Home
Class 12
MATHS
The equations of the tangents to the ...

The equations of the tangents to the ellpise `4x^(2) +3y^(2)=5,` which are incrlined at `60^(@)` to the axis of x are

A

`y=sqrt(3)x+-sqrt((65)/(12))`

B

`y=sqrt(3)x+-sqrt((12)/(65))`

C

`y=(x)/(sqrt(3))+-sqrt((12)/(65))`

D

none of these

Text Solution

Verified by Experts

The correct Answer is:
A

the equations of the tangents to `(x^(2))/(a^(2))+(y^(2))/(b^(2))=1` are given by `y=mx+- sqrt(a^(2)m^(2)+b^(2))`, where m is the slope of the tangent.
for the ellipse` 4x^(2)+3y^(2) =5,` we have
`a=(sqrt(5))/(2) ,b=(sqrt(5))/(sqrt(3)),m= tan 60^(@) =sqrt(3)`
so the equation of the tangent are
`y=sqrt(3) x+- sqrt((5)/(4)xx3+(5)/(3) )implies y=sqrt(3) x+- sqrt((65)/(12))`
Promotional Banner

Topper's Solved these Questions

  • ELLIPSE

    OBJECTIVE RD SHARMA ENGLISH|Exercise Section I - Solved Mcqs|59 Videos
  • ELLIPSE

    OBJECTIVE RD SHARMA ENGLISH|Exercise Section II - Assertion Reason Type|7 Videos
  • DIFFERENTIATION

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

    OBJECTIVE RD SHARMA ENGLISH|Exercise Chapter Test|20 Videos

Similar Questions

Explore conceptually related problems

The equation of the tangents to the ellipse 4x^2 + 3y^2 = 5 , which are inclined at 60^0 to the X-axis are : (A) y = x/sqrt(3) +- sqrt(65/12) (B) y = sqrt(3) x +- sqrt(65/12) (C) y = sqrt(3)x +- sqrt(12/65) (D) none of these

Find the equation of the tangents to the circle x^(2)+y^(2)-4x-5y+3=0 which are inclined at 45^(@) with X axis.

Equation of the tangent to the circle x^(2)+y^(2)=3 , which is inclined at 60^(@) with the x-axis is

The equation of the tangents to the ellipse 4x^(2)+3y^(2)=5 , which are parallel to the line y=3x+7 are

The equation of the tangents to the ellipse 4x^(2)+3y^(2)=5 , which are parallel to the line y=3x+7 are

Find the equations of the tangents to the circle x^(2) + y^(2) = 25 inclined at an angle of 60^(@) to the x-axis.

The equation of the tangents to the circle x^(2)+y^(2)=4 which are parallel to x-axis are

Find the equations of the tangents to the ellipse 3x^(2)+4y^(2)=12 which are perpendicular to the line y+2x=4 .

The equation of the tangent to the circle x^(2)+y^(2)-4x+4y-2=0 at (1,1) is

The equation of tangent to the ellipse 2x^(2)+3y^(2)=6 which make an angle 30^(@) with the major axis is

OBJECTIVE RD SHARMA ENGLISH-ELLIPSE-Chapter Test
  1. The equations of the tangents to the ellpise 4x^(2) +3y^(2)=5, whi...

    Text Solution

    |

  2. Find the maximum area of an isosceles triangle inscribed in the ellip...

    Text Solution

    |

  3. A tangent to the ellipse x^2+4y^2=4 meets the ellipse x^2+2y^2=6 at P&...

    Text Solution

    |

  4. The distance of a point on the ellipse (x^2)/6+(y^2)/2=1 from the cent...

    Text Solution

    |

  5. If the minor axis of an ellipse subtends an angle of 60^(@) at each fo...

    Text Solution

    |

  6. Let Sa n dS ' be two foci of the ellipse (x^2)/(a^2)+(y^2)/(b^2)=1 . I...

    Text Solution

    |

  7. The equation of the normal at the point P (2, 3) on the ellipse 9x^(2)...

    Text Solution

    |

  8. For the ellipse 3x^(2) + 4y^(2) + 6x - 8y - 5 = 0 the eccentrically, i...

    Text Solution

    |

  9. Let S, S' be the focil and BB' be the minor axis of the ellipse (x^(2)...

    Text Solution

    |

  10. If the length of the latusrectum of the ellipse x^(2) tan^(2) theta + ...

    Text Solution

    |

  11. if vertices of an ellipse are (-4,1),(6,1) and x-2y=2 is focal chord t...

    Text Solution

    |

  12. If (-4, 3) and (8, 3) are the vertices of an ellipse whose eccentricit...

    Text Solution

    |

  13. If the chord joining points P(alpha) and Q(beta) on the ellipse ((x^...

    Text Solution

    |

  14. If P(alpha,beta) is a point on the ellipse (x^2)/(a^2)+(y^2)/(b^2)=1...

    Text Solution

    |

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

    Text Solution

    |

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

    Text Solution

    |

  17. The equation of the locus of the poles of normal chords of the ellipse...

    Text Solution

    |

  18. The locus of mid-points of focal chords of the ellipse (x^2)/(a^2)+(y^...

    Text Solution

    |

  19. The locus of a point whose polar with respect to the ellipse (x^2)/(a^...

    Text Solution

    |

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

    Text Solution

    |

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

    Text Solution

    |