Matlab中与linspace(0,2*pi,51) 等价的命令是【 】 A: 0:2*pi:51 B: 0:51:2*pi C: 0:0.1:2*pi D: 0:pi/25:2*pi
Matlab中与linspace(0,2*pi,51) 等价的命令是【 】 A: 0:2*pi:51 B: 0:51:2*pi C: 0:0.1:2*pi D: 0:pi/25:2*pi
x属于(0,pi/2),sinx/x≥2/pi
x属于(0,pi/2),sinx/x≥2/pi
8. 下列不等式正确的是 A: $0\lt \int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}\lt \int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}$ B: $0\lt \int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}\lt \int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}$ C: $\int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}\lt 0\lt \int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}$ D: $\int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}\lt 0\lt \int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}$
8. 下列不等式正确的是 A: $0\lt \int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}\lt \int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}$ B: $0\lt \int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}\lt \int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}$ C: $\int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}\lt 0\lt \int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}$ D: $\int_{0}^{\frac{\pi }{2}}{\cos (\sin x)dx}\lt 0\lt \int_{0}^{\frac{\pi }{2}}{\sin (\sin x)dx}$
优学院: 曲面(xcosz+ycosx-dfrac {pi} {2}z=dfrac {pi} {2})在点((dfrac {pi} {2},1-dfrac {pi} {2},0))处的切平面方程是( )
优学院: 曲面(xcosz+ycosx-dfrac {pi} {2}z=dfrac {pi} {2})在点((dfrac {pi} {2},1-dfrac {pi} {2},0))处的切平面方程是( )
通过以下命令绘制正弦函数曲线,完成后曲线更为光滑的是( )。>> t1=linspace(0, 2*pi, 10);>> t2=linspace(0, 2*pi, 20);>> t3=linspace(0, 2*pi, 100);>> plot(t1, sin(t1), t2,sin(t2)+1, t3, sin(t3)+2) A: t1=linspace(0, 2*pi, 10) B: t2=linspace(0, 2*pi, 20) C: t3=linspace(0, 2*pi, 100) D: 都一样
通过以下命令绘制正弦函数曲线,完成后曲线更为光滑的是( )。>> t1=linspace(0, 2*pi, 10);>> t2=linspace(0, 2*pi, 20);>> t3=linspace(0, 2*pi, 100);>> plot(t1, sin(t1), t2,sin(t2)+1, t3, sin(t3)+2) A: t1=linspace(0, 2*pi, 10) B: t2=linspace(0, 2*pi, 20) C: t3=linspace(0, 2*pi, 100) D: 都一样
函数$f(x) =sin^3 x, x \in [0,2 \pi]$的单调递减区间为 A: $[\frac{\pi}{2},\frac{3}{2} \pi]$ B: $[\frac{3}{2} \pi,2 \pi]$ C: $[0,\frac{\pi}{2}]$ D: $[0,2 \pi]$
函数$f(x) =sin^3 x, x \in [0,2 \pi]$的单调递减区间为 A: $[\frac{\pi}{2},\frac{3}{2} \pi]$ B: $[\frac{3}{2} \pi,2 \pi]$ C: $[0,\frac{\pi}{2}]$ D: $[0,2 \pi]$
计算曲线积分\({\oint_L {({x^2} + {y^2})} ^3}ds\),其中\(L\)为圆周\(x = a\cos t,y = a\sin t(0 \le t \le 2\pi )\)。 A: \(2\pi {a^7}\) B: \(2\pi {a^6}\) C: \(2\pi {a^5}\) D: \(2\pi {a^8}\)
计算曲线积分\({\oint_L {({x^2} + {y^2})} ^3}ds\),其中\(L\)为圆周\(x = a\cos t,y = a\sin t(0 \le t \le 2\pi )\)。 A: \(2\pi {a^7}\) B: \(2\pi {a^6}\) C: \(2\pi {a^5}\) D: \(2\pi {a^8}\)
积分$\int_0^{\pi}e^x \sin 2xdx=$()。 A: $0$ B: $\frac{2}{5}e^{\pi}$ C: $\frac{2}{5}(1+e^{\pi})$ D: $\frac{2}{5}(1-e^{\pi})$
积分$\int_0^{\pi}e^x \sin 2xdx=$()。 A: $0$ B: $\frac{2}{5}e^{\pi}$ C: $\frac{2}{5}(1+e^{\pi})$ D: $\frac{2}{5}(1-e^{\pi})$
计算\({\oint_L {({x^2} + {y^2})} ^n}ds\),其中\(L\)为圆周\(x = a\cos t\),\(y=asint\)\((0 \le t \le 2\pi )\)。 A: \(2\pi {a^{n + 1}}\) B: \(2\pi {a^{2n + 1}}\) C: \(\pi {a^{n + 1}}\) D: \(2\pi {a^{n + 1}}\)
计算\({\oint_L {({x^2} + {y^2})} ^n}ds\),其中\(L\)为圆周\(x = a\cos t\),\(y=asint\)\((0 \le t \le 2\pi )\)。 A: \(2\pi {a^{n + 1}}\) B: \(2\pi {a^{2n + 1}}\) C: \(\pi {a^{n + 1}}\) D: \(2\pi {a^{n + 1}}\)
x属于(0,pi/2),sinx+tanx>
x属于(0,pi/2),sinx+tanx>