in Quantitative Aptitude recategorized by
3,147 views
2 votes
2 votes

$p$ and $q$ are positive integers and $\dfrac{p}{q}+\dfrac{q}{p}=3,$ then, $\dfrac{p^{2}}{q^{2}}+\dfrac{q^{2}}{p^{2}}=$

  1. $3$
  2. $7$
  3. $9$
  4. $11$
in Quantitative Aptitude recategorized by
by
3.1k views
Migrated from GO Electronics 3 years ago by Arjun

2 Answers

3 votes
3 votes
Best answer
Given that $,\dfrac{p}{q} + \dfrac{q}{p} = 3$

Now, $\left(\dfrac{p}{q} + \dfrac{q}{p}  \right)^{2} = 3^{3}$

$\implies \dfrac{p^{2}}{q^{2}} + \dfrac{q^{2}}{p^{2}}  + 2 \dfrac{p}{q} \cdot \dfrac{q}{p}= 9 \quad [\because (a+b)^{2} = a^{2} + b^{2} + 2ab]$

$\implies \dfrac{p^{2}}{q^{2}} + \dfrac{q^{2}}{p^{2}}  + 2 = 9$

$\implies \dfrac{p^{2}}{q^{2}} + \dfrac{q^{2}}{p^{2}}  = 7$

So, the correct answer is $(B).$
selected by
3 votes
3 votes
$\frac{p}{q}+\frac{q}{p}=3$

$(\frac{p}{q}+\frac{q}{p})^{2}=3^{2}$

$\frac{p^{2}}{q^{2}}+\frac{q^{2}}{p^{2}}+2(\frac{p}{q})(\frac{q}{p})=9$

$\frac{p^{2}}{q^{2}}+\frac{q^{2}}{p^{2}}+2=9$

$\frac{p^{2}}{q^{2}}+\frac{q^{2}}{p^{2}}=7$
Answer:

Related questions

Quick search syntax
tags tag:apple
author user:martin
title title:apple
content content:apple
exclude -tag:apple
force match +apple
views views:100
score score:10
answers answers:2
is accepted isaccepted:true
is closed isclosed:true