14.B如图,金属杆ab的质量为m,长为L,通过的电流为I,处在磁感应强度为B的匀强磁场中,结果ab静止且紧压于水平导轨上.若磁场方向与导轨平面成θ角,求:(1)棒ab受到的摩擦力;(2)棒对导轨的压力.

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14.B如图,金属杆ab的质量为m,长为L,通过的电流为I,处在磁感应强度为B的匀强磁场中,结果ab静止且紧压于水平导轨上.若磁场方向与导轨平面成θ角,求:(1)棒ab受到的摩擦力;(2)棒对导轨的压

14.B如图,金属杆ab的质量为m,长为L,通过的电流为I,处在磁感应强度为B的匀强磁场中,结果ab静止且紧压于水平导轨上.若磁场方向与导轨平面成θ角,求:(1)棒ab受到的摩擦力;(2)棒对导轨的压力.
14.B如图,金属杆ab的质量为m,长为L,通过的电流为I,处在磁感应强度为B的匀强磁场中,结果ab静止且紧压于水平导轨上.若磁场方向与导轨平面成θ角,求:
(1)棒ab受到的摩擦力;
(2)棒对导轨的压力.

14.B如图,金属杆ab的质量为m,长为L,通过的电流为I,处在磁感应强度为B的匀强磁场中,结果ab静止且紧压于水平导轨上.若磁场方向与导轨平面成θ角,求:(1)棒ab受到的摩擦力;(2)棒对导轨的压力.
安培力的大小为F=BIL 方向垂直磁场与导轨成90-θ度
其竖直分量为F1=BILcosθ
水平分量为F2=BILsinθ
棒ab受到的摩擦力f=F2
棒对导轨的压力.=导轨对棒支持力N
N=mg-F1=mg-BILcosθ

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14.B如图,金属杆ab的质量为m,长为L,通过的电流为I,处在磁感应强度为B的匀强磁场中,结果ab静止且紧压于水平导轨上.若磁场方向与导轨平面成θ角,求:(1)棒ab受到的摩擦力;(2)棒对导轨的压力. 如图1所示,两根足够长的直金属导轨MN、PQ平行放置在倾角为 的绝缘斜面上,两导轨间距为L.M、P两点间接有阻值为R的电阻.一根质量为m的均匀直金属杆ab放在两导轨上,并与导轨垂直.整套 我认为题目错了如图9所示,电阻不计的长方形金属框,宽为a,长为b,与竖直方向成θ角,下端弯成钩状,钩住一长为a、质量为m、电阻为R的金属杆MN.磁感应强度沿水平方向,开始时磁感应强度为B0,以 安培力的方向问题如图,一个 平行导轨上放置一个质量为m的金属杆,导轨间AB长l,导轨的一端连接电阻R,匀强磁场B垂直通过导轨平面,.我想问的是 安培力的方向为什么是 水平向左呢?根据左手定 如图 质量m的物块放在倾斜角为α的斜面上,斜面长AB为a,宽BC为b,物块和斜面间动摩擦因数μ.要使物块平行如图 质量m的物块放在倾斜角为α的斜面上,斜面长AB为a,宽BC为b,物块和斜面间动摩擦因 长为L.质量为M的金属杆ab,被两根竖直的丝线静止吊起,金属杆ab处所在垂直纸面向里的匀强磁场中.当金属杆中通有方向a到b的电场强度时I的电流时,每根丝线的拉力大小为T,求磁感应强度B的大 如图所示,光滑的金属轨道分水平段和圆弧段两部分,O点为圆弧圆心,两金属轨道之间宽度为0.5米,匀强磁场方向如图,大小为0.5T,质量为0.05Kg,长为0.5米的金属杆置于金属轨道上的M点,当在金属细 如图,匀强磁场的磁感应强度为B,方向竖直向下.在磁场中有一个边长为L的正方形刚性金属框.ab边质量为m,其他三边的质量不计.金属框的总电阻为R,cd边上装有固定的水平轴.现在将金属框从水平 导体在磁场中的运动.如图,质量为m,电阻为R1,长度为L的导体棒ab横放在金属框架上,框架质量为M,放在绝缘水平面上,与水平面间的动摩擦因数为u,相距也为L的MM',NN'相互平行,电阻不计且足够长. 如图所示,长为0.6,质量为0.06kg的均匀金属杆AB如图所示,长为0.6,质量为0.06kg的均匀金属杆AB.用劲度系数均为k=30N|m的两根相同的轻质弹簧将两端悬挂在天花板上,AB处于大小为2.0T,方向如图所示的 2012上海卷).(14分)如图,质量为M的足够长金属导轨abcd放在光滑的绝缘水平面上.如图,质量为M的足够长金属导轨abcd放在光滑的绝缘水平面上.一电阻不计,质量为m的导体棒PQ放置在导轨上,始 相距L=1.5m的足够长金属导轨竖直放置,质量为m1=1kg的金属棒ab和质量为m2=0.27kg的金属棒cd均通过棒两端的套环水平地套在金属导轨上,如图(a)所示,虚线上方磁场方向垂直纸面向里,虚线下 如图,一宽度为L的光滑金属谋轨放置于竖直平面内,质量为m的金属棒ab沿金属导轨由静止开始保持水平自由下落,进入高h、方向垂直纸面向里、磁感应强度为B的匀强磁场区域,设金属棒与金属导 如图,一宽度为L的光滑金属谋轨放置于竖直平面内,质量为m的金属棒ab沿金属导轨由静止开始保持水平自由下落,进入高h、方向垂直纸面向里、磁感应强度为B的匀强磁场区域,设金属棒与金属导 如图,一宽度为L的光滑金属谋轨放置于竖直平面内,质量为m的金属棒ab沿金属导轨由静止开始保持水平自由下落,进入高h、方向垂直纸面向里、磁感应强度为B的匀强磁场区域,设金属棒与金属导 如果可以解的话说一下思路哈.水平放置宽为1m无电阻的U型导轨里存在垂直向上的磁场B为1.0T.金属杆AB长为1m质量为0.2Kg电阻为1欧,垂直于轨道静止放置在上面,导轨与杆之间摩擦因数u为0.5.现在 如图,线段AB=a,C为AB上一点,M为AB的中点,MC=b,N为AC的中点,求MN的长. 如图,质量是m=10kg的铜导线ab放在光滑的宽度为0.5m的金属滑轨上,滑轨平面与水平面倾角为30°,ab静止时通过的电流为10A,要使ab静止,最小的磁感应强度B是多少?方向如何?