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- Rule_184 abstract "Rule 184 is a one-dimensional binary cellular automaton rule, notable for solving the majority problem as well as for its ability to simultaneously describe several, seemingly quite different, particle systems: Rule 184 can be used as a simple model for traffic flow in a single lane of a highway, and forms the basis for many cellular automaton models of traffic flow with greater sophistication. In this model, particles (representing vehicles) move in a single direction, stopping and starting depending on the cars in front of them. The number of particles remains unchanged throughout the simulation. Because of this application, Rule 184 is sometimes called the "traffic rule". Rule 184 also models a form of deposition of particles onto an irregular surface, in which each local minimum of the surface is filled with a particle in each step. At each step of the simulation, the number of particles increases. Once placed, a particle never moves. Rule 184 can be understood in terms of ballistic annihilation, a system of particles moving both leftwards and rightwards through a one-dimensional medium. When two such particles collide, they annihilate each other, so that at each step the number of particles remains unchanged or decreases.The apparent contradiction between these descriptions is resolved by different ways of associating features of the automaton's state with particles. The name of the rule is a Wolfram code that defines the evolution of its states. The earliest research on Rule 184 seems to be the papers by Li (1987) and Krug and Spohn (1988). In particular, Krug and Spohn already describe all three types of particle system modeled by Rule 184.".
- Rule_184 thumbnail Rule_184.png?width=300.
- Rule_184 wikiPageExternalLink cs87-no-figure.pdf.
- Rule_184 wikiPageExternalLink 184.
- Rule_184 wikiPageExternalLink fuks.pdf.
- Rule_184 wikiPageExternalLink twostater1.pdf.
- Rule_184 wikiPageExternalLink fuks.pdf.
- Rule_184 wikiPageID "11063933".
- Rule_184 wikiPageLength "23649".
- Rule_184 wikiPageOutDegree "53".
- Rule_184 wikiPageRevisionID "650646112".
- Rule_184 wikiPageWikiLink 184_(number).
- Rule_184 wikiPageWikiLink A_New_Kind_of_Science.
- Rule_184 wikiPageWikiLink Annihilate.
- Rule_184 wikiPageWikiLink Annihilation.
- Rule_184 wikiPageWikiLink Antiparticle.
- Rule_184 wikiPageWikiLink Array_data_structure.
- Rule_184 wikiPageWikiLink Asynchronous_cellular_automaton.
- Rule_184 wikiPageWikiLink Ballistic_annihilation.
- Rule_184 wikiPageWikiLink Biham–Middleton–Levine_traffic_model.
- Rule_184 wikiPageWikiLink Binary_number.
- Rule_184 wikiPageWikiLink Bit.
- Rule_184 wikiPageWikiLink Bracket.
- Rule_184 wikiPageWikiLink Category:Cellular_automaton_rules.
- Rule_184 wikiPageWikiLink Category:Lattice_models.
- Rule_184 wikiPageWikiLink Cellular_automaton.
- Rule_184 wikiPageWikiLink Context-free_language.
- Rule_184 wikiPageWikiLink Context_free_language.
- Rule_184 wikiPageWikiLink Cyclic_cellular_automaton.
- Rule_184 wikiPageWikiLink Deposition_(Aerosol_physics).
- Rule_184 wikiPageWikiLink Deposition_(aerosol_physics).
- Rule_184 wikiPageWikiLink File:Rule_184.png.
- Rule_184 wikiPageWikiLink Fredkin_gate.
- Rule_184 wikiPageWikiLink Ising_model.
- Rule_184 wikiPageWikiLink J._Phys._A.
- Rule_184 wikiPageWikiLink J._Phys._Soc._Japan.
- Rule_184 wikiPageWikiLink Journal_of_Physics_A.
- Rule_184 wikiPageWikiLink Journal_of_Statistical_Physics.
- Rule_184 wikiPageWikiLink Journal_of_the_Physical_Society_of_Japan.
- Rule_184 wikiPageWikiLink Majority_problem_(cellular_automaton).
- Rule_184 wikiPageWikiLink Microscopic_traffic_flow_model.
- Rule_184 wikiPageWikiLink Multiplexer.
- Rule_184 wikiPageWikiLink Particle_system.
- Rule_184 wikiPageWikiLink Periodic_boundary_conditions.
- Rule_184 wikiPageWikiLink Phase_transition.
- Rule_184 wikiPageWikiLink Phys._Rev._Lett..
- Rule_184 wikiPageWikiLink Physical_Review_A.
- Rule_184 wikiPageWikiLink Physical_Review_E.
- Rule_184 wikiPageWikiLink Physical_Review_Letters.
- Rule_184 wikiPageWikiLink Physics_Reports.
- Rule_184 wikiPageWikiLink Rule_110.
- Rule_184 wikiPageWikiLink Rule_30.
- Rule_184 wikiPageWikiLink Rule_90.
- Rule_184 wikiPageWikiLink Square_lattice.
- Rule_184 wikiPageWikiLink Stephen_Wolfram.
- Rule_184 wikiPageWikiLink Traffic_flow.
- Rule_184 wikiPageWikiLink Traffic_wave.
- Rule_184 wikiPageWikiLink Wolfram_code.
- Rule_184 wikiPageWikiLink File:Rule_184_annihilation.svg.
- Rule_184 wikiPageWikiLink File:Rule_184_cars.svg.
- Rule_184 wikiPageWikiLink File:Rule_184_deposition.svg.
- Rule_184 wikiPageWikiLinkText "Rule 184".
- Rule_184 wikiPageWikiLinkText "cellular automaton 184".
- Rule_184 wikiPageWikiLinkText "rule 184".
- Rule_184 hasPhotoCollection Rule_184.
- Rule_184 wikiPageUsesTemplate Template:Cite_arXiv.
- Rule_184 wikiPageUsesTemplate Template:Cite_book.
- Rule_184 wikiPageUsesTemplate Template:Cite_journal.
- Rule_184 wikiPageUsesTemplate Template:Commons_category.
- Rule_184 wikiPageUsesTemplate Template:Refbegin.
- Rule_184 wikiPageUsesTemplate Template:Refend.
- Rule_184 wikiPageUsesTemplate Template:Reflist.
- Rule_184 subject Category:Cellular_automaton_rules.
- Rule_184 subject Category:Lattice_models.
- Rule_184 hypernym Rule.
- Rule_184 type AdministrativeRegion.
- Rule_184 type Model.
- Rule_184 type Chromodynamic.
- Rule_184 type Mechanic.
- Rule_184 type Model.
- Rule_184 type Physic.
- Rule_184 comment "Rule 184 is a one-dimensional binary cellular automaton rule, notable for solving the majority problem as well as for its ability to simultaneously describe several, seemingly quite different, particle systems: Rule 184 can be used as a simple model for traffic flow in a single lane of a highway, and forms the basis for many cellular automaton models of traffic flow with greater sophistication.".
- Rule_184 label "Rule 184".
- Rule_184 sameAs Regel_184.
- Rule_184 sameAs m.02qzs7d.
- Rule_184 sameAs Правило_184.
- Rule_184 sameAs Q2183161.
- Rule_184 sameAs Q2183161.
- Rule_184 wasDerivedFrom Rule_184?oldid=650646112.
- Rule_184 depiction Rule_184.png.
- Rule_184 isPrimaryTopicOf Rule_184.