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Question Number 216033 by efronzo1 last updated on 26/Jan/25

Answered by mr W last updated on 26/Jan/25

Commented by mr W last updated on 26/Jan/25

AE=BE=((BC)/2)  AD×BE^2 +DB×AE^2 =AB×(DE^2 +AD×BD)  (AD+DB)×((BC^2 )/4)=AB×(DE^2 +AD×BD)  ((BC^2 )/4)=DE^2 +AD×BD  ⇒((BC^2 )/(AD×BD+DE^2 ))=4 ✓

$${AE}={BE}=\frac{{BC}}{\mathrm{2}} \\ $$$${AD}×{BE}^{\mathrm{2}} +{DB}×{AE}^{\mathrm{2}} ={AB}×\left({DE}^{\mathrm{2}} +{AD}×{BD}\right) \\ $$$$\left({AD}+{DB}\right)×\frac{{BC}^{\mathrm{2}} }{\mathrm{4}}={AB}×\left({DE}^{\mathrm{2}} +{AD}×{BD}\right) \\ $$$$\frac{{BC}^{\mathrm{2}} }{\mathrm{4}}={DE}^{\mathrm{2}} +{AD}×{BD} \\ $$$$\Rightarrow\frac{{BC}^{\mathrm{2}} }{{AD}×{BD}+{DE}^{\mathrm{2}} }=\mathrm{4}\:\checkmark \\ $$

Answered by som(math1967) last updated on 26/Jan/25

Commented by som(math1967) last updated on 26/Jan/25

EL⊥AB  ∴EL=(1/2)AC ,BL=AL=(1/2)AB   DE^2 =DL^2 +EL^2   ⇒DE^2 =(BD−BL)^2 +((AC^2 )/4)  ⇒DE^2 =BD^2 +BL^2 −2BD.BL+((AC^2 )/4)  ⇒DE^2 =BD^2 −BD.AB+((AC^2 +AB^2 )/4)  ⇒DE^2 +BD(AB−BD)=((BC^2 )/4)  ⇒DE^2 +BD.AD=((BC^2 )/4)  ∴ ((BC^2 )/(DE^2 +BDAD))=4

$${EL}\bot{AB} \\ $$$$\therefore{EL}=\frac{\mathrm{1}}{\mathrm{2}}{AC}\:,{BL}={AL}=\frac{\mathrm{1}}{\mathrm{2}}{AB} \\ $$$$\:{DE}^{\mathrm{2}} ={DL}^{\mathrm{2}} +{EL}^{\mathrm{2}} \\ $$$$\Rightarrow{DE}^{\mathrm{2}} =\left({BD}−{BL}\right)^{\mathrm{2}} +\frac{{AC}^{\mathrm{2}} }{\mathrm{4}} \\ $$$$\Rightarrow{DE}^{\mathrm{2}} ={BD}^{\mathrm{2}} +{BL}^{\mathrm{2}} −\mathrm{2}{BD}.{BL}+\frac{{AC}^{\mathrm{2}} }{\mathrm{4}} \\ $$$$\Rightarrow{DE}^{\mathrm{2}} ={BD}^{\mathrm{2}} −{BD}.{AB}+\frac{{AC}^{\mathrm{2}} +{AB}^{\mathrm{2}} }{\mathrm{4}} \\ $$$$\Rightarrow{DE}^{\mathrm{2}} +{BD}\left({AB}−{BD}\right)=\frac{{BC}^{\mathrm{2}} }{\mathrm{4}} \\ $$$$\Rightarrow{DE}^{\mathrm{2}} +{BD}.{AD}=\frac{{BC}^{\mathrm{2}} }{\mathrm{4}} \\ $$$$\therefore\:\frac{{BC}^{\mathrm{2}} }{{DE}^{\mathrm{2}} +{BDAD}}=\mathrm{4} \\ $$

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