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The maximum value of the function f(x) = `logx/x` is ______.
Concept: Maxima and Minima
Find the equation of tangent to the curve y = 2x3 – x2 + 2 at `(1/2, 2)`.
Concept: Applications of Derivatives in Geometry
Show that function f(x) = tan x is increasing in `(0, π/2)`.
Concept: Increasing and Decreasing Functions
Find the approximate value of sin (30° 30′). Give that 1° = 0.0175c and cos 30° = 0.866
Concept: Approximations
Verify Lagrange’s mean value theorem for the function f(x) = `sqrt(x + 4)` on the interval [0, 5].
Concept: Lagrange's Mean Value Theorem (LMVT)
Find the point on the curve y2 = 4x, which is nearest to the point (2, 1).
Concept: Maxima and Minima
Find the approximate value of tan−1 (1.002).
[Given: π = 3.1416]
Concept: Approximations
A box with a square base is to have an open top. The surface area of box is 147 sq. cm. What should be its dimensions in order that the volume is largest?
Concept: Maxima and Minima
Evaluate : `int (sinx)/sqrt(36-cos^2x)dx`
Concept: Methods of Integration: Integration by Substitution
Evaluate : `int_0^pi(x)/(a^2cos^2x+b^2sin^2x)dx`
Concept: Methods of Integration: Integration by Substitution
Integrate : sec3 x w. r. t. x.
Concept: Methods of Integration: Integration by Parts
If `int_(-pi/2)^(pi/2)sin^4x/(sin^4x+cos^4x)dx`, then the value of I is:
(A) 0
(B) π
(C) π/2
(D) π/4
Concept: Methods of Integration: Integration by Parts
Show that: `int1/(x^2sqrt(a^2+x^2))dx=-1/a^2(sqrt(a^2+x^2)/x)+c`
Concept: Methods of Integration: Integration by Substitution
Evaluate :`intxlogxdx`
Concept: Methods of Integration: Integration by Substitution
Prove that `int_a^bf(x)dx=f(a+b-x)dx.` Hence evaluate : `int_a^bf(x)/(f(x)+f(a-b-x))dx`
Concept: Methods of Integration: Integration by Substitution
`int1/xlogxdx=...............`
(A)log(log x)+ c
(B) 1/2 (logx )2+c
(C) 2log x + c
(D) log x + c
Concept: Methods of Integration: Integration by Parts
Evaluate : `int x^2/((x^2+2)(2x^2+1))dx`
Concept: Methods of Integration: Integration Using Partial Fractions
Find : `int((2x-5)e^(2x))/(2x-3)^3dx`
Concept: Methods of Integration: Integration by Substitution
Evaluate: `int sqrt(tanx)/(sinxcosx) dx`
Concept: Methods of Integration: Integration by Substitution
Evaluate: `∫8/((x+2)(x^2+4))dx`
Concept: Methods of Integration: Integration Using Partial Fractions
