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George W. Cobb Introduction à la conception et à l'analyse d'expériences LIVRE NEUF

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Caractéristiques de l'objet

État
Entièrement neuf: Un livre neuf, non lu, non utilisé et en parfait état, sans aucune page manquante ...
Artist
George W. Cobb
Author
George W. Cobb
EAN
9780470412169
Format
Trade Paperback
ISBN
9780470412169
Language
English
Release Year
2008-09-12
Book Title
Introduction To Design And Analysis Of Experiments
Type
Textbook
Subject Area
Science, Mathematics
Publication Name
Introduction to Design and Analysis of Experiments
Publisher
Wiley & Sons, Incorporated, John
Item Length
9.5 in
Subject
Probability & Statistics / General, General, Research & Methodology
Publication Year
2008
Item Height
1.2 in
Item Weight
41.7 Oz
Item Width
6.9 in
Number of Pages
832 Pages

À propos de ce produit

Product Information

Introduction to Design and Analysis of Experiments explains how to choose sound and suitable design structures and engages students in understanding the interpretive and constructive natures of data analysis and experimental design. Cobb's approach allows students to build a deep understanding of statistical concepts over time as they analyze and design experiments. The field of statistics is presented as a matrix, rather than a hierarchy, of related concepts. Developed over years of classroom use, this text can be used as an introduction to statistics emphasizing experimental design or as an elementary graduate survey course. Widely praised for its exceptional range of intelligent and creative exercises, and for its large number of examples and data sets, Introduction to Design and Analysis of Experiments--now offered in a convenient paperback format--helps students increase their understanding of the material as they come to see the connections between diverse statistical concepts that arise from the experiments around which the text is built.

Product Identifiers

Publisher
Wiley & Sons, Incorporated, John
ISBN-10
047041216x
ISBN-13
9780470412169
eBay Product ID (ePID)
18038307513

Product Key Features

Number of Pages
832 Pages
Language
English
Publication Name
Introduction to Design and Analysis of Experiments
Publication Year
2008
Subject
Probability & Statistics / General, General, Research & Methodology
Type
Textbook
Subject Area
Science, Mathematics
Author
George W. Cobb
Format
Trade Paperback

Dimensions

Item Height
1.2 in
Item Weight
41.7 Oz
Item Length
9.5 in
Item Width
6.9 in

Additional Product Features

Intended Audience
College Audience
Dewey Edition
22
Illustrated
Yes
Dewey Decimal
001.434
Lc Classification Number
Qa279
Table of Content
To the Instructor. Sample Exam Questions. To the Student. Acknowledgments. 1. Introduction to Experimental Design. 1. The Challenge of planning a good experiment. 2. Three basic principles and four experimental designs. 3. The factor structure of the four experimental designs. 2. Informal Analysis and Checking Assumptions. 1. What analysis of variance does. 2. The six fisher assumptions. 3. Informal analysis, part 1: parallel dot graphs and choosing a scale. 4. Informal analysis, part 2: interaction graph for the log concentrations. 3. Formal Anova: Decomposing the Data and Measuring Variability, Testing Hypothesis and Estimating True Differences. 1. Decomposing the data. 2. Computing mean squares to measure average variability. 3. Standard deviation = root mean square for residuals. 4. Formal hypothesis testing: are the effects detectable? 5. Confidence intervals: the likely size of true differences. 4. Decisions About the Content of an Experiment. 1. The response. 2. Conditions. 3. Material. 5. Randomization and the Basic Factorial Design. 1. The basic factorial design ("What you do"). 2. Informal analysis. 3. Factor structure ("What you get"). 4. Decomposition and analysis of variance for one-way BF designs. 5. Using a computer [Optional]. 6. Algebraic notation for factor structure [Optional]. 6. Interaction and the Principle of Factorial Crossing. 1. Factorial crossing and the two-way basic factorial design, or BF[2]. 2. Interaction and the interaction graph. 3. Decomposition and ANOVA for the two-way design. 4. Using a computer [Optional]. 5. Algebraic notation for the two-way BF design [Optional]. 7. The Principle of Blocking. 1. Blocking and the complete block design (CB). 2. Two nuisance factors: the Latin square design(LS). 3. The split plot/repeated measures design (SP/RM). 4. Decomposition and analysis of variance. 5. Scatterplots for data sets with blocks. 6. Using a computer. [Optional]. 7. Algebraic notation for the CB, LS And SP/RM Designs. 8. Working with the Four Basic Designs. 1. Comparing and recognizing design structures. 2. Choosing a design structure: deciding about blocking. 3. Informal analysis: examples. 4. Recognizing alternative to ANOVA. 9. Extending the Basic Designs by Factorial Crossing. 1. Extending the BF design: general principles. 2. Three or more crossed factors of interest. 3. Compound within-blocks factors. 4.Graphical methods for 3-factor interactions. 5. Analysis of variance. 10. Decomposing a Data Set. 1. The basic decomposition step and the BF[1] design. 2. Decomposing data from balanced designs. 11. Comparisons, Contrasts, and Confidence Intervals. 1. Comparisons: confidence intervals and tests. 2. Adjustments for multiple comparisons. 3. Between-blocks factors and compound within-blocks factors. 4. Linear estimators and orthogonal contrasts [Optional]. 12. The Fisher Assumptions and How to Check Them. 1. Same SDs (s). 2. Independent chance errors (I). 3. The normality assumption (N). 4. Effects are additive (A) and constant (C). 5. Estimating replacement values for outliers. 13. Other Experimental Designs and Models. 1. New factor structures built by crossing and nesting. 2. New uses for old factor structures: fixed versus random effects. 3. Models with mixed interaction effects. 4. Expected mean square and f-ratios. 14. Continuous Carriers: A Visual Approach to Regression, Correlation and Analysis of Covariance. 1. Regression. 2. Balloon summaries and correlation. 3. Analysis of covariance. 15. Sampling Distributions and the Role of the Assumptions. 1. The logic of hypothesis testing. 2. Ways to think about sampling distributions. 3. Four fundamental families of distributions. 4. Sampling distributions for linear estimators. 5. Approximate sampling distributions for f-ratios. 6. Why (and when) are the models reasonable? Tables. Data Sources. Subject Index. Examples.
Copyright Date
1998

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