$$$i f n t x + g x$$$ 关于$$$x$$$的积分
您的输入
求$$$\int \left(i f n t x + g x\right)\, dx$$$。
解答
逐项积分:
$${\color{red}{\int{\left(i f n t x + g x\right)d x}}} = {\color{red}{\left(\int{g x d x} + \int{i f n t x d x}\right)}}$$
对 $$$c=g$$$ 和 $$$f{\left(x \right)} = x$$$ 应用常数倍法则 $$$\int c f{\left(x \right)}\, dx = c \int f{\left(x \right)}\, dx$$$:
$$\int{i f n t x d x} + {\color{red}{\int{g x d x}}} = \int{i f n t x d x} + {\color{red}{g \int{x d x}}}$$
应用幂法则 $$$\int x^{n}\, dx = \frac{x^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$,其中 $$$n=1$$$:
$$g {\color{red}{\int{x d x}}} + \int{i f n t x d x}=g {\color{red}{\frac{x^{1 + 1}}{1 + 1}}} + \int{i f n t x d x}=g {\color{red}{\left(\frac{x^{2}}{2}\right)}} + \int{i f n t x d x}$$
对 $$$c=i f n t$$$ 和 $$$f{\left(x \right)} = x$$$ 应用常数倍法则 $$$\int c f{\left(x \right)}\, dx = c \int f{\left(x \right)}\, dx$$$:
$$\frac{g x^{2}}{2} + {\color{red}{\int{i f n t x d x}}} = \frac{g x^{2}}{2} + {\color{red}{i f n t \int{x d x}}}$$
应用幂法则 $$$\int x^{n}\, dx = \frac{x^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$,其中 $$$n=1$$$:
$$i f n t {\color{red}{\int{x d x}}} + \frac{g x^{2}}{2}=i f n t {\color{red}{\frac{x^{1 + 1}}{1 + 1}}} + \frac{g x^{2}}{2}=i f n t {\color{red}{\left(\frac{x^{2}}{2}\right)}} + \frac{g x^{2}}{2}$$
因此,
$$\int{\left(i f n t x + g x\right)d x} = \frac{i f n t x^{2}}{2} + \frac{g x^{2}}{2}$$
化简:
$$\int{\left(i f n t x + g x\right)d x} = \frac{x^{2} \left(i f n t + g\right)}{2}$$
加上积分常数:
$$\int{\left(i f n t x + g x\right)d x} = \frac{x^{2} \left(i f n t + g\right)}{2}+C$$
答案
$$$\int \left(i f n t x + g x\right)\, dx = \frac{x^{2} \left(i f n t + g\right)}{2} + C$$$A