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Titlebook: Quantum Biological Information Theory; Ivan B. Djordjevic Book 2016 Springer International Publishing Switzerland 2016 Genetic Noise.Quant

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Ivan B. Djordjevicby a fixed dissociation constant, . ., the concentration of ligand at which the probability of receptor occupancy is 1/2 (Berg and Tedesco, 1975; Mesibov et al., 1973). Then it became evident that the dissociation constant increases (i.e., cells become less sensitive) at higher concentrations of lig
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Ivan B. Djordjevic are a variety of reasons why a particular heterologous gene fails to yield significant amount of protein, including susceptibility of the protein to degradation or presence of sequences that act as transcriptional pause sites. However, probably the most commonly encountered problem is a mismatch of
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Quantum Information Theory Fundamentals,ormation processing will be covered: state vectors, operators, density operators, measurements, dynamics of a quantum system, superposition principle, quantum parallelism, no-cloning theorem, and entanglement. The following concepts from quantum information theory will be provided: Holevo informatio
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Fundamentals of Biological Thermodynamics, Biomolecules, Cellular Genetics, and Bioenergetics,The following biomolecules will be described: amino acids, peptides, proteins, carbohydrates, and corresponding polymers; nucleic acid, nucleosides, and nucleotides; and phospholipids. Regarding the cell dynamics, the following topics will be described: DNA structure, the genetic code, gene anatomy,
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Quantum Information Theory and Quantum Mechanics-Based Biological Modeling and Biological Channel Cransition probabilities. The sources of genetic noise and genetic errors have been described as well. The quantum genetic noise has been described in terms of tautomeric nucleic base-pair formation. Various sources of genetic errors and genetic noise have also been described using quantum-mechanical
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Fundamentals of Biological Thermodynamics, Biomolecules, Cellular Genetics, and Bioenergetics,P and proton motive force, and the metabolism of the organism. Full details on prokaryote organism metabolism regulation will be provided. Further, we will discuss the relationship between genetics and evolution.
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