将正弦电压u = 10 sin( 314 t +30 ) V 施加于感抗XL = 5 的电感元件上,<br/>则通过该元件的电流 i = ( ) 。 A: 50 sin( 314 t +90 ) B: 2 sin( 314 t +60 ) C: 2 sin( 314 t -60 ) D: 2 sin( 314 t -30 )
将正弦电压u = 10 sin( 314 t +30 ) V 施加于感抗XL = 5 的电感元件上,<br/>则通过该元件的电流 i = ( ) 。 A: 50 sin( 314 t +90 ) B: 2 sin( 314 t +60 ) C: 2 sin( 314 t -60 ) D: 2 sin( 314 t -30 )
某三相电路的三个线电流分别为 iA = 18 sin ( 314 t + 23° ) A,iB = 18 sin ( 314 t-97°) A,iC = 18 sin ( 314 t + 143° ) A,当 t = 10 s 时,这三个电流之和为 ( )。
某三相电路的三个线电流分别为 iA = 18 sin ( 314 t + 23° ) A,iB = 18 sin ( 314 t-97°) A,iC = 18 sin ( 314 t + 143° ) A,当 t = 10 s 时,这三个电流之和为 ( )。
已知某电路两端的电压u = 6 sin(314 t + 30°)V,流过的电流i = 2 sin(314 t - 30°)A,则该电路的性质是( )。 A: 电阻性 B: 电感性 C: 电容性 D: 电源性
已知某电路两端的电压u = 6 sin(314 t + 30°)V,流过的电流i = 2 sin(314 t - 30°)A,则该电路的性质是( )。 A: 电阻性 B: 电感性 C: 电容性 D: 电源性
某三相电路的三个线电流分别为 iA= 18 sin ( 314 t + 23°) A,iB= 18 sin ( 314 t-97°) A,iC= 18 sin ( 314 t + 143°) A,当 t = 10 s 时,这三个电流之和为 ( )。 A: <img src="http://image.zhihuishu.com/zhs/onlineexam/ueditor/201804/bffaf33bf4c449beaeb8061ea877845a.png" /> B: <img src="http://image.zhihuishu.com/zhs/onlineexam/ueditor/201804/a77a0745f5f945b9a94872821493535f.png" /> C: <img src="http://image.zhihuishu.com/zhs/onlineexam/ueditor/201804/ce15e45a513540a9b4de78d6d1662959.png" />
某三相电路的三个线电流分别为 iA= 18 sin ( 314 t + 23°) A,iB= 18 sin ( 314 t-97°) A,iC= 18 sin ( 314 t + 143°) A,当 t = 10 s 时,这三个电流之和为 ( )。 A: <img src="http://image.zhihuishu.com/zhs/onlineexam/ueditor/201804/bffaf33bf4c449beaeb8061ea877845a.png" /> B: <img src="http://image.zhihuishu.com/zhs/onlineexam/ueditor/201804/a77a0745f5f945b9a94872821493535f.png" /> C: <img src="http://image.zhihuishu.com/zhs/onlineexam/ueditor/201804/ce15e45a513540a9b4de78d6d1662959.png" />
设\(z = {e^{x - 2y}}\),而\(x = \sin t,\;y = {t^3},\)则\( { { dz} \over {dt}} = \)( ) A: \({e^{\sin t - 2{t^3}}}\) B: \({e^{\sin t - 2{t^3}}}\left( {\cos t - 6{t^2}} \right)\) C: \({e^{\sin t - 2{t^3}}}\ {\sin t } \) D: \({e^{\sin t - 2{t^3}}}\,{t^3}\)
设\(z = {e^{x - 2y}}\),而\(x = \sin t,\;y = {t^3},\)则\( { { dz} \over {dt}} = \)( ) A: \({e^{\sin t - 2{t^3}}}\) B: \({e^{\sin t - 2{t^3}}}\left( {\cos t - 6{t^2}} \right)\) C: \({e^{\sin t - 2{t^3}}}\ {\sin t } \) D: \({e^{\sin t - 2{t^3}}}\,{t^3}\)
已知 i= 20 sin(314 t +120°)A,则:Im=(__),I=(__),ω=(__),ƒ=(__),T=(__),Фi=(__);若有u=220 sin(314t +60°)V,则:u与i的相位关系是(__)。
已知 i= 20 sin(314 t +120°)A,则:Im=(__),I=(__),ω=(__),ƒ=(__),T=(__),Фi=(__);若有u=220 sin(314t +60°)V,则:u与i的相位关系是(__)。
设\(z = {e^{x - 2y}}\),而\(x = \sin t\),\(y = {t^3}\),则全导数\( { { dz} \over {dt}} = \) A: \({e^{\sin t - {t^3}}}(\cos t - 6{t^2})\) B: \({e^{\sin t - 2{t^3}}}(\sin t - 6{t^2})\) C: \({e^{\cos t - 2{t^3}}}(\cos t - 6{t^2})\) D: \({e^{\sin t - 2{t^3}}}(\cos t - 6{t^2})\)
设\(z = {e^{x - 2y}}\),而\(x = \sin t\),\(y = {t^3}\),则全导数\( { { dz} \over {dt}} = \) A: \({e^{\sin t - {t^3}}}(\cos t - 6{t^2})\) B: \({e^{\sin t - 2{t^3}}}(\sin t - 6{t^2})\) C: \({e^{\cos t - 2{t^3}}}(\cos t - 6{t^2})\) D: \({e^{\sin t - 2{t^3}}}(\cos t - 6{t^2})\)
一阶常微分方程[img=152x26]1802e4d6075ee4f.png[/img]的通解为 A: sin(2*t)/5-cos(2*t)/10+C*exp(-4*t) B: sin(2*t)/7+cos(2*t)/5-C*exp(-3*t) C: sin(2*t)/7-C*cos(2*t)/10+C*exp(-2*t) D: sin(2*t)/7-cos(2*t)/7+C*exp(-5*t)
一阶常微分方程[img=152x26]1802e4d6075ee4f.png[/img]的通解为 A: sin(2*t)/5-cos(2*t)/10+C*exp(-4*t) B: sin(2*t)/7+cos(2*t)/5-C*exp(-3*t) C: sin(2*t)/7-C*cos(2*t)/10+C*exp(-2*t) D: sin(2*t)/7-cos(2*t)/7+C*exp(-5*t)
求微分方程[img=269x55]17da6536a9fba07.png[/img]的通解; ( ) A: (C15*sin(2*t))/exp(3*t) + (C16*sin(2*t))/exp(3*t) B: (C15*cos(2*t))/exp(3*t) - (C16*sin(2*t))/exp(3*t) C: (C15*cos(2*t))/exp(3*t) + (C16*cos(2*t))/exp(3*t) D: (C15*cos(2*t))/exp(3*t) + (C16*sin(2*t))/exp(3*t)
求微分方程[img=269x55]17da6536a9fba07.png[/img]的通解; ( ) A: (C15*sin(2*t))/exp(3*t) + (C16*sin(2*t))/exp(3*t) B: (C15*cos(2*t))/exp(3*t) - (C16*sin(2*t))/exp(3*t) C: (C15*cos(2*t))/exp(3*t) + (C16*cos(2*t))/exp(3*t) D: (C15*cos(2*t))/exp(3*t) + (C16*sin(2*t))/exp(3*t)
已知函数[img=102x27]18030256dad01f2.png[/img],求其三阶导数,下面命令正确的是() A: syms t; G=simplify(diff(t^2*sin(t),t,3)) B: syms t; G=simplify(int(t^2*sin(t),t,3)) C: syms t; G=simplify(diff(t^2*sin(t),t)) D: syms t; G=simplify(int(t^2*sin(t),t))
已知函数[img=102x27]18030256dad01f2.png[/img],求其三阶导数,下面命令正确的是() A: syms t; G=simplify(diff(t^2*sin(t),t,3)) B: syms t; G=simplify(int(t^2*sin(t),t,3)) C: syms t; G=simplify(diff(t^2*sin(t),t)) D: syms t; G=simplify(int(t^2*sin(t),t))