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The NPL moving-coil apparatus for measuring Planck's constant and monitoring the kilogram

机译:用于测量普朗克常数和监控千克的NPL动圈装置

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In a moving-coil balance, a coil threaded by a strong magnetic flux is moved with linear velocity u to induce a voltage V. In a separate measurement a force F caused by a current I (=V/R where R is a resistance) flowing in the coil is then weighed as a mass M times gravitational acceleration g. The relationship M=V/sup 2//Rgu is obtained by eliminating the rate of change of magnetic flux threading the coil. A relative uncertainty of some parts in 10/sup 9/ seems possible, enabling the stability of the kilogram to be monitored in terms of the Josephson effect (/spl sim/h/2c) used to measure V and the quantum Hall effect (/spl sim/h/e/sup 2/) used to measure R. Therefore M=Ah where A is a measured quantity involving only meters and seconds, and either Planck's constant h could be measured in terms of the present kilogram or the kilogram could be redefined in terms of a defined value of h. We report progress with the NPL apparatus toward these ends.
机译:在动圈式天平中,由强磁通量穿过的线圈以线速度u移动,以感应出电压V。在单独的测量中,由电流I引起的力F(= V / R,其中R为电阻)然后,将在线圈中流过的质量作为质量M乘以重力加速度g进行称重。通过消除穿过线圈的磁通量的变化率来获得关系M = V / sup 2 // Rgu。某些部分的相对不确定度可能在10 / sup 9 /中,这使得可以根据用于测量V的约瑟夫森效应(/ spl sim / h / 2c)和量子霍尔效应(/ spl sim / h / e / sup 2 /)用于测量R。因此,M = Ah,其中A是仅涉及米和秒的测量量,而普朗克常数h可以用当前千克来衡量,或者千克可以根据h的定义值重新定义。我们向这些目标报告了不良贷款设备的进展。

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