• 库仑定律静电高斯定理完全等价。

    Coulomb's law and Gauss's law are equivalent in electrostatic field.

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  • 建立积分方程时运用平面高斯定理改善了级数收敛性

    In deriving the integral equation, the convergence of series is modified by application of the plane Gauss Theorem.

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  • 通过典型例题归纳高斯定理求解场强问题四种类型

    Do sum up four types using Gauss law to solute the Field strength problems by typical instances.

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  • 磁感应强度磁通量磁场高斯定理。毕?萨定律,运动电荷产生的磁场。

    Magnetic induction intensity, magnetic flux, Gauss theorem of magnetic field, Biot-Savar law, magnetic field of moved charge.

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  • 通过对引力场分析得到了引力场的高斯定理,讨论了引力场的环路定理

    Gauss theorem derives from the analysis of gravitational field as well as loop theorem.

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  • 本文静电平衡条件基础上,应用高斯定理讨论带电导体表面电场强度

    In this paper, Guass theorem is mainly used to discuss the electric field intensity on the surface of charged conductor on condition of electrostatic equilibrium.

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  • 本文安培环路定理高斯定理电荷守恒定律出发导出位移电流具体形式

    Based on the ampere return circuit theorem, gauss theorem and charge conservation law the concrete form of Displacement current is derived.

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  • 第10周静电场中的导体电容器导体电容静电中的电介质、有介质时高斯定理

    Week 10 conductor in static electric field, capacitor and capacity of conductor, dielectric in static electric field, Gauss theorem in dielectric medium.

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  • 磁场中的高斯定理安培环路定理;安培定律。磁场导线和载流线圈对运动电荷作用

    Gauss theorem in magnetic field and Ampere cycle theorem, Ampere law, action of magnetic field to current line, cycle and charge in which.

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  • 电场数学基础包括库仑定律积分形式高斯定理积分形式,拉普拉斯公式泊松公式,定理

    Topics for the electric field mathematics include: The integral form of Coulomb's Law, Gauss's Law, the equations of Laplace and Poisson, and the divergence theorem.

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  • 本文安培环路定理高斯定理电荷守恒定律出发导出位移电流具体形式。并位移电流作了简单的讨论。

    Based on the ampere return circuit theorem, gauss theorem and charge conservation law the concrete form of displacement current is derived. The displacement current is discussed.

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  • 本文安培环路定理高斯定理电荷守恒定律出发导出位移电流具体形式。并位移电流作了简单的讨论。

    Based on the ampere return circuit theorem, gauss theorem and charge conservation law the concrete form of displacement current is derived. The displacement current is discussed.

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