法拉第定律

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  • Faraday's law
法拉第定律法拉第定律
  1. 电动势及法拉第定律。电感,磁场中之能量,马克思威尔方程式。

    Electromotive Force and Faraday 's Law . Inductance , Energy in Magnetic Fields , Maxwell Equations .

  2. 本文从电化学中的法拉第定律出发,推导出了钢筋电化学快速锈蚀试验的控制方程。

    Based on the Faraday 's law in electrochemistry , the control equation for quick electrochemical corrosion experiment of rebars was derived .

  3. 从安培定律和法拉第定律出发,导出了细槽缝问题的时域有限差分方程。

    Finite-difference time-domain equation is deduced from Ampere and Faraday 's laws .

  4. 实验结果利用法拉第定律和线圈参数得以解释。

    The experimental results are explained , taking account for Faraday inductive law and coil parameters .

  5. 根据损伤等效原则,由法拉第定律和阿伦尼斯方程,分别推导出一套不同环境之间的当量化关系式;

    Based on the Faraday law and Arrhenius equation , a set of universal formulas of the equivalent environment is developed .

  6. 探讨了在快速锈蚀条件下,按法拉第定律的电化学锈蚀控制方程来估算钢筋锈蚀深度的合理性。

    And the reasonability of estimating the corrosional depth of steel , by using Faraday 's Law and under accelerated corrosion conditions , is discussed .

  7. 视觉化教材的部份提供了用来展示不同物理现象的多媒体工具,包括向量场、静电学、静磁学、法拉第定律和光。

    The Visualizations section offers multimedia tools that demonstrate various physical phenomena , including Vector Fields , Electrostatics , Magnetostatics , Faraday 's Law , and Light .

  8. 假设废水以平推流方式通过圆筒形反应器,由电催化过程的质量守恒和法拉第定律导出浓度、电流强度随废水停留时间的变化规律。

    Relationship between concentration , current and residence time of wastewater in the reactor where the wastewater motion occurred in plus flow were derived from mass balance and Faraday 's law .

  9. 通过测定产物电导值和利用法拉第电解定律计算,确定了反应终点。

    The end point of electrolysis was determined based on the conductance of the product .

  10. 基于法拉第电解定律研制电解法微量溶解氧分析仪校准装置。

    The apparatus for calibrating low-level dissolved oxygen analyzer was developed on the principle of Faraday ′ s law .

  11. 本文依据法拉第电磁感应定律,利用电路变量的参考方向,找出了获得任意情形下互感线圈V-A方程的一种方法。

    According to Faraday 's Law of Electromagnetic Induction , using the reference direction of circuit variation , it can find a method of V-A Equation made by mutual inductive circle at its option .

  12. 法拉第电磁感应定律的磁势分析

    An analysis on Faraday law of electromagnetic induction by the magnetic potential

  13. 法拉第电磁感应定律

    Faraday law of electromagnetic induction

  14. 在经典物理的条件下展开并用磁势表达和分析了法拉第电磁感应定律;

    Using the magnetic potential , Faraday Law of Electromagnetic Induction is expanded , represented and analyzed in the conditions of classical physics .

  15. 本文分别由法拉第电磁感应定律和洛仑兹力公式简明地导出了感应电场在不同惯性参考系中的相对关系式。

    By means of Faraday 's law of induction and Lorentz 's formula of force , the relativity of induced electric field was given concisely .

  16. 通过安培定律与法拉第电磁感应定律导出安培力做功的一股公式。

    The general formula for calculating the work of Ampere 's force is derived according to the Ampere 's law and the Faraday 's law of electromagnetic induction .

  17. 库仑定律、安培定律和法拉第电磁感应定律是电磁学三大基本实验定律,这三个定律的建立标志着人类对于电磁现象的认识发展到了新阶段。

    The formation of the three basic experimental law-the Coulomb 's Law , the Ampere 's Law and the law of Faraday 's electromagnetic induction-shows that mankind 's understanding of the electromagnetism phenomenon has reached a new level .

  18. 众所周知,宏观电动力学的理论基础&麦克斯韦方程组是建立在库仑定律、毕奥-沙伐尔定律、法拉第电磁感应定律和感生电场、位移电流假设基础上的。

    It is well-known that the theoretical basis of macroscopic electrodynamics is Maxwell equations , include which Coulomb law , Biot-Savant law , Faraday law of electromagnetic induction and the hypothesis of induced electric field and displacement current .

  19. 库仑定律是整个电磁场理论的基础,它确保了作为经典电磁场理论总结的麦克斯韦方程组的精度,从而实际上也确保了安培定律和法拉第电磁感应定律的精度。

    Coulomb 's Law is the foundation of the theory of the electromagnetic field . Since it ensures the accuracy of the Maxwell 's Equations , it ensures the accuracy of the Ampere 's Law and Faraday 's Law of electromagnetic induction as well .

  20. 采用复矢量磁位-复标量位(A-φ)法计算涡流场,同时基于磁场分析和法拉第电磁感应定律得出了矢量磁位(A)与等效电路参数的耦合方程。

    A - φ method was used for eddy current field analysis , and based on magnetic circuit analysis and Faraday law of electromagnetic induction , coupled field-circuit equation was derived , which was expressed by magnetic vector potential A and the parameters of the equivalent circuit .