Home
Class 12
MATHS
The differential equation of curve given...

The differential equation of curve given by `y = a cos ((n)/(x) + b)` (a,b are arbitrary constants)

Text Solution

Verified by Experts

The correct Answer is:
0
Promotional Banner

Topper's Solved these Questions

  • MATHEMATICS -II(B) MODEL PAPER 5

    VGS PUBLICATION-BRILLIANT|Exercise SECTION-B|8 Videos
  • MATHEMATICS -II(B) MODEL PAPER 5

    VGS PUBLICATION-BRILLIANT|Exercise SECTION -C|7 Videos
  • MATHEMATICS - II (B) MODEL PAPER 9

    VGS PUBLICATION-BRILLIANT|Exercise SECTION - C (III. Long Answer type questions.)|7 Videos
  • MATHEMATICS-II(B) MODEL PAPER 3

    VGS PUBLICATION-BRILLIANT|Exercise Section-C|7 Videos

Similar Questions

Explore conceptually related problems

The differential equation of the family of curves v=(A)/( r)+B where A and B are arbitrary constants is

Form the differential equation from the relation xy = ax^(2) + (b)/(x) eliminating the arbitrary constant a, b

The differential equation whose solution is y = Ae^(3x) + Be^(-3x) , where A, B are arbitrary constant, is

The differential equation of the family of curve y = ax + (1)/(a) , where a ne 0 is an arbitrary constant, has the degree

Find the order of the differential equation corresponding to (i) y = c(x-c)^(2) where c is an arbitrary constant. (ii) y = Ae^(x) + Be^(3x) + Ce^(5x) where A, B, C are arbitrary constant. (iii) xy = c e^(x) + b e^(-x) + x^(2) where b, c are arbitrary constants. (iv) The family of all circles in the xy-plane with centre at the origin.

The differential equation whose solution is y = ce^(x) , where c is an arbitrary constant, is

The differential equation whose solution is y = ce^(-2x) , where c is an arbitrary constant, is

Find the order of the differential equation corresponding to y=c(x-c)^(2) , where c is an arbitrary constant.