P Systems Working in Maximal Variants of the Set Derivation Mode
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Publication:2975905
DOI10.1007/978-3-319-54072-6_6zbMath1483.68108OpenAlexW2588279968MaRDI QIDQ2975905
Rudolf Freund, Artiom Alhazov, Sergey Verlan
Publication date: 12 April 2017
Published in: Membrane Computing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/978-3-319-54072-6_6
Related Items (10)
Variants of derivation modes for which purely catalytic P systems are computationally complete ⋮ Variants of derivation modes for which catalytic P systems with one catalyst are computationally complete ⋮ Rule synchronization for monodirectional tissue-like P systems with channel states ⋮ Tissue P Systems with Vesicles of Multisets ⋮ Variants of P systems with activation and blocking of rules ⋮ Unnamed Item ⋮ P Systems Working in Maximal Variants of the Set Derivation Mode ⋮ How derivation modes and halting conditions may influence the computational power of P systems ⋮ Time-freeness and clock-freeness and related concepts in P systems ⋮ Rule synchronization for tissue P systems
Cites Work
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- Small (purely) catalytic P systems simulating register machines
- Flat maximal parallelism in P systems with promoters
- P Systems with Active Membranes Operating under Minimal Parallelism
- P Systems Working in Maximal Variants of the Set Derivation Mode
- FURTHER RESULTS ON P SYSTEMS WITH PROMOTERS/INHIBITORS
- P Systems with Toxic Objects
- Sequential P Systems with Regular Control
- Fast Hardware Implementations of P Systems
- A Formal Framework for Static (Tissue) P Systems
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