DNA Computing and Molecular Programming [electronic resource] : 21st International Conference, DNA 21, Boston and Cambridge, MA, USA, August 17-21, 2015. Proceedings / edited by Andrew Phillips, Peng Yin.
Material type:
TextSeries: Theoretical Computer Science and General Issues ; 9211 | Lecture Notes in Computer Science ; 9211Publisher: Cham : Springer International Publishing : Imprint: Springer, 2015Edition: 1st ed. 2015Description: XII, 213 p. 92 illus. online resourceContent type: - text
- computer
- online resource
- 9783319219998
- Computers
- Algorithms
- Bioinformatics
- Artificial intelligence
- Data structures (Computer science)
- Computer science—Mathematics
- Computation by Abstract Devices
- Algorithm Analysis and Problem Complexity
- Computational Biology/Bioinformatics
- Artificial Intelligence
- Data Structures
- Discrete Mathematics in Computer Science
- 004.0151 23
- QA75.5-76.95
E-BOOKS
| Home library | Call number | Materials specified | URL | Status | Date due | Barcode | |
|---|---|---|---|---|---|---|---|
| IMSc Library | Link to resource | Available | EBK14100 |
Algorithms and models for computation on biomolecular Systems -- Computational processes in vitro and in vivo -- Molecular switches, gates, devices, and circuits -- Molecular folding and self-assembly of nanostructures -- Analysis and theoretical models of laboratory techniques -- Molecular motors and molecular robotics -- Studies of fault-tolerance and error correction -- Software tools for analysis, simulation, and design -- Synthetic biology and in vitro Evolution -- Applications in engineering, physics, chemistry, biology, and medicine.
This book constitutes the refereed proceedings of the 21st International Conference on DNA Computing and Molecular Programming, DNA 21, held in Boston and Cambridge, MA, USA, in August 2015. The 13 full papers presented were carefully selected from 63 submissions. The papers address all current issues related to biomolecular computing, such as: algorithms and models for computation on biomolecular systems; computational processes in vitro and in vivo; molecular switches, gates, devices, and circuits; molecular folding and self-assembly of nanostructures; analysis and theoretical models of laboratory techniques; molecular motors and molecular robotics; studies of fault-tolerance and error correction; software tools for analysis, simulation, and design; synthetic biology and in vitro evolution; applications in engineering, physics, chemistry, biology, and medicine. .
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