Home
Class 12
MATHS
From a point P perpendicular tangents PQ...

From a point P perpendicular tangents PQ and PR are drawn to ellipse `x^(2)+4y^(2) =4`, then locus of circumcentre of triangle PQR is

A

`x^(2)+y^(2) =(16)/(5)(x^(2)+4y^(2))^(2)`

B

`x^(2)+y^(2) =(5)/(16)(x^(2)+4y^(2))^(2)`

C

`x^(2)+4y^(2)=(16)/(5)(x^(2)+y^(2))^(2)`

D

`x^(2)+4y^(2)=(16)/(5)(x^(2)+y^(2))^(2)`

Text Solution

Verified by Experts

The correct Answer is:
B

P lies on `x^(2) +y^(2) =5` (director circle of given ellipse)
Let `P(sqrt(5) cos theta, sqrt(5) sin theta)`
Since `DeltaQPR` is right angled at point P, circumcenter is mid-point of QR.
QR is chord of contact w.r.t point P,
`:.` Its equation is `(xsqrt(5)cos theta)/(4) +(y sqrt(5) sin theta)/(1) =1` (i)
Also equation of chord QR which is bisected at point (h,k) is
`(xh)/(h^(2) + 4k^(2)) +(4ky)/(h^(2)+4k^(2)) =1` (using `T = S_(1))` (ii)
Comparing coefficients of equations (i) and (ii),
`(sqrt(5)cos theta)/(4) = (h)/(h^(2) + 4k^(2))` and `sqrt(5) sin theta = (4k)/(h^(2)+4k^(2))`
`rArr x^(2)+y^(2) = (5)/(16) (x^(2) + 4y^(2))^(2)`
Promotional Banner

Topper's Solved these Questions

  • ELLIPSE

    CENGAGE ENGLISH|Exercise Single Correct Answer Type|49 Videos
  • DOT PRODUCT

    CENGAGE ENGLISH|Exercise DPP 2.1|15 Videos
  • EQAUTION OF STRAIGHT LINE AND ITS APPLICATION

    CENGAGE ENGLISH|Exercise DPP 3.2|13 Videos

Similar Questions

Explore conceptually related problems

Tangents PA and PB are drawn to x^(2) + y^(2) = 4 from the point P(3, 0) . Area of triangle PAB is equal to:-

Tangents PA and PB are drawn to the circle x^2+y^2=4 ,then locus of the point P if PAB is an equilateral triangle ,is equal to

If from a point P , tangents PQ and PR are drawn to the ellipse (x^2)/2+y^2=1 so that the equation of Q R is x+3y=1, then find the coordinates of Pdot

The locus of point of intersection of perpendicular tangents drawn to x^(2) = 4ay is

From a point P, tangents PQ and PR are drawn to the parabola y^(2)=4ax . Prove that centroid lies inside the parabola.

Let ( alpha , beta ) be a point from which two perpendicular tangents can be drawn to the ellipse 4x^(2)+5y^(2)=20 . If F=4alpha+3beta , then

Number of perpendicular tangents that can be drawn on the ellipse (x^(2))/(16)+(y^(2))/(25)=1 from point (6, 7) is

From a point P=(3, 4) perpendiculars PQ and PR are drawn to line 3x +4y -7=0 and a variable line y -1= m (x-7) respectively then maximum area of triangle PQR is :

From the point P(3, 4) tangents PA and PB are drawn to the circle x^(2)+y^(2)+4x+6y-12=0 . The area of Delta PAB in square units, is

Two mutually perpendicular chords OA and OB are drawn through the vertex 'O' of a parabola y^(2)=4ax . Then find the locus of the circumcentre of triangle OAB.

CENGAGE ENGLISH-ELLIPSE -Single Correct Answer Type
  1. The tangent at any point on the ellipse 16x^(2)+25y^(2) = 400 meets th...

    Text Solution

    |

  2. The minimum value of {(r+5 -4|cos theta|)^(2) +(r-3|sin theta|)^(2)} A...

    Text Solution

    |

  3. Let S(1) and S(2) denote the circles x^(2)+y^(2)+10x - 24y - 87 =0 and...

    Text Solution

    |

  4. If omega is one of the angles between the normals to the ellipse (x...

    Text Solution

    |

  5. From any point on the line (t+2)(x+y) =1, t ne -2, tangents are drawn ...

    Text Solution

    |

  6. At a point P on the ellipse (x^(2))/(a^(2))+(y^(2))/(b^(2)) =1 tangent...

    Text Solution

    |

  7. From a point P perpendicular tangents PQ and PR are drawn to ellipse x...

    Text Solution

    |

  8. If the normal at any point P on ellipse (x^(2))/(a^(2))+(y^(2))/(b^(2)...

    Text Solution

    |

  9. Tangents are drawn from any point on the circle x^(2)+y^(2) = 41 to th...

    Text Solution

    |

  10. If radius of the director circle of the ellipse ((3x+4y-2)^(2))/(100)+...

    Text Solution

    |

  11. If the curve x^(2)+3y^(2)=9 subtends an obtuse angle at the point (2al...

    Text Solution

    |

  12. An ellipse has the points (1, -1) and (2,-1) as its foci and x + y = 5...

    Text Solution

    |

  13. An ellipse has foci at F1(9, 20) and F2(49,55) in the xy-plane and is ...

    Text Solution

    |

  14. The maximum distance of the centre of the ellipse x^(2)/16+y^(2)/9=1 f...

    Text Solution

    |

  15. P(1) and P(2) are the lengths of the perpendicular from the foci on th...

    Text Solution

    |

  16. From the focus (-5,0) of the ellipse (x^(2))/(45)+(y^(2))/(20) =1, a r...

    Text Solution

    |

  17. Let 5x-3y=8sqrt2 be normal at P(5/(sqrt(2)),3/(sqrt(2))) to an ellipse...

    Text Solution

    |

  18. If the normals at alpha, beta,gamma and delta on an ellipse are concur...

    Text Solution

    |

  19. Prove that the chords of contact of pairs of perpendicular tangents to...

    Text Solution

    |

  20. Consider an ellipse x^2/25+y^2/9=1 with centre c and a point P on it ...

    Text Solution

    |