DNA computing : 9th International Workshop on DNA Based Computers, DNA9, Madison, WI, USA, June 1-3, 2003 : revised papers
Na minha lista:
| Autor Corporativo: | |
|---|---|
| Outros Autores: | , |
| Formato: | Livre numérique |
| Idioma: | Anglais |
| Publicado em: |
Berlin [etc.] :
Springer
[20..].
Cham : Springer Nature |
| Colecção: | Lecture notes in computer science
2943 |
| Assuntos: | |
| Acesso em linha: | Accès sur la plateforme de l'éditeur Accès sur la plateforme Istex Accès Université d'Orléans Accès INSA CVL |
| Nota: |
Archives Springer e-books (Licence nationale) Archives Springer e-books (Licence nationale) |
| Autres localisations: | Voir dans le Sudoc |
| Edition sous un autre format: | • DNA computing, 9th International Workshop on DNA Based Computers, DNA9, Madison, WI, USA, June 1-3, 2003, revised papers, Junghuei Chen, John Reif (eds.), Berlin, Springer, 2004, 1 vol. (X-224 p.), Lecture notes in computer science, 3-540-20930-1 • DNA Computing, Texte imprimé, 9783662172032 |
Sumário:
- New Experimental Tools
- A Lab-on-a-Chip Module for Bead Separation in DNA-Based Concept Learning
- Parallel Translation of DNA Clusters by VCSEL Array Trapping and Temperature Control with Laser Illumination
- Chemical Switching and Molecular Logic in Fluorescent-Labeled M-DNA
- RCA-Based Detection Methods for Resolution Refutation
- Theory
- Word Design for Molecular Computing: A Survey
- Time-Varying Distributed H Systems with Parallel Computations: The Problem Is Solved
- Deadlock Decidability in Partial Parallel P Systems
- Computer Simulation and Sequence Design
- Languages of DNA Based Code Words
- Secondary Structure Design of Multi-state DNA Machines Based on Sequential Structure Transitions
- Analyzing Secondary Structure Transition Paths of DNA/RNA Molecules
- Self-Assembly and Autonomous Molecular Computation
- Self-Assembled Circuit Patterns
- One Dimensional Boundaries for DNA Tile Self-Assembly
- Proofreading Tile Sets: Error Correction for Algorithmic Self-Assembly
- Experimental Solutions
- A DNA-Based Memory with In Vitro Learning and Associative Recall
- Efficiency and Reliability of Semantic Retrieval in DNA-Based Memories
- Nearest-Neighbor Thermodynamics of DNA Sequences with Single Bulge Loop
- New Computing Models
- Mathematical Considerations in the Design of Microreactor-Based DNA Computers
- Towards a Re-programmable DNA Computer
- In Vitro Translation-Based Computations
- Autonomous Biomolecular Computer Modeled after Retroviral Replication
- Biomolecular Computing by Encoding of Regulated Phosphorylation-Dephosphorylation and Logic of Kinase-Phosphatase in Cells
- Conformational Addressing Using the Hairpin Structure of Single-Strand DNA.

