Home
Class 12
MATHS
Ax^2+By^2=1, A and B are arbitrary const...

`Ax^2+By^2=1`, A and B are arbitrary constants.

Answer

Step by step text solution for Ax^2+By^2=1, A and B are arbitrary constants. by MATHS experts to help you in doubts & scoring excellent marks in Class 12 exams.

Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • DIFFERENTIAL EQUATIONS

    PRADEEP PUBLICATION|Exercise EXERCISE|507 Videos
  • DETERMINANTS

    PRADEEP PUBLICATION|Exercise EXERCISE|342 Videos
  • INTEGRALS

    PRADEEP PUBLICATION|Exercise EXERCISE|1126 Videos

Similar Questions

Explore conceptually related problems

y=Ae^(2x)+Be^(-2x) , where A and B are arbitrary constants.

In each of the following cases, from the differential equation by eliminating the arbitrary constants from the given equation: y=Ae^(-mx)+Be^(-mx) , A and B are arbitrary constants.

Find the differential equation from y = e^x (A cos 2x + B sin 2x) , where A and B are arbitrary constants.

In each of the following cases, from the differential equation by eliminating the arbitrary constants from the given equation: y=Acosnx+B sinnx, A and B are arbitrary constans.

Find the differential equation from y = e^x (A cos x + B sin x) , where A and B are arbitrary constants.

Find the differential equation of the family of curves ( x- a)^2 + ( y - b)^2 = r^2 , where a and b are arbitrary constants.

In each of the following cases, from the differential equation by eliminating the arbitrary constants from the given equation: y=asin(x+b), a and b are arbitrary constants.

Find the differential equation which is satisfied by y=Asinx+Bcosx, A and B being arbitrary constants.

In each of the following cases, from the differential equation by eliminating the arbitrary constants from the given equation: y=asin(mx+b) , a and b are arbitrary constants.

Form the differential equation representing the family of curves x/a+y/b=1 where a and b are arbitrary constants.