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On equivalent resistance of electrical circuits

机译:关于电路的等效电阻

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hWhile the standard (introductory physics) way of computing the equivalent resistance of nontrivial electrical circuits is based on Kirchhoff's rules, there is a mathematically and conceptually simpler approach, called the method of nodal potentials, whose basic variables are the values of the electric potential at the circuit's nodes. In this paper, we review the method of nodal potentials and illustrate it using the Wheatstone bridge as an example. We then derive a closed-form expression for the equivalent resistance of a generic circuit, which we apply to a few sample circuits. The result unveils a curious interplay between electrical circuits, matrix algebra, and graph theory and its applications to computer science. The paper is written at a level accessible by undergraduate students who are familiar with matrix arithmetic. Additional proofs and technical details are provided in appendices. (C) 2015 American Association of Physics Teachers.
机译:虽然计算非平凡电路的等效电阻的标准(入门物理学)方法是基于基尔霍夫定律的,但在数学上和概念上更简单的方法被称为节点电势法,其基本变量是在电路的节点。在本文中,我们回顾了节点势的方法,并以惠斯通电桥为例进行了说明。然后,我们得出通用电路的等效电阻的闭合形式的表达式,该表达式适用于一些示例电路。结果揭示了电路,矩阵代数和图论及其在计算机科学中的应用之间的奇怪相互作用。该论文的写作水平是熟悉矩阵算术的本科生可以访问的。附录中提供了其他证明和技术细节。 (C)2015年美国物理教师协会。

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