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Outline Laplace Problems Exterior Radiation Condition Green's function Ansatz or Indirect Approach Single and Double Layer Potentials First and Second Kind Equations Greens Theorem Approach First and Second Kind Equations
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1 Model problem 1.1 Formulations 1.1.1 Strong formulation LIDE Find a such that for Q a polygonal domain Generalizat ion We look here at a particularly simple but nevertheless illustrative problem
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1 Outline for this Module Slide 1 Overview of Integral Equation Methods Important for many exterior problems (Fluids, Electromagnetics, Acoustics) Quadrature and Cubature for computing integrals One and Two dimensional basics Dealing with Singularities 1st and 2nd Kind Integral Equations
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Goals Theory A priori A priori error estimates N1 bound various“ measures” of u exact]-un [approximate] in terms of C(n, problem parameters h [mesh diameter, and u
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Formulations Model problem Strong Formulation Find u such that Vu=f in n2 a =0 on I for a polygonal domain
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Outline Reminder about 1-D 1st and 2nd Kind egns Three-D Laplace Problems Interior Neumann Problem Null space issue First Kind Theory for 3-D Laplace Informal Convergence Theory
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Laplace Problems Exterior Radiation Condition Green’s function Ansatz or Indirect Approach Single and Double Layer Potentials First and Second Kind Equations Greens Theorem Approach First and Second Kind Equations
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麻省理工学院:偏微分方程式数字方法(英文版)_lec26
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一、掌握描述静电场的两个物理量电场强度和电势的概念,理解电场强度E是矢量点函数,而电势V则是标量点函数. 二、理解高斯定理及静电场的环路定理是静电场的两个重要定理,它们表明静电场是有源场和保守场 三、掌握用点电荷电场强度和叠加原理以及高斯定理求解带电系统电场强度的方法;并能用电场强度与电势梯度的关系求解较简单带电系统的电场强度. 四、掌握用点电荷和叠加原理以及电势的定义式求解带电系统电势的方法. 五、了解电偶极子概念,能计算电偶极子在均匀电场中的受力和运动
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8.7 QTQ02型电缆探测器测试方法综述 8.7.1 电缆探测器用途及基本原理 8.7.2 QTQ02型电缆探测器介绍 8.7.3 QTQ02型电缆探测器使用方法
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