Difference between revisions of "Team:Aix-Marseille/Collaborations"

(Equations)
(Equations)
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<div lang="latex">\sigma (\mathbf{z,c}) = \sigma \times H[2.0] = 0  if z_0 < 2.0 \\ \sigma (\mathbf{z,c}) = \sigma \times H[2.0] = \sigma if z_0 \geq 2.0</div>(6)<br/><br/>
 
<div lang="latex">\sigma (\mathbf{z,c}) = \sigma \times H[2.0] = 0  if z_0 < 2.0 \\ \sigma (\mathbf{z,c}) = \sigma \times H[2.0] = \sigma if z_0 \geq 2.0</div>(6)<br/><br/>
  
Here we assume that there is a fixed rate of division <div lang="latex">\sigma</div> once cells are big enough to divide (<div lang="latex">H[]</div> is the Heaviside function).
+
Here we assume that there is a fixed rate of division <div lang="latex">\sigma</div> once cells are big enough to divide (<div lang="latex">H[]</div> is the Heaviside function).<br/><br/>
  
<div lang="latex">p(\mathbf{z,z',c}) = p(z_0,z'_0) \times p(z_1,z'_1) \times p(z_2,z'_2)</div> (7)<br/><br/>
+
<div lang="latex">p(\mathbf{z,z',c}) = p(z_0,z'_0) \times p(z_1,z'_1) \times p(z_2,z'_2)</div> (7)<br/>
 
<div lang="latex">p(z_0,z'_0) = \delta_{z_0,\frac{z'_0}{2}} = 1 if  z_0 = z'_0/2.0 \\
 
<div lang="latex">p(z_0,z'_0) = \delta_{z_0,\frac{z'_0}{2}} = 1 if  z_0 = z'_0/2.0 \\
 
p(z_0,z'_0) = \delta_{z_0,\frac{z'_0}{2}} = 0 if z_0 \ne z'_0/2.0.</div> (8)<br/><br/>
 
p(z_0,z'_0) = \delta_{z_0,\frac{z'_0}{2}} = 0 if z_0 \ne z'_0/2.0.</div> (8)<br/><br/>

Revision as of 15:50, 17 October 2016