Let \( \alpha, \beta \) be the roots of \( a x^{2}+b x+c=0 \) and \( \gamma, \delta \) be the ro....

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Let \( \alpha, \beta \) be the roots of \( a x^{2}+b x+c=0 \) and \( \gamma, \delta \) be the roots of \( p x^{2}+q x+r=0 \); and \( D_{1}, D_{2} \) be the respective
\( \mathrm{P} \)
discriminants of these equations. If \( \alpha, \beta, \gamma, \delta \) are in \( A P \), then \( D_{1}: D_{2} \) equal to
(1) \( \frac{a^{2}}{p^{2}} \)
(2) \( \frac{a^{2}}{b^{2}} \)
(3) \( \frac{b^{2}}{q^{2}} \)
(4) \( \frac{c^{2}}{r^{2}} \)


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