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Opposite process of differentiation is known as
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Find the integral with respect to $x$ of $\frac{e^{x}}{e^{x}+1}$
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$\int {\left( {{x^2} + x - 2} \right)\,dx} = $
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$\int {0\,dx} = $
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The order of the differential equation x dy/dx=1+y is:
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The area enclosed between the graph $y=x^{2}-4x$ and the x-axis is:
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The area under the curve $y=\frac{1}{x^{2}}$ between x=1 and x=4 is
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The shaded area in the diagram is given by:
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The shaded area in the diagram is given by:
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The shaded area of the diagram is equal to:
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The shaded area in the diagram is given by:
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The area between the x-axis and the curve $y=4x-x^{2}$ is:
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The area between the x-axis and the curve $y=x^{2}+1$ from x=1 to 2 is:
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The shaded section has area:
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The value of $\int_{\frac{\pi}{6}}^{\frac{\pi}{3}} \frac{dx}{\sin2x}$ is equal to:
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The value of $\int_{1}^{e}lnxdx$ is equal to:
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The value of $\int_{-2}^{3}e^{\frac{-x}{2}}dx$ is equal to:
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$\int_{b}^{b}f(x)dx$ is equal to:
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If $\int_{0}^{1}\frac{1}{(2x+K)^{2}} dx=1/3$, where K is a constant, then the value of K is
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$\int_{0}^{a}f(2a-x)$ is equal to:
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If f(x)=f(a+x) then $\int_{a}^{ka} f(x)dx$ equals:
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The value of $\int_{a}^{b}\frac{|x|}{x}dx$ is:
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The value of $\int_{0}^{\frac{\pi}{2}} \cos^{2}xdx$ is:
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$\int_{0}^{1} \frac{2x}{1+x^{2}}dx$ is equal to:
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The value of $\int_{0}^{\frac{\pi}{4}} \theta \sec^{2}\theta d \theta$ is:
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