Team:HZAU-China/Modeling/Cellular automata
From 2013.igem.org
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<center><span style="font-size:46px;font-family:Cambria;margin-top:10px;line-height:80%">Cellular automata</span></center> | <center><span style="font-size:46px;font-family:Cambria;margin-top:10px;line-height:80%">Cellular automata</span></center> | ||
<p><br></p> | <p><br></p> | ||
- | + | ||
+ | <h3>Aim:</h3> | ||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">To know how the number of immunized dogs changes over time.</p> | ||
+ | |||
+ | <h3>Steps:</h3> | ||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">1.Define the cellular automata;</p> | ||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">2.Determine the related parameters of cellular automata;</p> | ||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">3.Determine the rules of cellular automata;</p> | ||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">4.Analyze the results of the model.</p> | ||
+ | |||
+ | <h3>Background:</h3> | ||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">Cellular automata are discrete dynamical systems that can simulate complex behaviors by animating cells on a lattice based on simple, local rules. There are numerous applications of cellular automata, such as simulating traffic flows, network transmission and digital music. In our project, cellular automata are used for modeling the spread of immunity in stray dogs.</p> | ||
+ | |||
+ | <h2>Definition of the cellular automaton</h2> | ||
+ | |||
+ | |||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">段落</p> | ||
+ | <h3>黑体</h3> | ||
+ | |||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">段落</p> | ||
+ | <h3>黑体</h3> | ||
+ | |||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">段落</p> | ||
+ | <h3>黑体</h3> | ||
+ | |||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">段落</p> | ||
+ | <h3>黑体</h3> | ||
+ | |||
+ | <p style="font-size:16px;font-family:arial, sans-serif;">段落</p> | ||
</div> | </div> | ||
</div> | </div> |
Revision as of 01:13, 26 September 2013
Aim:
To know how the number of immunized dogs changes over time.
Steps:
1.Define the cellular automata;
2.Determine the related parameters of cellular automata;
3.Determine the rules of cellular automata;
4.Analyze the results of the model.
Background:
Cellular automata are discrete dynamical systems that can simulate complex behaviors by animating cells on a lattice based on simple, local rules. There are numerous applications of cellular automata, such as simulating traffic flows, network transmission and digital music. In our project, cellular automata are used for modeling the spread of immunity in stray dogs.
Definition of the cellular automaton
段落
黑体
段落
黑体
段落
黑体
段落
黑体
段落