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1. |
Record Nr. |
UNINA9910708648303321 |
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Autore |
Haneberg William C. |
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Titolo |
Rapid water-level fluctuations in a thin colluvium landslide west of Cincinnati, Ohio / / by William C. Haneberg and A. Önder Gökce |
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Pubbl/distr/stampa |
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Washington : , : United States Government Printing Office ; , 1994 |
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Descrizione fisica |
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1 online resource (iv, 16 pages) : illustrations |
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Collana |
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U.S. Geological Survey bulletin ; ; 2059-C |
Landslides of the Cincinnati, Ohio, area ; ; C |
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Disciplina |
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Soggetti |
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Landslides - Ohio - Cincinnati Region |
Colluvium - Ohio - Cincinnati Region |
Groundwater - Ohio - Cincinnati Region |
Colluvium |
Groundwater |
Landslides |
Ohio Cincinnati Region |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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"The fluctuations are analyzed using analytical and numerical models of modified Dupuit hillside flow." |
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Nota di bibliografia |
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Includes bibliographical references (pages 15-16). |
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2. |
Record Nr. |
UNINA9910830891903321 |
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Autore |
Moat Albert G |
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Titolo |
Microbial physiology [[electronic resource] /] / Albert G. Moat, John W. Foster, Michael P. Spector |
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Pubbl/distr/stampa |
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New York, : Wiley-Liss, c2002 |
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ISBN |
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1-280-36668-0 |
9786610366682 |
0-470-35616-2 |
0-471-46119-9 |
0-471-22386-7 |
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Edizione |
[4th ed.] |
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Descrizione fisica |
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1 online resource (736 p.) |
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Altri autori (Persone) |
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FosterJohn Watkins |
SpectorMichael P |
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Disciplina |
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Soggetti |
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Microorganismes |
Fisiologia |
Microbiologia |
Microorganisms - Physiology |
Microbiology |
Llibres electrònics |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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MICROBIAL PHYSIOLOGY; CONTENTS; PREFACE; 1 INTRODUCTION TO MICROBIAL PHYSIOLOGY; The Escherichia coli Paradigm; Cell Structure; The Cell Surface; Synthesis of DNA, RNA, and Protein; Metabolic and Genetic Regulation; Microbial Genetics; Chemical Synthesis; Chemical Composition; Energy; Oxidation-Reduction Versus Fermentation; Nitrogen Assimilation; Special Topics; Endospores; Growth; Continuous Culture; Factors Affecting Growth; Nutrition; Oxygen; Carbon Dioxide; Extremophiles; Microbial Stress Responses; Summary; 2 MACROMOLECULAR SYNTHESIS AND PROCESSING: DNA, RNA, AND PROTEIN SYNTHESIS |
Structure of DNABacterial Nucleoids; REP Elements; DNA Replication; DNA Replication is Bidirectional and Semiconservative; DNA Polymerase |
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Functions as a Dimer; Model of DNA Replication; Initiation of DNA Replication; Termination of DNA Replication and Chromosome Partitioning; RNA Synthesis: Transcription; RNA Synthesis; RNA Turnover; RNA Processing; Protein Synthesis: Translation; Transfer RNA; Charging of tRNA; Ribosome Structure and Synthesis; Initiation of Polypeptide Synthesis; Elongation; Peptide Bond Formation; Translocation; Termination; Posttranslational Processing |
When Nonsense Makes SenseCoupled Transcription and Translation; Protein Folding and Chaperones; Folding Stages; Protein Folding and Chaperone Mechanisms Outside the Cytoplasm; Quality Control; Protein Trafficking; Insertion of Integral Membrane Proteins and Export of Periplasmic Proteins; Secretion of Proteins Across the Outer Membrane; Protein Degradation; Degradation of Abnormal Proteins; Energy-Dependent Proteases; Antibiotics that affect Nucleic Acid and Protein Synthesis; Agents Affecting DNA Metabolism; Agents Affecting Transcription; Agents Affecting Translation; Nucleoids |
DNA ReplicationTranscription and Translation; Protein Folding, Trafficking, and Degradation; Antibiotics; 3 BACTERIAL GENETICS: DNA EXCHANGE, RECOMBINATION, MUTAGENESIS, AND REPAIR; Transfer of Genetic Information in Prokaryotes; Plasmids; Partitioning; Incompatibility; Nonconjugative, Mobilizable Plasmids; Resistance Plasmids; Plasmids in Other Bacterial Genera; Plasmid Replication; Addiction Modules: Plasmid Maintenance by Host Killing: The ccd Genes; Conjugation; F Factor; cis/trans complementation Test; Conjugation and Pheromones in Enterococci |
Conjugation, Cell-Cell Signaling, and Bacterial-Induced TumorsTransformation; Gram-Positive Transformation; Gram-Negative Transformation; Transfection and Forced Competence; Transduction; Recombination; General Recombination; Genetics of Recombination; Restriction and Modification; Insertion Sequences and Transposable Elements; Transposon Tn10; Transposon Tn3; Conjugative Transposition; Evolutionary Consideration; Integrons; Mutagenesis; Spontaneous Mutations; The Nature of Mutational Events; Suppressor Mutations; DNA Repair Systems; Photoreactivation; Nucleotide Excision Repair |
Transcription-Coupled Repair |
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Sommario/riassunto |
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The Fourth Edition of Microbial Physiology retains the logical, easy-to-follow organization of the previous editions. An introduction to cell structure and synthesis of cell components is provided, followed by detailed discussions of genetics, metabolism, growth, and regulation for anyone wishing to understand the mechanisms underlying cell survival and growth. This comprehensive reference approaches the subject from a modern molecular genetic perspective, incorporating new insights gained from various genome projects. |
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3. |
Record Nr. |
UNINA9911020075003321 |
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Autore |
Freund Michael S |
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Titolo |
Self-doped conductiong polymers / / Michael S. Freund and Bhavana A. Deore |
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Pubbl/distr/stampa |
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Chichester, England ; ; Hoboken, NJ, : Wiley, c2007 |
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ISBN |
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9786612345753 |
9781282345751 |
1282345753 |
9780470061725 |
0470061723 |
9780470061732 |
0470061731 |
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Descrizione fisica |
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1 online resource (340 p.) |
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Altri autori (Persone) |
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Disciplina |
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547.7 |
547.70457 |
547/.70457 |
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Soggetti |
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Conducting polymers |
Doped semiconductors |
Polymerization |
Electric apparatus and appliances - Materials |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Self-Doped Conducting Polymers; Contents; About the Authors; Preface; 1 Introduction; 1.1 Conducting Polymers; 1.1.1 History of Conjugated Conducting Polymers; 1.1.2 Concept of Doping in Intrinsically Conducting Polymers; 1.1.3 Conduction Mechanism; 1.1.4 Synthesis; 1.1.5 Processability; 1.2 Self-Doped Conducting Polymers; 1.3 Types of Self-Doped Polymers; 1.4 Doping Mechanism in Self-Doped Polymers; 1.4.1 p-Type Doping; 1.4.2 n-Type Doping; 1.4.3 Auto Doping; 1.5 Effect of Substituents on Properties of Polymers; 1.5.1 Solubility; 1.5.2 DC Conductivity; 1.5.3 Molecular Weight |
1.5.4 Redox Properties1.5.5 Electronic and Spectroscopic Properties; 1.5.6 Mechanical and Thermal Properties; 1.6 Applications of Self- |
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Doped Polymers; 1.6.1 Molecular Level Processing; 1.6.2 Transistors; 1.6.3 Biosensors; 1.6.4 e-Beam Lithography; 1.6.5 Electrochromic Devices; 1.6.6 Ion Exchangers; 1.6.7 Rechargeable Batteries; 1.6.8 Dip-Pen Nanolithography; References; 2 Self-Doped Derivatives of Polyaniline; 2.1 Introduction; 2.2 Chemical Synthesis of Sulfonic Acid Derivatives; 2.2.1 Post-Polymerization Modification; 2.2.2 Polymerization of Monomers |
2.3 Electrochemical Synthesis of Sulfonic Acid Derivatives2.3.1 Aqueous Media; 2.3.2 Non-Aqueous Media; 2.4 Enzymatic Synthesis of Sulfonic Acid Derivatives; 2.5 Properties of Sulfonic Acid Derivatives; 2.5.1 Solubility; 2.5.2 Conductivity; 2.5.3 pH Dependent Redox Behavior; 2.5.4 Electronic and Spectroscopic Properties; 2.5.5 Molecular Weight; 2.5.6 Thermal Stability; 2.5.7 Morphology; 2.6 Synthesis and Characterization of Carboxylic Acid Derivatives; 2.6.1 Chemical Synthesis; 2.6.2 Electrochemical Synthesis; 2.7 Synthesis and Characterization of Phosphonic Acid Derivatives |
2.8 Self-Doped Polyaniline NanostructuresReferences; 3 Boronic Acid Substituted Self-Doped Polyaniline; 3.1 Introduction; 3.2 Synthesis; 3.2.1 Electrochemical Synthesis; 3.2.2 Chemical Synthesis; 3.3 Properties of Self-Doped PABA; 3.3.1 pH Dependent Redox Behavior; 3.3.2 Spectroscopy; 3.3.3 Molecular Weight; 3.4 Self-Crosslinked Self-Doped Polyaniline; 3.4.1 Introduction; 3.4.2 Synthesis and Characterization; 3.4.3 Mechanical Properties; 3.4.4 11B NMR; 3.4.5 Thermal Properties; 3.4.6 Temperature Dependent Conductivity; 3.5 Applications; 3.5.1 Saccharide Sensor; 3.5.2 Nucleotide Sensors |
3.5.3 Amine Sensors3.5.4 Molecular Level Processing for Controlled Release of RNA; References; 4 Self-Doped Polythiophenes; 4.1 Sulfonic Acid Derivatives; 4.1.1 Electrochemical Polymerization; 4.1.2 Chemical Polymerization; 4.1.3 Post Polymerization Modification; 4.2 Carboxylic Acid Derivatives; 4.3 Phosphonic Acid Derivatives; References; 5 Miscellaneous Self-Doped Polymers; 5.1 Self-Doped Polypyrrole; 5.1.1 Electrochemical Polymerization; 5.1.2 Chemical Polymerization; 5.1.3 Polycondensation; 5.2 Carboxylic Acid Derivatives; 5.3 Self-Doped Poly(3,6-(carbaz-9-yl)propanesulfonate) |
5.4 Self-Doped Poly(p-phenylene)s |
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Sommario/riassunto |
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Self-Doped Conducting Polymers provides an introduction to conducting polymers in general and self-doped conducting polymers in particular. This is followed by an in depth exploration of the synthesis, properties and utilization of several types of self-doped polymers. Optimization of self-doped polymers is also discussed. |
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