Home
Class 12
MATHS
If the normals at P(theta) and Q(pi/2+th...

If the normals at `P(theta)` and `Q(pi/2+theta)` to the ellipse `(x^2)/(a^2)+(y^2)/(b^2)=1` meet the major axis at `Ga n dg,` respectively, then `P G^2+Qg^2=` `b^2(1-e^2)(2-e)^2` `a^2(e^4-e^2+2)` `a^2(1+e^2)(2+e^2)` `b^2(1+e^2)(2+e^2)`

A

`b^(2)(1 - e^(2))(2 - e^(2))`

B

`a^(2)(1 - e^(2))(2 - e^(2))`

C

`a^(2)(1 + e^(2))(2 + e^(2))`

D

`b^(2)(1 + e^(2))(2 + e^(2))`

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • ELLIPSE

    OBJECTIVE RD SHARMA|Exercise Exercise|82 Videos
  • DIFFERENTIATION

    OBJECTIVE RD SHARMA|Exercise Chapter Test|30 Videos
  • EXPONENTIAL AND LOGARITHMIC SERIES

    OBJECTIVE RD SHARMA|Exercise Chapter Test|20 Videos

Similar Questions

Explore conceptually related problems

If the normals at P(theta) and Q((pi)/(2)+theta) to the ellipse (x^(2))/(a^(2))+(y^(2))/(b^(2))=1 meet the major axis at G and g, respectively,then PG^(2)+Qg^(2)=b^(2)(1-e^(2))(2-e)^(2)a^(2)(e^(4)-e^(2)+2)a^(2)(1+e^(2))(2+e^(2))b^(2)(1+e^(2))(2+e^(2))

If the normal at the end of latus rectum of the ellipse (x^(2))/(a^(2))+(y^(2))/(b^(2))=1 passes through (0,b) then e^(4)+e^(2) (where e is eccentricity) equals

Find the area bounded by the ellipse (x ^(2))/( a ^(2)) + ( y ^(2))/( b ^(2)) =1 and the ordinates x = ae and x =0, where b ^(2) =a ^(2) (1-e ^(2)) and e lt 1.

Find the area bounded by the ellipse (x^2)/(a^2)+(y^2)/(b^2)=1 and the ordinates x" "=" "0 andx" "=" "a e , where, b^2=a^2(1-e^2) ande" "<" "1 .

The normal at an end of a latus rectum of the ellipse (x^(2))/(a^(2))+(y^(2))/(b^(2))=1 passes through an end of the minor axis if (A)e^(4)+e^(2)=1(B)e^(3)+e^(2)=1(C)e^(2)+e=1(D)e^(3)+e=1

If e_(1)ande_(2) be the eccentricities of the ellipses (x^(2))/(a^(2))+(4y^(2))/(b^(2))=1and(x^(2))/(a^(2))+(4y^(2))/(b^(2))=1 respectively then prove that 3=4e_(2)^(2)-e_(1)^(2) .

If the normal at an end of a latus-rectum of an elipse (x^(2))/(a^(2))+(y^(2))/(b^(2))=1 passes through one extremity of the minor axis,show that the eccentricity of the ellipse is given by e^(4)+e^(-1)=0

If e_1a n d e_2 are respectively the eccentricities of the ellipse (x^2)/(18)+(y^2)/4=1 and the hyperbola (x^2)/9-(y^2)/4=1, then the relation between e_1a n d e_2 is a.2e_1 ^2+e_2 ^2=3 b. e_1 ^2+2e_2^ 2=3 c. 2e_1^ 2+e_2 ^2=3 d. e_1 ^2+3e_2 ^2=2

Normal are drawn to the hyperbola (x^(2))/(a^(2))-(y^(2))/(b^(2))=1 at point theta_(1) and theta_(2) meeting the conjugate axis at G_(1) and G_(2), respectively.If theta_(1)+theta_(2)=(pi)/(2), prove that CG_(1).CG_(2)=(a^(2)e^(4))/(e^(2)-1) where C is the center of the hyperbola and e is the eccentricity.

OBJECTIVE RD SHARMA-ELLIPSE-Chapter Test
  1. If (-4, 3) and (8, 3) are the vertices of an ellipse whose eccentricit...

    Text Solution

    |

  2. The area of the triangle formed by three points on the ellipse x^2/a^2...

    Text Solution

    |

  3. If the chord joining points P(alpha)a n dQ(beta) on the ellipse ((x...

    Text Solution

    |

  4. If P(alpha,beta) is appoint on the ellipse (x^2)/(a^2)+(y^2)/(b^2)=...

    Text Solution

    |

  5. The tangent at any point P on the ellipse meets the tangents at the ve...

    Text Solution

    |

  6. P is a point on the circle x^(2) + y^(2) = c^(2). The locus of the mid...

    Text Solution

    |

  7. The locus of the poles of normal chords of the ellipse x^(2)/a^(2) + y...

    Text Solution

    |

  8. The locus of mid-points of a focal chord of the ellipse x^2/a^2+y^2/b^...

    Text Solution

    |

  9. The locus of points whose polars with respect to the ellipse x^(2)/a^(...

    Text Solution

    |

  10. if the chord of contact of tangents from a point P to the hyperbola x...

    Text Solution

    |

  11. The locus of the poles of tangents to the auxiliary circle with respec...

    Text Solution

    |

  12. The locus of the poles of tangents to the director circle of the ellip...

    Text Solution

    |

  13. P is a point on the circle x^(2) + y^(2) = c^(2). The locus of the mid...

    Text Solution

    |

  14. If the tangent to the ellipse x^(2)/a^(2) + y^(2)/b^(2) = 1 makes inte...

    Text Solution

    |

  15. If the tangents to the ellipse (x^2)/(a^2)+(y^2)/(b^2)=1 make angles a...

    Text Solution

    |

  16. If C is centre of the ellipse x^(2)/a^(2) + y^(2)/b^(2) = 1 and the no...

    Text Solution

    |

  17. If the normals at P(theta) and Q(pi/2+theta) to the ellipse (x^2)/(a^2...

    Text Solution

    |

  18. If a tangent to the ellipse x^2/a^2+y^2/b^2=1, whose centre is C, me...

    Text Solution

    |

  19. The tangent at point P on the ellipse x^(2)/a^(2) + y^(2)/b^(2) = 1 cu...

    Text Solution

    |

  20. If the lengths of major and semi-minor axes of an ellipse are 4 and sq...

    Text Solution

    |