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Coulomb’s law Gauss’s Law #153 #163 fix #223
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content/chap07ex01.tex

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@@ -76,7 +76,8 @@ \subsection{傅里叶变换的定义}\label{sub:傅里叶变换的定义}
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对于单位冲激函数$\delta(t)$,其频率表示为$F(\omega)=1$.
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\end{theorem}
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\begin{prove}
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由傅里叶变换定义,
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由傅里叶变换\sidenote{得名于18至19世纪法国数学与物理学家
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让·巴蒂斯特·约瑟夫·傅里叶(Jean-Baptiste Joseph Fourier )。}定义,
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\begin{align}
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F(\omega)=\int_{-\infty}^{\infty}\delta(t)\mathrm{e}^{-\mathrm{i}2\pi\omega t}\mathrm{d}t
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=\mathrm{e}^{-\mathrm{i}2\pi\omega\cdot0}

content/chap0807.tex

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@@ -52,7 +52,7 @@ \section{扩展阅读}\label{sec:扩展阅读08}
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可以用它们聚合后的统计行为来精确描述。
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该假设对于现实世界中许多曲面而言并不成立,
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其每个像素中只有相对少量的微面是可见的;
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这样的曲面例子包括车漆和闪亮塑料\sidenote{译者注:原文glittery plastics,或称“闪粉”。}。
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这样的曲面例子包括车漆和闪光粉\sidenote{译者注:原文glittery plastics,即“闪光塑料”。}。
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\citet{10.1145/2601097.2601155}与\citet{10.1145/2601097.2601186}都
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开发了对该情况建模的技术。
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