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Molecular Computing and Bioinformatics [PDF]
Molecular computing and bioinformatics are two important interdisciplinary sciences that study molecules and computers. Molecular computing is a branch of computing that uses DNA, biochemistry, and molecular biology hardware, instead of traditional ...
Xin Liang, Wen Zhu, Zhibin Lv, Quan Zou
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Exercises in molecular computing. [PDF]
CONSPECTUS: The successes of electronic digital logic have transformed every aspect of human life over the last half-century. The word "computer" now signifies a ubiquitous electronic device, rather than a human occupation. Yet evidently humans, large assemblies of molecules, can compute, and it has been a thrilling challenge to develop smaller ...
Stojanovic MN +2 more
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Quantum Computing for Molecular Biology** [PDF]
AbstractMolecular biology and biochemistry interpret microscopic processes in the living world in terms of molecular structures and their interactions, which are quantum mechanical by their very nature. Whereas the theoretical foundations of these interactions are well established, the computational solution of the relevant quantum mechanical equations
Alberto Baiardi +2 more
exaly +6 more sources
Molecular computing by PNA:PNA duplex formation. [PDF]
Molecular computing is potentially one of the most powerful tools for the development of massive parallel computing protocols. In the present paper, a first example of the use of PNA:PNA interactions in molecular computing is described. A series of short PNA sequences have been designed with a four base stretch coding for variables and solutions ...
Totsingan F, Marchelli R, Corradini R.
europepmc +6 more sources
Polyoxometalates (POMs) Memristors/Neuromorphic Devices: From Structure Engineering to Material and Function Integration [PDF]
The advancement of artificial intelligence and information technologies has presented higher demands on neuromorphic computing information devices, entailing the emergence of next-generation devices.
Jufang Hu, Shengzhang Xu, Yanfang Meng
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Non-commutative computer algebra and molecular computing [PDF]
Non-commutative calculations are considered from the molecular computing point of view. The main idea is that one can get more advantage in using molecular computing for non-commutative computer algebra compared with a commutative one.
Svetlana Cojocaru, Victor Ufnarovski
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Given that biochemical circuits can process information by using analog computation, a question is: What can biochemical circuits compute? This paper considers the problem of using biochemical circuits to distinguish persistent signals from transient ...
Chun Tung Chou
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Quantitative estimation of chemical microheterogeneity through the determination of fuzzy entropy
Chemical micro-heterogeneity is an attribute of all living systems and most of the soft and crystalline materials. Its characterization requires a plethora of techniques.
Pier Luigi Gentili +2 more
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Molecular Computation for Molecular Classification
AbstractDNA as an informational polymer has, for the past 30 years, progressively become an essential molecule to rationally build chemical reaction networks endowed with powerful signal‐processing capabilities. Whether influenced by the silicon world or inspired by natural computation, molecular programming has gained attention for diagnosis ...
Kieffer, Coline +3 more
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Irregularity molecular descriptors of VC5C7[m,n] and HC5C7[m,n] nanotubes
Scientific organizations are creating carbon nanotube-based composites like VC5C7[m,n] and HC5C7[m,n], which indicate significant response against voltage.
Muhammad Mobeen Munir
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