Integral de $$$\frac{1}{x^{2} \left(a^{2} + x^{2}\right)}$$$ em relação a $$$x$$$
Calculadora relacionada: Calculadora de Integrais Definidas e Impróprias
Sua entrada
Encontre $$$\int \frac{1}{x^{2} \left(a^{2} + x^{2}\right)}\, dx$$$.
Solução
Efetuar a decomposição em frações parciais:
$${\color{red}{\int{\frac{1}{x^{2} \left(a^{2} + x^{2}\right)} d x}}} = {\color{red}{\int{\left(- \frac{1}{a^{2} \left(a^{2} + x^{2}\right)} + \frac{1}{a^{2} x^{2}}\right)d x}}}$$
Integre termo a termo:
$${\color{red}{\int{\left(- \frac{1}{a^{2} \left(a^{2} + x^{2}\right)} + \frac{1}{a^{2} x^{2}}\right)d x}}} = {\color{red}{\left(\int{\frac{1}{a^{2} x^{2}} d x} - \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x}\right)}}$$
Aplique a regra do múltiplo constante $$$\int c f{\left(x \right)}\, dx = c \int f{\left(x \right)}\, dx$$$ usando $$$c=\frac{1}{a^{2}}$$$ e $$$f{\left(x \right)} = \frac{1}{x^{2}}$$$:
$$- \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + {\color{red}{\int{\frac{1}{a^{2} x^{2}} d x}}} = - \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + {\color{red}{\frac{\int{\frac{1}{x^{2}} d x}}{a^{2}}}}$$
Aplique a regra da potência $$$\int x^{n}\, dx = \frac{x^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$ com $$$n=-2$$$:
$$- \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + \frac{{\color{red}{\int{\frac{1}{x^{2}} d x}}}}{a^{2}}=- \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + \frac{{\color{red}{\int{x^{-2} d x}}}}{a^{2}}=- \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + \frac{{\color{red}{\frac{x^{-2 + 1}}{-2 + 1}}}}{a^{2}}=- \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + \frac{{\color{red}{\left(- x^{-1}\right)}}}{a^{2}}=- \int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x} + \frac{{\color{red}{\left(- \frac{1}{x}\right)}}}{a^{2}}$$
Aplique a regra do múltiplo constante $$$\int c f{\left(x \right)}\, dx = c \int f{\left(x \right)}\, dx$$$ usando $$$c=\frac{1}{a^{2}}$$$ e $$$f{\left(x \right)} = \frac{1}{a^{2} + x^{2}}$$$:
$$- {\color{red}{\int{\frac{1}{a^{2} \left(a^{2} + x^{2}\right)} d x}}} - \frac{1}{a^{2} x} = - {\color{red}{\frac{\int{\frac{1}{a^{2} + x^{2}} d x}}{a^{2}}}} - \frac{1}{a^{2} x}$$
Seja $$$u=\frac{x}{\left|{a}\right|}$$$.
Então $$$du=\left(\frac{x}{\left|{a}\right|}\right)^{\prime }dx = \frac{dx}{\left|{a}\right|}$$$ (veja os passos »), e obtemos $$$dx = \left|{a}\right| du$$$.
Logo,
$$- \frac{{\color{red}{\int{\frac{1}{a^{2} + x^{2}} d x}}}}{a^{2}} - \frac{1}{a^{2} x} = - \frac{{\color{red}{\int{\frac{\left|{a}\right|}{a^{2} \left(u^{2} + 1\right)} d u}}}}{a^{2}} - \frac{1}{a^{2} x}$$
Aplique a regra do múltiplo constante $$$\int c f{\left(u \right)}\, du = c \int f{\left(u \right)}\, du$$$ usando $$$c=\frac{\left|{a}\right|}{a^{2}}$$$ e $$$f{\left(u \right)} = \frac{1}{u^{2} + 1}$$$:
$$- \frac{{\color{red}{\int{\frac{\left|{a}\right|}{a^{2} \left(u^{2} + 1\right)} d u}}}}{a^{2}} - \frac{1}{a^{2} x} = - \frac{{\color{red}{\frac{\left|{a}\right| \int{\frac{1}{u^{2} + 1} d u}}{a^{2}}}}}{a^{2}} - \frac{1}{a^{2} x}$$
A integral de $$$\frac{1}{u^{2} + 1}$$$ é $$$\int{\frac{1}{u^{2} + 1} d u} = \operatorname{atan}{\left(u \right)}$$$:
$$- \frac{1}{a^{2} x} - \frac{\left|{a}\right| {\color{red}{\int{\frac{1}{u^{2} + 1} d u}}}}{a^{4}} = - \frac{1}{a^{2} x} - \frac{\left|{a}\right| {\color{red}{\operatorname{atan}{\left(u \right)}}}}{a^{4}}$$
Recorde que $$$u=\frac{x}{\left|{a}\right|}$$$:
$$- \frac{1}{a^{2} x} - \frac{\left|{a}\right| \operatorname{atan}{\left({\color{red}{u}} \right)}}{a^{4}} = - \frac{1}{a^{2} x} - \frac{\left|{a}\right| \operatorname{atan}{\left({\color{red}{\frac{x}{\left|{a}\right|}}} \right)}}{a^{4}}$$
Portanto,
$$\int{\frac{1}{x^{2} \left(a^{2} + x^{2}\right)} d x} = - \frac{1}{a^{2} x} - \frac{\left|{a}\right| \operatorname{atan}{\left(\frac{x}{\left|{a}\right|} \right)}}{a^{4}}$$
Simplifique:
$$\int{\frac{1}{x^{2} \left(a^{2} + x^{2}\right)} d x} = \frac{- a^{2} - x \left|{a}\right| \operatorname{atan}{\left(\frac{x}{\left|{a}\right|} \right)}}{a^{4} x}$$
Adicione a constante de integração:
$$\int{\frac{1}{x^{2} \left(a^{2} + x^{2}\right)} d x} = \frac{- a^{2} - x \left|{a}\right| \operatorname{atan}{\left(\frac{x}{\left|{a}\right|} \right)}}{a^{4} x}+C$$
Resposta
$$$\int \frac{1}{x^{2} \left(a^{2} + x^{2}\right)}\, dx = \frac{- a^{2} - x \left|{a}\right| \operatorname{atan}{\left(\frac{x}{\left|{a}\right|} \right)}}{a^{4} x} + C$$$A