+\frac{4}{5}=0 \), then \( \frac{\lambda_{1}}{\lambda_{2}^{2}}+\frac{\lambda_{2}}{\lambda_{1}^{2}} \) equal to:
W.
(1) 536
(2) 512
(3) 504
(4) 488


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