Pages that link to "Item:Q1872776"
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The following pages link to Membrane computing. An introduction. (Q1872776):
Displaying 50 items.
- Spiking neural P systems with a flat maximally parallel use of rules (Q2152302) (← links)
- Variants of derivation modes for which catalytic P systems with one catalyst are computationally complete (Q2152303) (← links)
- Solving a PSPACE-complete problem by symport/antiport P systems with promoters and membrane division (Q2152307) (← links)
- Spiking neural P systems with multiple channels (Q2179075) (← links)
- Cell-like P systems with evolutional symport/antiport rules and membrane creation (Q2216105) (← links)
- On solutions and representations of spiking neural P systems with rules on synapses (Q2224806) (← links)
- Control languages accepted by labeled spiking neural P systems with rules on synapses (Q2238206) (← links)
- Sequential SNP systems based on min/max spike number (Q2271437) (← links)
- An intermediate language for the stochastic simulation of biological systems (Q2271445) (← links)
- Design of logic gates using spiking neural P systems with homogeneous neurons and astrocytes-like control (Q2282261) (← links)
- Testing based on identifiable P systems using cover automata and X-machines (Q2282267) (← links)
- Local time membrane systems and time Petri nets (Q2285668) (← links)
- P systems with symport/antiport rules: when do the surroundings matter? (Q2285670) (← links)
- Tissue-like P systems with evolutional symport/antiport rules (Q2291770) (← links)
- Solution to PSPACE-complete problem using P systems with active membranes with time-freeness (Q2298575) (← links)
- Inference of bounded L systems with polymorphic P systems (Q2299882) (← links)
- Minimal cooperation as a way to achieve the efficiency in cell-like membrane systems (Q2299884) (← links)
- Polarization: a new communication protocol in networks of bio-inspired processors (Q2299886) (← links)
- Metabolic computing (Q2299892) (← links)
- Cell-like P systems with polarizations and minimal rules (Q2306012) (← links)
- Simulating P systems with membrane dissolution in a chemical calculus (Q2311261) (← links)
- Notes on spiking neural P systems and finite automata (Q2311262) (← links)
- On the universality of purely catalytic P systems (Q2311266) (← links)
- Theory of tailor automata (Q2315015) (← links)
- A uniform solution to SAT problem by symport/antiport P systems with channel states and membrane division (Q2318240) (← links)
- Cell-like spiking neural P systems with evolution rules (Q2318287) (← links)
- Small universal simple spiking neural P systems with weights (Q2335916) (← links)
- Generalized finite automata over real and complex numbers (Q2354406) (← links)
- On trace languages generated by (small) spiking neural P systems (Q2358681) (← links)
- On the computational completeness of graph-controlled insertion-deletion systems with binary sizes (Q2358685) (← links)
- Information rate of some classes of non-regular languages: an automata-theoretic approach (Q2407088) (← links)
- The computational power of enzymatic numerical P systems working in the sequential mode (Q2413310) (← links)
- Language generating alphabetic flat splicing P systems (Q2413312) (← links)
- Kernel P systems: from modelling to verification and testing (Q2413314) (← links)
- A path to computational efficiency through membrane computing (Q2422042) (← links)
- Computation power of asynchronous spiking neural P systems with polarizations (Q2422045) (← links)
- A general overview of formal languages for individual-based modelling of ecosystems (Q2423746) (← links)
- Simulation of spatial P system models (Q2440829) (← links)
- Time-free solution to SAT problem using P systems with active membranes (Q2440831) (← links)
- A multiset-based model of synchronizing agents: Computability and robustness (Q2474434) (← links)
- Interval-valued computations and their connection with PSPACE (Q2482463) (← links)
- Solving the subset-problem by P systems with active membrans (Q2493281) (← links)
- Characterizations of context-sensitive languages and other language classes in terms of symport/antiport P systems (Q2503275) (← links)
- On determinism versus nondeterminism in P systems (Q2575077) (← links)
- The computational power of tissue-like P systems with promoters (Q2628775) (← links)
- Numerical P systems with migrating variables (Q2628784) (← links)
- Membrane computing to enhance time efficiency of minimum dominating set (Q2630783) (← links)
- Simulating and model checking membrane systems using strategies in Maude (Q2667188) (← links)
- Rule synchronization for monodirectional tissue-like P systems with channel states (Q2672272) (← links)
- A model learning based testing approach for spiking neural P systems (Q2672640) (← links)