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contenido/flujo_alrededor_circulo.html

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@@ -178,7 +178,7 @@ <h1>Flujo Uniforme Alrededor <br> de un Círculo</h1>
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$$z= \frac{a^2}{\overline{z} }.$$
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De esta manera,
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$$\big. w \big|_{|z|=a}= F(z)+ \overline{F\left(\frac{a^2}{\overline{z}}\right)} = F(z) +
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\overline{F\left(z\right)} = 2 \text{Re}\left(f(z)\right),$$
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\overline{F\left(z\right)} = 2 \text{Re}\left(F(z)\right),$$
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la cual es completamente real. Por lo tanto en la frontera $|z|=a$
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$$\psi = \text{Im}\, w = 0.$$
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Esto demuestra que el círculo $|z|=a$ es una línea de flujo.

content/flow_around_circle.html

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@@ -169,7 +169,7 @@ <h1>Uniform Flow Around a Circle</h1>
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$$z= \frac{a^2}{\overline{z} }.$$
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Thus
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$$\big. w \big|_{|z|=a}= F(z)+ \overline{F\left(\frac{a^2}{\overline{z}}\right)} = F(z) +
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\overline{F\left(z\right)} = 2 \text{Re}\left(f(z)\right),$$
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\overline{F\left(z\right)} = 2 \text{Re}\left(F(z)\right),$$
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which is entirely real. Therefore on the boundary $|z|=a$
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$$\psi = \text{Im}\, w = 0.$$
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This shows that the circle $|z|=a$ is a streamline.

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