मराठी

The solution of the differential equation cosx siny dx + sinx cosy dy = 0 is ______. - Mathematics

Advertisements
Advertisements

प्रश्न

The solution of the differential equation cosx siny dx + sinx cosy dy = 0 is ______.

पर्याय

  • `sinx/siny` = c

  • sinx siny = c

  • sinx + siny = c

  • cosx cosy = c

MCQ
रिकाम्या जागा भरा

उत्तर

The solution of the differential equation cosx siny dx + sinx cosy dy = 0 is sinx siny = c.

Explanation:

The given differential equation is cosx siny dx + sinx cosy dy = 0

⇒ sinx cosy dy = – cosx siny dx

⇒ `cosy/siny "d"y = - cosx/sinx "d"x`

⇒ coty dy = – cotx dx

Integrating both sides, we have

⇒ `int coty  "d"y = - int cot x  "d"x`

⇒ `log|sin y| = - log|sin| + log"c"`

⇒ `log|siny| + log|sinx| = log"c"`

⇒ `log|siny . sin x| = log"c"`

⇒ sinx siny = c

shaalaa.com
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 9: Differential Equations - Exercise [पृष्ठ १९८]

APPEARS IN

एनसीईआरटी एक्झांप्लर Mathematics [English] Class 12
पाठ 9 Differential Equations
Exercise | Q 57 | पृष्ठ १९८

व्हिडिओ ट्यूटोरियलVIEW ALL [2]

संबंधित प्रश्‍न

The differential equation of the family of curves y=c1ex+c2e-x is......

(a)`(d^2y)/dx^2+y=0`

(b)`(d^2y)/dx^2-y=0`

(c)`(d^2y)/dx^2+1=0`

(d)`(d^2y)/dx^2-1=0`


If x = Φ(t) differentiable function of ‘ t ' then prove that `int f(x) dx=intf[phi(t)]phi'(t)dt`


Form the differential equation of the family of circles in the second quadrant and touching the coordinate axes.


Find the particular solution of the differential equation log(dy/dx)= 3x + 4y, given that y = 0 when x = 0.


Verify that the given function (explicit or implicit) is a solution of the corresponding differential equation:

y = x2 + 2x + C  :  y′ – 2x – 2 = 0


Verify that the given function (explicit or implicit) is a solution of the corresponding differential equation:

`y sqrt(1 + x^2) : y' = (xy)/(1+x^2)`


Verify that the given function (explicit or implicit) is a solution of the corresponding differential equation:

y = Ax : xy′ = y (x ≠ 0)


Verify that the given function (explicit or implicit) is a solution of the corresponding differential equation:

y – cos y = x :  (y sin y + cos y + x) y′ = y


The solution of the differential equation \[\frac{dy}{dx} + \frac{2y}{x} = 0\] with y(1) = 1 is given by


The solution of the differential equation \[2x\frac{dy}{dx} - y = 3\] represents


Which of the following differential equations has y = x as one of its particular solution?


(x + y − 1) dy = (x + y) dx


(1 + y + x2 y) dx + (x + x3) dy = 0


(x2 + 1) dy + (2y − 1) dx = 0


For the following differential equation, find the general solution:- `y log y dx − x dy = 0`


Solve the following differential equation:- \[x \cos\left( \frac{y}{x} \right)\frac{dy}{dx} = y \cos\left( \frac{y}{x} \right) + x\]


Solve the following differential equation:-

\[\frac{dy}{dx} + \left( \sec x \right) y = \tan x\]


Solve the differential equation : `("x"^2 + 3"xy" + "y"^2)d"x" - "x"^2 d"y" = 0  "given that"  "y" = 0  "when"  "x" = 1`.


The general solution of the differential equation `"dy"/"dx" + y/x` = 1 is ______.


The general solution of the differential equation x(1 + y2)dx + y(1 + x2)dy = 0 is (1 + x2)(1 + y2) = k.


Solve the differential equation dy = cosx(2 – y cosecx) dx given that y = 2 when x = `pi/2`


Integrating factor of `(x"d"y)/("d"x) - y = x^4 - 3x` is ______.


The solution of the differential equation `("d"y)/("d"x) + (1 + y^2)/(1 + x^2)` is ______.


The solution of the equation (2y – 1)dx – (2x + 3)dy = 0 is ______.


The solution of the differential equation `x(dy)/("d"x) + 2y = x^2` is ______.


Number of arbitrary constants in the particular solution of a differential equation of order two is two.


The solution of `("d"y)/("d"x) = (y/x)^(1/3)` is `y^(2/3) - x^(2/3)` = c.


The solution of the differential equation `("d"y)/("d"x) = (x + 2y)/x` is x + y = kx2.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×