$$$\frac{2}{x \sqrt{x^{2} - 4}}$$$ 的積分

此計算器將求出 $$$\frac{2}{x \sqrt{x^{2} - 4}}$$$ 的不定積分(原函數),並顯示步驟。

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您的輸入

$$$\int \frac{2}{x \sqrt{x^{2} - 4}}\, dx$$$

解答

套用常數倍法則 $$$\int c f{\left(x \right)}\, dx = c \int f{\left(x \right)}\, dx$$$,使用 $$$c=2$$$$$$f{\left(x \right)} = \frac{1}{x \sqrt{x^{2} - 4}}$$$

$${\color{red}{\int{\frac{2}{x \sqrt{x^{2} - 4}} d x}}} = {\color{red}{\left(2 \int{\frac{1}{x \sqrt{x^{2} - 4}} d x}\right)}}$$

$$$u=\frac{1}{x}$$$

$$$du=\left(\frac{1}{x}\right)^{\prime }dx = - \frac{1}{x^{2}} dx$$$ (步驟見»),並可得 $$$\frac{dx}{x^{2}} = - du$$$

該積分可改寫為

$$2 {\color{red}{\int{\frac{1}{x \sqrt{x^{2} - 4}} d x}}} = 2 {\color{red}{\int{\left(- \frac{1}{\sqrt{1 - 4 u^{2}}}\right)d u}}}$$

套用常數倍法則 $$$\int c f{\left(u \right)}\, du = c \int f{\left(u \right)}\, du$$$,使用 $$$c=-1$$$$$$f{\left(u \right)} = \frac{1}{\sqrt{1 - 4 u^{2}}}$$$

$$2 {\color{red}{\int{\left(- \frac{1}{\sqrt{1 - 4 u^{2}}}\right)d u}}} = 2 {\color{red}{\left(- \int{\frac{1}{\sqrt{1 - 4 u^{2}}} d u}\right)}}$$

$$$u=\frac{\sin{\left(v \right)}}{2}$$$

$$$du=\left(\frac{\sin{\left(v \right)}}{2}\right)^{\prime }dv = \frac{\cos{\left(v \right)}}{2} dv$$$(步驟見»)。

此外,由此可得 $$$v=\operatorname{asin}{\left(2 u \right)}$$$

因此,

$$$\frac{1}{\sqrt{1 - 4 u ^{2}}} = \frac{1}{\sqrt{1 - \sin^{2}{\left( v \right)}}}$$$

使用恆等式 $$$1 - \sin^{2}{\left( v \right)} = \cos^{2}{\left( v \right)}$$$

$$$\frac{1}{\sqrt{1 - \sin^{2}{\left( v \right)}}}=\frac{1}{\sqrt{\cos^{2}{\left( v \right)}}}$$$

假設 $$$\cos{\left( v \right)} \ge 0$$$,可得如下:

$$$\frac{1}{\sqrt{\cos^{2}{\left( v \right)}}} = \frac{1}{\cos{\left( v \right)}}$$$

因此,

$$- 2 {\color{red}{\int{\frac{1}{\sqrt{1 - 4 u^{2}}} d u}}} = - 2 {\color{red}{\int{\frac{1}{2} d v}}}$$

配合 $$$c=\frac{1}{2}$$$,應用常數法則 $$$\int c\, dv = c v$$$

$$- 2 {\color{red}{\int{\frac{1}{2} d v}}} = - 2 {\color{red}{\left(\frac{v}{2}\right)}}$$

回顧一下 $$$v=\operatorname{asin}{\left(2 u \right)}$$$

$$- {\color{red}{v}} = - {\color{red}{\operatorname{asin}{\left(2 u \right)}}}$$

回顧一下 $$$u=\frac{1}{x}$$$

$$- \operatorname{asin}{\left(2 {\color{red}{u}} \right)} = - \operatorname{asin}{\left(2 {\color{red}{\frac{1}{x}}} \right)}$$

因此,

$$\int{\frac{2}{x \sqrt{x^{2} - 4}} d x} = - \operatorname{asin}{\left(\frac{2}{x} \right)}$$

加上積分常數:

$$\int{\frac{2}{x \sqrt{x^{2} - 4}} d x} = - \operatorname{asin}{\left(\frac{2}{x} \right)}+C$$

答案

$$$\int \frac{2}{x \sqrt{x^{2} - 4}}\, dx = - \operatorname{asin}{\left(\frac{2}{x} \right)} + C$$$A


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