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`int ("e"^(3x))/("e"^(3x) + 1) "d"x`
Concept: undefined >> undefined
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`int (2 + cot x - "cosec"^2x) "e"^x "d"x`
Concept: undefined >> undefined
`int "e"^x[((x + 3))/((x + 4)^2)] "d"x`
Concept: undefined >> undefined
`int ("e"^(2x) + "e"^(-2x))/("e"^x) "d"x`
Concept: undefined >> undefined
`int x^x (1 + logx) "d"x`
Concept: undefined >> undefined
`int 1/(xsin^2(logx)) "d"x`
Concept: undefined >> undefined
`int sqrt(x) sec(x)^(3/2) tan(x)^(3/2)"d"x`
Concept: undefined >> undefined
`int (cos2x)/(sin^2x) "d"x`
Concept: undefined >> undefined
`int x/(x + 2) "d"x`
Concept: undefined >> undefined
`int cos^7 x "d"x`
Concept: undefined >> undefined
`int(log(logx))/x "d"x`
Concept: undefined >> undefined
`int sqrt(("e"^(3x) - "e"^(2x))/("e"^x + 1)) "d"x`
Concept: undefined >> undefined
The area of the region bounded by the curve y = sinx, X-axis and the lines x = 0, x = 4π is ______ sq.units
Concept: undefined >> undefined
The area of the region bounded by the ellipse x2/64 + y2/100 = 1, is ______ sq.units
Concept: undefined >> undefined
The area bounded by the parabola y2 = x along the X-axis and the lines x = 0, x = 2 is ______ sq.units
Concept: undefined >> undefined
The area bounded by the curve y2 = x2, and the line x = 8 is ______
Concept: undefined >> undefined
The area bounded by the parabola y2 = 32x the X-axis and the latus rectum is ______ sq.units
Concept: undefined >> undefined
The area bounded by the ellipse `x^2/4 + y^2/25` = 1 and the line `x/2 + y/5` = 1 is ______ sq.units
Concept: undefined >> undefined
