$$$e^{\sin{\left(x \right)}} \cos{\left(x \right)}$$$ 的积分

该计算器将求出$$$e^{\sin{\left(x \right)}} \cos{\left(x \right)}$$$的积分/原函数,并显示步骤。

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您的输入

$$$\int e^{\sin{\left(x \right)}} \cos{\left(x \right)}\, dx$$$

解答

$$$u=\sin{\left(x \right)}$$$

$$$du=\left(\sin{\left(x \right)}\right)^{\prime }dx = \cos{\left(x \right)} dx$$$ (步骤见»),并有$$$\cos{\left(x \right)} dx = du$$$

因此,

$${\color{red}{\int{e^{\sin{\left(x \right)}} \cos{\left(x \right)} d x}}} = {\color{red}{\int{e^{u} d u}}}$$

指数函数的积分为 $$$\int{e^{u} d u} = e^{u}$$$

$${\color{red}{\int{e^{u} d u}}} = {\color{red}{e^{u}}}$$

回忆一下 $$$u=\sin{\left(x \right)}$$$:

$$e^{{\color{red}{u}}} = e^{{\color{red}{\sin{\left(x \right)}}}}$$

因此,

$$\int{e^{\sin{\left(x \right)}} \cos{\left(x \right)} d x} = e^{\sin{\left(x \right)}}$$

加上积分常数:

$$\int{e^{\sin{\left(x \right)}} \cos{\left(x \right)} d x} = e^{\sin{\left(x \right)}}+C$$

答案

$$$\int e^{\sin{\left(x \right)}} \cos{\left(x \right)}\, dx = e^{\sin{\left(x \right)}} + C$$$A


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