JEE Main Differential Equations Practice Questions With Solutions

Updated By Lam Vijaykanth on 07 Jan, 2025 21:16

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JEE Main Mathematics Differential Equations Practice Questions

ChemistryPhysics

Question 1.

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Let 0x1(y(t))2dt=0xy(t)dt,0x3,y0,y(0)=0. Then at x=2,y+y+1 is equal to

Question 2.

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The solution of the differential equation (x2+y2)dx5xydy=0,y(1)=0, is :

Question 3.

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The solution curve, of the differential equation 2ydydx+3=5dydx, passing through the point (0,1) is a conic, whose vertex lies on the line :

Question 4.

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Let y=y(x) be the solution curve of the differential equation secydydx+2xsiny=x3cosy,y(1)=0. Then y(3) is equal to:

Question 5.

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Let f(x) be a positive function such that the area bounded by y=f(x),y=0 from x=0 to x=a>0 is ea+4a2+a1. Then the differential equation, whose general solution is y=c1f(x)+c2, where c1 and c2 are arbitrary constants, is

Question 6.

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Let y=y(x) be the solution of the differential equation (1+y2)etanxdx+cos2x(1+e2tanx)dy=0,y(0)=1. Then y(π4) is equal to

Question 7.

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Suppose the solution of the differential equation dydx=(2+α)xβy+2βx2αy(βγ4α) represents a circle passing through origin. Then the radius of this circle is :

Question 8.

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Let y=y(x) be the solution of the differential equation (2xlogex)dydx+2y=3xlogex,x>0 and y(e1)=0. Then, y(e) is equal to

Question 9.

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Let y=y(x) be the solution of the differential equation (1+x2)dydx+y=etan1x, y(1)=0. Then y(0) is

Question 10.

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The differential equation of the family of circles passing through the origin and having centre at the line y=x is :

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Question 1.

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If y=y(x) is the solution of the differential equation dydx+2y=sin(2x),y(0)=34, then y(π8) is equal to :

Question 2.

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Let y=y(x) be the solution of the differential equation (x2+4)2dy+(2x3y+8xy2)dx=0. If y(0)=0, then y(2) is equal to

Question 3.

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If the solution y=y(x) of the differential equation (x4+2x3+3x2+2x+2)dy(2x2+2x+3)dx=0 satisfies y(1)=π4, then y(0) is equal to :

Question 4.

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Let α be a non-zero real number. Suppose f:RR is a differentiable function such that f(0)=2 and limxf(x)=1. If f(x)=αf(x)+3, for all xR, then f(loge2) is equal to :

Question 5.

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Let y=y(x) be the solution of the differential equation

dydx=2x(x+y)3x(x+y)1,y(0)=1.

Then, (12+y(12))2 equals :

Question 6.

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The temperature T(t) of a body at time t=0 is 160F and it decreases continuously as per the differential equation dTdt=K(T80), where K is a positive constant. If T(15)=120F, then T(45) is equal to

Question 7.

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Let y=y(x) be the solution of the differential equation dydx=(tanx)+ysinx(secxsinxtanx),x(0,π2) satisfying the condition y(π4)=2. Then, y(π3) is

Question 8.

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The solution curve of the differential equation ydxdy=x(logexlogey+1),x>0,y>0 passing through the point (e,1) is

Question 9.

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Let y=y(x) be the solution of the differential equation secxdy+{2(1x)tanx+x(2x)}dx=0 such that y(0)=2. Then y(2) is equal to:

Question 10.

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If sin(yx)=loge|x|+α2 is the solution of the differential equation xcos(yx)dydx=ycos(yx)+x and y(1)=π3, then α2 is equal to

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