$$$\cos^{9}{\left(x \right)}$$$의 적분
사용자 입력
$$$\int \cos^{9}{\left(x \right)}\, dx$$$을(를) 구하시오.
풀이
코사인 하나를 분리하고, $$$\alpha=x$$$에 대한 공식 $$$\cos^2\left(\alpha \right)=-\sin^2\left(\alpha \right)+1$$$을 사용하여 나머지는 모두 사인으로 표현하세요.:
$${\color{red}{\int{\cos^{9}{\left(x \right)} d x}}} = {\color{red}{\int{\left(1 - \sin^{2}{\left(x \right)}\right)^{4} \cos{\left(x \right)} d x}}}$$
$$$u=\sin{\left(x \right)}$$$라 하자.
그러면 $$$du=\left(\sin{\left(x \right)}\right)^{\prime }dx = \cos{\left(x \right)} dx$$$ (단계는 »에서 볼 수 있습니다), 그리고 $$$\cos{\left(x \right)} dx = du$$$임을 얻습니다.
따라서,
$${\color{red}{\int{\left(1 - \sin^{2}{\left(x \right)}\right)^{4} \cos{\left(x \right)} d x}}} = {\color{red}{\int{\left(1 - u^{2}\right)^{4} d u}}}$$
Expand the expression:
$${\color{red}{\int{\left(1 - u^{2}\right)^{4} d u}}} = {\color{red}{\int{\left(u^{8} - 4 u^{6} + 6 u^{4} - 4 u^{2} + 1\right)d u}}}$$
각 항별로 적분하십시오:
$${\color{red}{\int{\left(u^{8} - 4 u^{6} + 6 u^{4} - 4 u^{2} + 1\right)d u}}} = {\color{red}{\left(\int{1 d u} - \int{4 u^{2} d u} + \int{6 u^{4} d u} - \int{4 u^{6} d u} + \int{u^{8} d u}\right)}}$$
상수 법칙 $$$\int c\, du = c u$$$을 $$$c=1$$$에 적용하십시오:
$$- \int{4 u^{2} d u} + \int{6 u^{4} d u} - \int{4 u^{6} d u} + \int{u^{8} d u} + {\color{red}{\int{1 d u}}} = - \int{4 u^{2} d u} + \int{6 u^{4} d u} - \int{4 u^{6} d u} + \int{u^{8} d u} + {\color{red}{u}}$$
멱법칙($$$\int u^{n}\, du = \frac{u^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$)을 $$$n=8$$$에 적용합니다:
$$u - \int{4 u^{2} d u} + \int{6 u^{4} d u} - \int{4 u^{6} d u} + {\color{red}{\int{u^{8} d u}}}=u - \int{4 u^{2} d u} + \int{6 u^{4} d u} - \int{4 u^{6} d u} + {\color{red}{\frac{u^{1 + 8}}{1 + 8}}}=u - \int{4 u^{2} d u} + \int{6 u^{4} d u} - \int{4 u^{6} d u} + {\color{red}{\left(\frac{u^{9}}{9}\right)}}$$
상수배 법칙 $$$\int c f{\left(u \right)}\, du = c \int f{\left(u \right)}\, du$$$을 $$$c=4$$$와 $$$f{\left(u \right)} = u^{2}$$$에 적용하세요:
$$\frac{u^{9}}{9} + u + \int{6 u^{4} d u} - \int{4 u^{6} d u} - {\color{red}{\int{4 u^{2} d u}}} = \frac{u^{9}}{9} + u + \int{6 u^{4} d u} - \int{4 u^{6} d u} - {\color{red}{\left(4 \int{u^{2} d u}\right)}}$$
멱법칙($$$\int u^{n}\, du = \frac{u^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$)을 $$$n=2$$$에 적용합니다:
$$\frac{u^{9}}{9} + u + \int{6 u^{4} d u} - \int{4 u^{6} d u} - 4 {\color{red}{\int{u^{2} d u}}}=\frac{u^{9}}{9} + u + \int{6 u^{4} d u} - \int{4 u^{6} d u} - 4 {\color{red}{\frac{u^{1 + 2}}{1 + 2}}}=\frac{u^{9}}{9} + u + \int{6 u^{4} d u} - \int{4 u^{6} d u} - 4 {\color{red}{\left(\frac{u^{3}}{3}\right)}}$$
상수배 법칙 $$$\int c f{\left(u \right)}\, du = c \int f{\left(u \right)}\, du$$$을 $$$c=4$$$와 $$$f{\left(u \right)} = u^{6}$$$에 적용하세요:
$$\frac{u^{9}}{9} - \frac{4 u^{3}}{3} + u + \int{6 u^{4} d u} - {\color{red}{\int{4 u^{6} d u}}} = \frac{u^{9}}{9} - \frac{4 u^{3}}{3} + u + \int{6 u^{4} d u} - {\color{red}{\left(4 \int{u^{6} d u}\right)}}$$
멱법칙($$$\int u^{n}\, du = \frac{u^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$)을 $$$n=6$$$에 적용합니다:
$$\frac{u^{9}}{9} - \frac{4 u^{3}}{3} + u + \int{6 u^{4} d u} - 4 {\color{red}{\int{u^{6} d u}}}=\frac{u^{9}}{9} - \frac{4 u^{3}}{3} + u + \int{6 u^{4} d u} - 4 {\color{red}{\frac{u^{1 + 6}}{1 + 6}}}=\frac{u^{9}}{9} - \frac{4 u^{3}}{3} + u + \int{6 u^{4} d u} - 4 {\color{red}{\left(\frac{u^{7}}{7}\right)}}$$
상수배 법칙 $$$\int c f{\left(u \right)}\, du = c \int f{\left(u \right)}\, du$$$을 $$$c=6$$$와 $$$f{\left(u \right)} = u^{4}$$$에 적용하세요:
$$\frac{u^{9}}{9} - \frac{4 u^{7}}{7} - \frac{4 u^{3}}{3} + u + {\color{red}{\int{6 u^{4} d u}}} = \frac{u^{9}}{9} - \frac{4 u^{7}}{7} - \frac{4 u^{3}}{3} + u + {\color{red}{\left(6 \int{u^{4} d u}\right)}}$$
멱법칙($$$\int u^{n}\, du = \frac{u^{n + 1}}{n + 1}$$$ $$$\left(n \neq -1 \right)$$$)을 $$$n=4$$$에 적용합니다:
$$\frac{u^{9}}{9} - \frac{4 u^{7}}{7} - \frac{4 u^{3}}{3} + u + 6 {\color{red}{\int{u^{4} d u}}}=\frac{u^{9}}{9} - \frac{4 u^{7}}{7} - \frac{4 u^{3}}{3} + u + 6 {\color{red}{\frac{u^{1 + 4}}{1 + 4}}}=\frac{u^{9}}{9} - \frac{4 u^{7}}{7} - \frac{4 u^{3}}{3} + u + 6 {\color{red}{\left(\frac{u^{5}}{5}\right)}}$$
다음 $$$u=\sin{\left(x \right)}$$$을 기억하라:
$${\color{red}{u}} - \frac{4 {\color{red}{u}}^{3}}{3} + \frac{6 {\color{red}{u}}^{5}}{5} - \frac{4 {\color{red}{u}}^{7}}{7} + \frac{{\color{red}{u}}^{9}}{9} = {\color{red}{\sin{\left(x \right)}}} - \frac{4 {\color{red}{\sin{\left(x \right)}}}^{3}}{3} + \frac{6 {\color{red}{\sin{\left(x \right)}}}^{5}}{5} - \frac{4 {\color{red}{\sin{\left(x \right)}}}^{7}}{7} + \frac{{\color{red}{\sin{\left(x \right)}}}^{9}}{9}$$
따라서,
$$\int{\cos^{9}{\left(x \right)} d x} = \frac{\sin^{9}{\left(x \right)}}{9} - \frac{4 \sin^{7}{\left(x \right)}}{7} + \frac{6 \sin^{5}{\left(x \right)}}{5} - \frac{4 \sin^{3}{\left(x \right)}}{3} + \sin{\left(x \right)}$$
간단히 하시오:
$$\int{\cos^{9}{\left(x \right)} d x} = \frac{\left(35 \sin^{8}{\left(x \right)} - 180 \sin^{6}{\left(x \right)} + 378 \sin^{4}{\left(x \right)} - 420 \sin^{2}{\left(x \right)} + 315\right) \sin{\left(x \right)}}{315}$$
적분 상수를 추가하세요:
$$\int{\cos^{9}{\left(x \right)} d x} = \frac{\left(35 \sin^{8}{\left(x \right)} - 180 \sin^{6}{\left(x \right)} + 378 \sin^{4}{\left(x \right)} - 420 \sin^{2}{\left(x \right)} + 315\right) \sin{\left(x \right)}}{315}+C$$
정답
$$$\int \cos^{9}{\left(x \right)}\, dx = \frac{\left(35 \sin^{8}{\left(x \right)} - 180 \sin^{6}{\left(x \right)} + 378 \sin^{4}{\left(x \right)} - 420 \sin^{2}{\left(x \right)} + 315\right) \sin{\left(x \right)}}{315} + C$$$A