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Calculations in molecular biology and biotechnology [[electronic resource] ] : a guide to mathematics in the laboratory / / Frank H. Stephenson
Calculations in molecular biology and biotechnology [[electronic resource] ] : a guide to mathematics in the laboratory / / Frank H. Stephenson
Autore Stephenson Frank Harold
Pubbl/distr/stampa Amsterdam ; ; Boston, : Academic Press, c2003
Descrizione fisica 1 online resource (319 p.)
Disciplina 572.8/01/51
Soggetto topico Molecular biology - Computer simulation
Molecular biology - Mathematics
Biotechnology
Soggetto genere / forma Electronic books.
ISBN 1-281-02727-8
9786611027278
0-08-050061-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Calculations in Molecular Biology and Biotechnology; Copyright Page; Contents; Foreword; Chapter 1. Scientific Notation and Metric Prefixes; Introduction; Significant Digits; Rounding Off Significant Digits in Calculations; Exponents and Scientific Notation; Expressing Numbers in Scientific Notation; Converting Numbers from Scientific Notation to Decimal Notation; Adding and Subtracting Numbers Written in Scientific Notation; Multiplying and Dividing Numbers Written in Scientific Notation; Metric Prefixes; Conversion Factors and Canceling Terms
Chapter 2. Solutions Mixtures and Media Introduction; Calculating Dilutions: A General Approach; Concentrations by a Factor of X; Preparing Percent Solutions; Diluting Percent Solutions; Moles and Molecular Weight: Definitions; Molarity; Diluting Molar Solutions; Converting Molarity to Percent; Converting Percent to Molarity; Normality; PH; pKa and the Henderson-Hasselbalch Equation; Chapter 3. Cell Growth; The Bacterial Growth Curve; Manipulating Cell Concentration; Plotting OD550 vs. Time on a Linear Graph; Plotting the Logarithm of OD550 vs. Time on a Linear Graph
Plotting the Log of Cell Concentration vs. Time Calculating Generation Time; Plotting Cell Growth Data on a Semilog Graph; Determining Generation Time Directly from a Semilog Plot of Cell Concentration vs. Time; Plotting Cell Density versus OD550 on a Semilog Graph; The Fluctuation Test; Fluctuation Test Example; Variance; Measuring Mutation Rate; Measuring Cell Concentration on a Hemocytometer; Chapter 4. Working with Bacteriophage; Introduction; Multiplicity of Infection; Probabilities and Multiplicity of Infection; Measuring Phage Titer; Diluting Bacteriophage; Measuring Burst Size
Chapter 5. Quantitation of Nucleic Acids Quantitation of Nucleic Acids by Ultraviolet Spectroscopy; Determining the Concentration of Double-Stranded DNA; Using Absorbance and an Extinction Coefficient to Calculate Double-Stranded DNA Concentration; Calculating DNA Concentration as a Millimolar (mM) Amount; Determining the Concentration of Single-Stranded DNA Molecules; Oligonucleotide Quantitation; Measuring RNA Concentration; Molecular Weight, Molarity, and Nucleic Acid Length; Estimating DNA Concentration on an Ethidium Bromide-Stained Gel
Chapter 6. Labeling Nucleic Acids with Radioisotopes Introduction; Using Radioactivity: The Curie; Estimating Plasmid Copy Number; Labeling DNA by Nick Translation; Random Primer Labeling of DNA; Labeling 3' Termini with Terminal Transferase; cDNA Synthesis; Homopolymeric Tailing; In Vitro Transcription; Chapter 7. Oligonucleotide Synthesis; Introduction; Synthesis Yield; Measuring Stepwise and Overall Yield by the DMT Cation Assay; Overall Yield; Stepwise Yield; Calculating Micromoles of Nucleoside Added at Each Base Addition Step; Chapter 8. The Polymerase Chain Reaction; Introduction
Template and Amplification
Record Nr. UNINA-9910458136503321
Stephenson Frank Harold  
Amsterdam ; ; Boston, : Academic Press, c2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Calculations in molecular biology and biotechnology [[electronic resource] ] : a guide to mathematics in the laboratory / / Frank H. Stephenson
Calculations in molecular biology and biotechnology [[electronic resource] ] : a guide to mathematics in the laboratory / / Frank H. Stephenson
Autore Stephenson Frank Harold
Pubbl/distr/stampa Amsterdam ; ; Boston, : Academic Press, c2003
Descrizione fisica 1 online resource (319 p.)
Disciplina 572.8/01/51
Soggetto topico Molecular biology - Computer simulation
Molecular biology - Mathematics
Biotechnology
ISBN 1-281-02727-8
9786611027278
0-08-050061-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Calculations in Molecular Biology and Biotechnology; Copyright Page; Contents; Foreword; Chapter 1. Scientific Notation and Metric Prefixes; Introduction; Significant Digits; Rounding Off Significant Digits in Calculations; Exponents and Scientific Notation; Expressing Numbers in Scientific Notation; Converting Numbers from Scientific Notation to Decimal Notation; Adding and Subtracting Numbers Written in Scientific Notation; Multiplying and Dividing Numbers Written in Scientific Notation; Metric Prefixes; Conversion Factors and Canceling Terms
Chapter 2. Solutions Mixtures and Media Introduction; Calculating Dilutions: A General Approach; Concentrations by a Factor of X; Preparing Percent Solutions; Diluting Percent Solutions; Moles and Molecular Weight: Definitions; Molarity; Diluting Molar Solutions; Converting Molarity to Percent; Converting Percent to Molarity; Normality; PH; pKa and the Henderson-Hasselbalch Equation; Chapter 3. Cell Growth; The Bacterial Growth Curve; Manipulating Cell Concentration; Plotting OD550 vs. Time on a Linear Graph; Plotting the Logarithm of OD550 vs. Time on a Linear Graph
Plotting the Log of Cell Concentration vs. Time Calculating Generation Time; Plotting Cell Growth Data on a Semilog Graph; Determining Generation Time Directly from a Semilog Plot of Cell Concentration vs. Time; Plotting Cell Density versus OD550 on a Semilog Graph; The Fluctuation Test; Fluctuation Test Example; Variance; Measuring Mutation Rate; Measuring Cell Concentration on a Hemocytometer; Chapter 4. Working with Bacteriophage; Introduction; Multiplicity of Infection; Probabilities and Multiplicity of Infection; Measuring Phage Titer; Diluting Bacteriophage; Measuring Burst Size
Chapter 5. Quantitation of Nucleic Acids Quantitation of Nucleic Acids by Ultraviolet Spectroscopy; Determining the Concentration of Double-Stranded DNA; Using Absorbance and an Extinction Coefficient to Calculate Double-Stranded DNA Concentration; Calculating DNA Concentration as a Millimolar (mM) Amount; Determining the Concentration of Single-Stranded DNA Molecules; Oligonucleotide Quantitation; Measuring RNA Concentration; Molecular Weight, Molarity, and Nucleic Acid Length; Estimating DNA Concentration on an Ethidium Bromide-Stained Gel
Chapter 6. Labeling Nucleic Acids with Radioisotopes Introduction; Using Radioactivity: The Curie; Estimating Plasmid Copy Number; Labeling DNA by Nick Translation; Random Primer Labeling of DNA; Labeling 3' Termini with Terminal Transferase; cDNA Synthesis; Homopolymeric Tailing; In Vitro Transcription; Chapter 7. Oligonucleotide Synthesis; Introduction; Synthesis Yield; Measuring Stepwise and Overall Yield by the DMT Cation Assay; Overall Yield; Stepwise Yield; Calculating Micromoles of Nucleoside Added at Each Base Addition Step; Chapter 8. The Polymerase Chain Reaction; Introduction
Template and Amplification
Record Nr. UNINA-9910784562903321
Stephenson Frank Harold  
Amsterdam ; ; Boston, : Academic Press, c2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Calculations in molecular biology and biotechnology : a guide to mathematics in the laboratory / / Frank H. Stephenson
Calculations in molecular biology and biotechnology : a guide to mathematics in the laboratory / / Frank H. Stephenson
Autore Stephenson Frank H
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam ; ; Boston, : Academic Press, c2003
Descrizione fisica 1 online resource (319 p.)
Disciplina 572.8/01/51
Soggetto topico Molecular biology - Computer simulation
Molecular biology - Mathematics
Biotechnology
ISBN 1-281-02727-8
9786611027278
0-08-050061-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Calculations in Molecular Biology and Biotechnology; Copyright Page; Contents; Foreword; Chapter 1. Scientific Notation and Metric Prefixes; Introduction; Significant Digits; Rounding Off Significant Digits in Calculations; Exponents and Scientific Notation; Expressing Numbers in Scientific Notation; Converting Numbers from Scientific Notation to Decimal Notation; Adding and Subtracting Numbers Written in Scientific Notation; Multiplying and Dividing Numbers Written in Scientific Notation; Metric Prefixes; Conversion Factors and Canceling Terms
Chapter 2. Solutions Mixtures and Media Introduction; Calculating Dilutions: A General Approach; Concentrations by a Factor of X; Preparing Percent Solutions; Diluting Percent Solutions; Moles and Molecular Weight: Definitions; Molarity; Diluting Molar Solutions; Converting Molarity to Percent; Converting Percent to Molarity; Normality; PH; pKa and the Henderson-Hasselbalch Equation; Chapter 3. Cell Growth; The Bacterial Growth Curve; Manipulating Cell Concentration; Plotting OD550 vs. Time on a Linear Graph; Plotting the Logarithm of OD550 vs. Time on a Linear Graph
Plotting the Log of Cell Concentration vs. Time Calculating Generation Time; Plotting Cell Growth Data on a Semilog Graph; Determining Generation Time Directly from a Semilog Plot of Cell Concentration vs. Time; Plotting Cell Density versus OD550 on a Semilog Graph; The Fluctuation Test; Fluctuation Test Example; Variance; Measuring Mutation Rate; Measuring Cell Concentration on a Hemocytometer; Chapter 4. Working with Bacteriophage; Introduction; Multiplicity of Infection; Probabilities and Multiplicity of Infection; Measuring Phage Titer; Diluting Bacteriophage; Measuring Burst Size
Chapter 5. Quantitation of Nucleic Acids Quantitation of Nucleic Acids by Ultraviolet Spectroscopy; Determining the Concentration of Double-Stranded DNA; Using Absorbance and an Extinction Coefficient to Calculate Double-Stranded DNA Concentration; Calculating DNA Concentration as a Millimolar (mM) Amount; Determining the Concentration of Single-Stranded DNA Molecules; Oligonucleotide Quantitation; Measuring RNA Concentration; Molecular Weight, Molarity, and Nucleic Acid Length; Estimating DNA Concentration on an Ethidium Bromide-Stained Gel
Chapter 6. Labeling Nucleic Acids with Radioisotopes Introduction; Using Radioactivity: The Curie; Estimating Plasmid Copy Number; Labeling DNA by Nick Translation; Random Primer Labeling of DNA; Labeling 3' Termini with Terminal Transferase; cDNA Synthesis; Homopolymeric Tailing; In Vitro Transcription; Chapter 7. Oligonucleotide Synthesis; Introduction; Synthesis Yield; Measuring Stepwise and Overall Yield by the DMT Cation Assay; Overall Yield; Stepwise Yield; Calculating Micromoles of Nucleoside Added at Each Base Addition Step; Chapter 8. The Polymerase Chain Reaction; Introduction
Template and Amplification
Record Nr. UNINA-9911094723003321
Stephenson Frank H  
Amsterdam ; ; Boston, : Academic Press, c2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Calculations in molecular biology and biotechnology : a guide to mathematics in the laboratory / / Frank H. Stephenson
Calculations in molecular biology and biotechnology : a guide to mathematics in the laboratory / / Frank H. Stephenson
Autore Stephenson Frank H
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam ; ; Boston, : Academic Press, c2003
Descrizione fisica 1 online resource (319 p.)
Disciplina 572.8/01/51
Soggetto topico Molecular biology - Computer simulation
Molecular biology - Mathematics
Biotechnology
ISBN 1-281-02727-8
9786611027278
0-08-050061-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Calculations in Molecular Biology and Biotechnology; Copyright Page; Contents; Foreword; Chapter 1. Scientific Notation and Metric Prefixes; Introduction; Significant Digits; Rounding Off Significant Digits in Calculations; Exponents and Scientific Notation; Expressing Numbers in Scientific Notation; Converting Numbers from Scientific Notation to Decimal Notation; Adding and Subtracting Numbers Written in Scientific Notation; Multiplying and Dividing Numbers Written in Scientific Notation; Metric Prefixes; Conversion Factors and Canceling Terms
Chapter 2. Solutions Mixtures and Media Introduction; Calculating Dilutions: A General Approach; Concentrations by a Factor of X; Preparing Percent Solutions; Diluting Percent Solutions; Moles and Molecular Weight: Definitions; Molarity; Diluting Molar Solutions; Converting Molarity to Percent; Converting Percent to Molarity; Normality; PH; pKa and the Henderson-Hasselbalch Equation; Chapter 3. Cell Growth; The Bacterial Growth Curve; Manipulating Cell Concentration; Plotting OD550 vs. Time on a Linear Graph; Plotting the Logarithm of OD550 vs. Time on a Linear Graph
Plotting the Log of Cell Concentration vs. Time Calculating Generation Time; Plotting Cell Growth Data on a Semilog Graph; Determining Generation Time Directly from a Semilog Plot of Cell Concentration vs. Time; Plotting Cell Density versus OD550 on a Semilog Graph; The Fluctuation Test; Fluctuation Test Example; Variance; Measuring Mutation Rate; Measuring Cell Concentration on a Hemocytometer; Chapter 4. Working with Bacteriophage; Introduction; Multiplicity of Infection; Probabilities and Multiplicity of Infection; Measuring Phage Titer; Diluting Bacteriophage; Measuring Burst Size
Chapter 5. Quantitation of Nucleic Acids Quantitation of Nucleic Acids by Ultraviolet Spectroscopy; Determining the Concentration of Double-Stranded DNA; Using Absorbance and an Extinction Coefficient to Calculate Double-Stranded DNA Concentration; Calculating DNA Concentration as a Millimolar (mM) Amount; Determining the Concentration of Single-Stranded DNA Molecules; Oligonucleotide Quantitation; Measuring RNA Concentration; Molecular Weight, Molarity, and Nucleic Acid Length; Estimating DNA Concentration on an Ethidium Bromide-Stained Gel
Chapter 6. Labeling Nucleic Acids with Radioisotopes Introduction; Using Radioactivity: The Curie; Estimating Plasmid Copy Number; Labeling DNA by Nick Translation; Random Primer Labeling of DNA; Labeling 3' Termini with Terminal Transferase; cDNA Synthesis; Homopolymeric Tailing; In Vitro Transcription; Chapter 7. Oligonucleotide Synthesis; Introduction; Synthesis Yield; Measuring Stepwise and Overall Yield by the DMT Cation Assay; Overall Yield; Stepwise Yield; Calculating Micromoles of Nucleoside Added at Each Base Addition Step; Chapter 8. The Polymerase Chain Reaction; Introduction
Template and Amplification
Record Nr. UNINA-9911139857603321
Stephenson Frank H  
Amsterdam ; ; Boston, : Academic Press, c2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Computational methods in molecular biology / / editors, Steven L. Salzberg, David B. Searls, Simon Kasif
Computational methods in molecular biology / / editors, Steven L. Salzberg, David B. Searls, Simon Kasif
Pubbl/distr/stampa Amsterdam ; ; New York, : Elsevier, 1998
Descrizione fisica 1 online resource (399 p.)
Disciplina 572 s
572.8/01/51
Altri autori (Persone) SalzbergSteven L. <1960->
SearlsDavid B
KasifSimon
Collana New comprehensive biochemistry
Soggetto topico Molecular biology - Mathematics
ISBN 1-281-98480-9
9786611984809
0-444-50204-1
0-08-086093-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1. Introduction and tutorial background -- 2. Learning and pattern discovery in sequence databases -- 3. Protein structure modeling and prediction -- 4. Reference materials.
Record Nr. UNINA-9911007368903321
Amsterdam ; ; New York, : Elsevier, 1998
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Fractals in molecular biophysics
Fractals in molecular biophysics
Autore Dewey Thomas Gregory <1952->
Edizione [First edition.]
Pubbl/distr/stampa New York ; , : Oxford University Press, , 2023
Descrizione fisica 1 online resource (289 pages)
Disciplina 574.8/8/0151474
Collana Topics in physical chemistry
Oxford scholarship online
Soggetto topico Molecular biology - Mathematics
Science
ISBN 0-19-770404-2
1-280-52698-X
9786610526987
0-19-535918-6
1-4294-0424-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents; 1 What Are Fractals?; 2 Fractal Aspects of Protein Structure; 3 Loops, Polymer Statistics, and Helix-Coil Transitions; 4 The Multifractality of Biomacromolecules; 5 Fractal Diffusion and Chemical Kinetics; 6 Are Protein Dynamics Fractal?; 7 Fractons and Vibrational Relaxation in Proteins; 8 Encoded Walks and Correlations in Sequence Data; 9 Percolation; 10 Chaos in Biochemical Systems; Index
Record Nr. UNINA-9911096670603321
Dewey Thomas Gregory <1952->  
New York ; , : Oxford University Press, , 2023
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Fractals in molecular biophysics
Fractals in molecular biophysics
Autore Dewey Thomas Gregory <1952->
Edizione [First edition.]
Pubbl/distr/stampa New York ; , : Oxford University Press, , 2023
Descrizione fisica 1 online resource (289 pages)
Disciplina 574.8/8/0151474
Collana Topics in physical chemistry
Oxford scholarship online
Soggetto topico Molecular biology - Mathematics
Science
ISBN 0-19-770404-2
1-280-52698-X
9786610526987
0-19-535918-6
1-4294-0424-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents; 1 What Are Fractals?; 2 Fractal Aspects of Protein Structure; 3 Loops, Polymer Statistics, and Helix-Coil Transitions; 4 The Multifractality of Biomacromolecules; 5 Fractal Diffusion and Chemical Kinetics; 6 Are Protein Dynamics Fractal?; 7 Fractons and Vibrational Relaxation in Proteins; 8 Encoded Walks and Correlations in Sequence Data; 9 Percolation; 10 Chaos in Biochemical Systems; Index
Record Nr. UNINA-9911139773503321
Dewey Thomas Gregory <1952->
New York ; , : Oxford University Press, , 2023
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Journal of computational biology
Journal of computational biology
Pubbl/distr/stampa [Larchmont, NY], : Mary Ann Liebert, Inc
Descrizione fisica 1 online resource
Disciplina 574
Soggetto topico Molecular biology - Mathematics
Molecular biology - Statistical methods
Computer Simulation
Information Systems
Medical Informatics Computing
Molecular Biology
Biologie moléculaire - Mathématiques
Soggetto genere / forma Periodical
Periodicals.
ISSN 1557-8666
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Record Nr. UNINA-9910137790403321
[Larchmont, NY], : Mary Ann Liebert, Inc
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Pooling designs and nonadaptive group testing [[electronic resource] ] : important tools for DNA sequencing / / Ding-Zhu Du, Frank K. Hwang
Pooling designs and nonadaptive group testing [[electronic resource] ] : important tools for DNA sequencing / / Ding-Zhu Du, Frank K. Hwang
Autore Du Dingzhu
Pubbl/distr/stampa New Jersey, : World Scientific, c2006
Descrizione fisica 1 online resource (248 p.)
Disciplina 572.8/633
Altri autori (Persone) HwangFrank
Collana Series on applied mathematics
Soggetto topico Molecular biology - Mathematics
Nucleotide sequence - Mathematics
Combinatorial group theory
Soggetto genere / forma Electronic books.
ISBN 1-281-92478-4
9786611924782
981-277-346-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents ; Preface ; Chapter 1 Introduction ; 1.1 Group Testing ; 1.2 Nonadaptive Group Testing ; 1.3 Applications in Molecular Biology ; 1.4 Pooling Designs for Two Simple Applications ; 1.5 Pooling Designs and Mathematics ; 1.6 An Outline of the Book ; References
Chapter 2 Basic Theory on Separating Matrices 2.1 d-Separable and d-Separable Matrices ; 2.2 d-Disjunct Matrices ; 2.3 The Minimum Number of Pools for Given d and n ; 2.4 Combinatorial Bounds for d-Disjunct Matrices with Constant Weight ; 2.5 Asymptotic Lower and Upper Bounds
2.6 (d r)-Disjunct Matrices 2.7 Error-Tolerance ; References ; Chapter 3 Deterministic Designs ; 3.1 t-Designs and t-Packing ; 3.2 Direct Construction ; 3.3 Explicit Construction of Selectors ; 3.4 Grid Designs ; 3.5 Error-Correcting Code ; 3.6 Transversal Designs
3.7 The d = 2 Case References ; Chapter 4 Deterministic Designs from Partial Orders ; 4.1 Subset Containment Designs ; 4.2 Partial Order of Faces in a Simplicial Complex ; 4.3 Monotone Graph Properties ; 4.4 Partial Order of Linear Spaces over a Finite Field ; 4.5 Atomic Poset
References Chapter 5 Random Pooling Designs and Probabilistic Analysis ; 5.1 Introduction to Random Designs ; 5.2 A General Approach to Compute Probabilities of Unresolved Clones ; 5.3 Random Incidence Designs ; 5.4 Random k-Set Designs ; 5.5 Random r-Size Designs
5.6 Random Distinct k-Set Designs
Record Nr. UNINA-9910451174503321
Du Dingzhu  
New Jersey, : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Pooling designs and nonadaptive group testing [[electronic resource] ] : important tools for DNA sequencing / / Ding-Zhu Du, Frank K. Hwang
Pooling designs and nonadaptive group testing [[electronic resource] ] : important tools for DNA sequencing / / Ding-Zhu Du, Frank K. Hwang
Autore Du Dingzhu
Pubbl/distr/stampa New Jersey, : World Scientific, c2006
Descrizione fisica 1 online resource (248 p.)
Disciplina 572.8/633
Altri autori (Persone) HwangFrank
Collana Series on applied mathematics
Soggetto topico Molecular biology - Mathematics
Nucleotide sequence - Mathematics
Combinatorial group theory
ISBN 1-281-92478-4
9786611924782
981-277-346-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Contents ; Preface ; Chapter 1 Introduction ; 1.1 Group Testing ; 1.2 Nonadaptive Group Testing ; 1.3 Applications in Molecular Biology ; 1.4 Pooling Designs for Two Simple Applications ; 1.5 Pooling Designs and Mathematics ; 1.6 An Outline of the Book ; References
Chapter 2 Basic Theory on Separating Matrices 2.1 d-Separable and d-Separable Matrices ; 2.2 d-Disjunct Matrices ; 2.3 The Minimum Number of Pools for Given d and n ; 2.4 Combinatorial Bounds for d-Disjunct Matrices with Constant Weight ; 2.5 Asymptotic Lower and Upper Bounds
2.6 (d r)-Disjunct Matrices 2.7 Error-Tolerance ; References ; Chapter 3 Deterministic Designs ; 3.1 t-Designs and t-Packing ; 3.2 Direct Construction ; 3.3 Explicit Construction of Selectors ; 3.4 Grid Designs ; 3.5 Error-Correcting Code ; 3.6 Transversal Designs
3.7 The d = 2 Case References ; Chapter 4 Deterministic Designs from Partial Orders ; 4.1 Subset Containment Designs ; 4.2 Partial Order of Faces in a Simplicial Complex ; 4.3 Monotone Graph Properties ; 4.4 Partial Order of Linear Spaces over a Finite Field ; 4.5 Atomic Poset
References Chapter 5 Random Pooling Designs and Probabilistic Analysis ; 5.1 Introduction to Random Designs ; 5.2 A General Approach to Compute Probabilities of Unresolved Clones ; 5.3 Random Incidence Designs ; 5.4 Random k-Set Designs ; 5.5 Random r-Size Designs
5.6 Random Distinct k-Set Designs
Record Nr. UNINA-9910777010603321
Du Dingzhu  
New Jersey, : World Scientific, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui