2004Medical Entomology and ZoologyRequires access

Membrane Computing: International Workshop, WMC 2003, Tarragona, Spain, July 17-22, 2003, Revised Papers

Gheorghe Pǎun, Carlos Mart¿¿n-Vide, Grzegorz Rozenberg

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Abstract

Proton Pumping P Systems.- A Binary Data Structure for Membrane Processors: Connectivity Arrays.- Parsing with Active P Automata.- Universality of Minimal Symport/Antiport: Five Membranes Suffice.- Collapsing Hierarchies of Parallel Rewriting P Systems without Target Conflicts.- Evolution and Observation: A New Way to Look at Membrane Systems.- Tiling Rectangular Pictures with P Systems.- Simulating Boolean Circuits with P Systems.- P Systems Running on a Cluster of Computers.- Implementing in Prolog an Effective Cellular Solution to the Knapsack Problem.- On the Dynamics of PB Systems: A Petri Net View.- P Systems Generating Hexagonal Picture Languages.- A Membrane System for the Leukocyte Selective Recruitment.- P Systems with Cutting/Recombination Rules Assigned to Membranes.- ? -P Automata with Communication Rules.- The Number of Membranes Matters.- An Agent-Based Behavioural Model of Monomorium Pharaonis Colonies.- Can Hyperbolic Geometry Be of Help for P Systems?.- A Linear-Time Solution to the Knapsack Problem Using P Systems with Active Membranes.- A Reconfigurable Hardware Membrane System.- P Systems and Petri Nets.- Simulation of Mobile Ambients by P Systems. Part 1.- Computing Partial Recursive Functions by Transition P Systems.- P Systems with External Input and Learning Strategies.- A Distributed Simulation of Transition P Systems.- About Splicing P Systems with Immediate Communication and Non-extended Splicing P Systems.

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Proton Pumping P Systems.- A Binary Data Structure for Membrane Processors: Connectivity Arrays.- Parsing with Active P Automata.- Universality of Minimal Symport/Antiport: Five Membranes Suffice.- Collapsing Hierarchies of Parallel Rewriting P Systems without Target Conflicts.- Evolution and Observation: A New Way to Look at Membrane Systems.- Tiling Rectangular Pictures with P Systems.- Simulating Boolean Circuits with P Systems.- P Systems Running on a Cluster of Computers.- Implementing in Prolog an Effective Cellular Solution to the Knapsack Problem.- On the Dynamics of PB Systems: A Petri Net View.- P Systems Generating Hexagonal Picture Languages.- A Membrane System for the Leukocyte Selective Recruitment.- P Systems with Cutting/Recombination Rules Assigned to Membranes.- ? -P Automata with Communication Rules.- The Number of Membranes Matters.- An Agent-Based Behavioural Model of Monomorium Pharaonis Colonies.- Can Hyperbolic Geometry Be of Help for P Systems?.- A Linear-Time Solution to the Knapsack Problem Using P Systems with Active Membranes.- A Reconfigurable Hardware Membrane System.- P Systems and Petri Nets.- Simulation of Mobile Ambients by P Systems. Part 1.- Computing Partial Recursive Functions by Transition P Systems.- P Systems with External Input and Learning Strategies.- A Distributed Simulation of Transition P Systems.- About Splicing P Systems with Immediate Communication and Non-extended Splicing P Systems.

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Available abstract

Proton Pumping P Systems.- A Binary Data Structure for Membrane Processors: Connectivity Arrays.- Parsing with Active P Automata.- Universality of Minimal Symport/Antiport: Five Membranes Suffice.- Collapsing Hierarchies of Parallel Rewriting P Systems without Target Conflicts.- Evolution and Observation: A New Way to Look at Membrane Systems.- Tiling Rectangular Pictures with P Systems.- Simulating Boolean Circuits with P Systems.- P Systems Running on a Cluster of Computers.- Implementing in Prolog an Effective Cellular Solution to the Knapsack Problem.- On the Dynamics of PB Systems: A Petri Net View.- P Systems Generating Hexagonal Picture Languages.- A Membrane System for the Leukocyte Selective Recruitment.- P Systems with Cutting/Recombination Rules Assigned to Membranes.- ? -P Automata with Communication Rules.- The Number of Membranes Matters.- An Agent-Based Behavioural Model of Monomorium Pharaonis Colonies.- Can Hyperbolic Geometry Be of Help for P Systems?.- A Linear-Time Solution to the Knapsack Problem Using P Systems with Active Membranes.- A Reconfigurable Hardware Membrane System.- P Systems and Petri Nets.- Simulation of Mobile Ambients by P Systems. Part 1.- Computing Partial Recursive Functions by Transition P Systems.- P Systems with External Input and Learning Strategies.- A Distributed Simulation of Transition P Systems.- About Splicing P Systems with Immediate Communication and Non-extended Splicing P Systems.

Key concepts: Membrane computing, Knapsack problem, P system, Rewriting, Theoretical computer science, Membrane, Petri net, Cellular automaton

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Membrane Computing: International Workshop, WMC 2003, Tarragona, Spain, July 17-22, 2003, Revised Papers — Research Paper | ScholarLens