Ebook: Response Surfaces, Mixtures, and Ridge Analyses, Second Edition
- Series: Wiley Series in Probability and Statistics
- Language: English
- pdf
Content:
Chapter 1 Introduction to Response Surface Methodology (pages 1–16):
Chapter 2 The Use Of Graduating Functions (pages 17–28):
Chapter 3 Least Squares for Response Surface Work (pages 29–91):
Chapter 4 Factorial Designs at Two Levels (pages 92–128):
Chapter 5 Blocking and Fractionating 2k Factorial Designs (pages 129–186):
Chapter 6 The Use of Steepest Ascent to Achieve Process Improvement (pages 187–209):
Chapter 7 Fitting Second?Order Models (pages 211–270):
Chapter 8 Adequacy of Estimation and the Use of Transformation (pages 271–302):
Chapter 9 Exploration of Maxima and Ridge Systems with Second?Order Response Surfaces (pages 303–319):
Chapter 10 Occurrence and Elucidation of Ridge Systems, I (pages 321–340):
Chapter 11 Occurrence and Elucidation of Ridge Systems, II (pages 341–389):
Chapter 12 Ridge Analysis for Examining Second?Order Fitted Models, Unrestricted Case (pages 391–412):
Chapter 13 Design Aspects of Variance, Bias, and Lack of Fit (pages 413–459):
Chapter 14 Variance?Optimal Designs (pages 461–481):
Chapter 15 Practical Choice of a Response Surface Design (pages 483–508):
Chapter 16 Response Surfaces for Mixture Ingredients (pages 509–533):
Chapter 17 Mixture Experiments in Restricted Regions (pages 535–551):
Chapter 18 Other Mixture Methods and Topics (pages 553–593):
Chapter 19 Ridge Analysis for Examining Second?Order Fitted Models When There Are Linear Restrictions on the Experimental Region (pages 595–617):
Chapter 20 Canonical Reduction of Second?Order Fitted Models Subject to Linear Restrictions (pages 619–628):
Chapter 1 Introduction to Response Surface Methodology (pages 1–16):
Chapter 2 The Use Of Graduating Functions (pages 17–28):
Chapter 3 Least Squares for Response Surface Work (pages 29–91):
Chapter 4 Factorial Designs at Two Levels (pages 92–128):
Chapter 5 Blocking and Fractionating 2k Factorial Designs (pages 129–186):
Chapter 6 The Use of Steepest Ascent to Achieve Process Improvement (pages 187–209):
Chapter 7 Fitting Second?Order Models (pages 211–270):
Chapter 8 Adequacy of Estimation and the Use of Transformation (pages 271–302):
Chapter 9 Exploration of Maxima and Ridge Systems with Second?Order Response Surfaces (pages 303–319):
Chapter 10 Occurrence and Elucidation of Ridge Systems, I (pages 321–340):
Chapter 11 Occurrence and Elucidation of Ridge Systems, II (pages 341–389):
Chapter 12 Ridge Analysis for Examining Second?Order Fitted Models, Unrestricted Case (pages 391–412):
Chapter 13 Design Aspects of Variance, Bias, and Lack of Fit (pages 413–459):
Chapter 14 Variance?Optimal Designs (pages 461–481):
Chapter 15 Practical Choice of a Response Surface Design (pages 483–508):
Chapter 16 Response Surfaces for Mixture Ingredients (pages 509–533):
Chapter 17 Mixture Experiments in Restricted Regions (pages 535–551):
Chapter 18 Other Mixture Methods and Topics (pages 553–593):
Chapter 19 Ridge Analysis for Examining Second?Order Fitted Models When There Are Linear Restrictions on the Experimental Region (pages 595–617):
Chapter 20 Canonical Reduction of Second?Order Fitted Models Subject to Linear Restrictions (pages 619–628):
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