Home
Class 12
MATHS
The second order differential equation i...

The second order differential equation is

A

`y'^(2)+x=y^2`

B

`y'y''+y=sinx`

C

`y'''+y''+y=0`

D

`y'=y`

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Similar Questions

Explore conceptually related problems

STATEMENT-1 : To find complete solution of a second order differential equation we need two different conditions. and STATEMENT-2 : An n^(th) order differential equation has n independent parameters.

Which of the following is a second order differential equatoin

The general solution of a differential equation is y= ae ^(bx+ c) where are arbitrary constants. The order the differential equation is :

Consider the following statements in respect of the differential equation (d^(2)y)/(dx^(2)) + cos ((dy)/(dx))=0 1. The degree of the differential equation is not defined. 2. The order of the differential equation is 2.

Statement I The order of differential equation of all conics whose centre lies at origin is , 2. Statement II The order of differential equation is same as number of arbitary unknowns in the given curve.

If the general solution of a differential equation is (y+c)^2=cx , where c is an arbitrary constant then the order of the differential equation is _______.

Directions: In the following questions, A statement of Assertion (A) is followed by a statement of Reason (R). Mark the correct choice as Assertion (A): The order of the differential equation given by (dy)/(dx)+4y=sinx is 1. Reason (R): Since the order of a differential equation is defined as the order of the highest derivative occurring in the differential equation, i.e., for nth derivative (d^ny)/(dx^n) if n = 1.then it's order = 1. Given differential equation contains only (dy)/(dx) derivative with variables and constants.

The order of the differential equation y" + y' + y = 0 is

The order of differential equation of all circles of given radius 'a' is