## Determination of the Particle Size Distribution in Polymer Latex Using Quasielastic Light Scattering and Dielectric Spectroscopy, Volume 1 |

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### Contents

List of Figures | x |

List of Tables | xvi |

Acknowledgements | xx |

Copyright | |

7 other sections not shown

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### Common terms and phrases

algorithm apparent particle autocorrelation function average diameter B. F. Goodrich B. F. Goodrich sample bimodal distribution bimodal mixture calculated centrifuge Chem chosen solution Colloid constrained least squares Constrained Regularization Results Constrained regularization solution correlation sample Delta Function Distribution density diameter particles Dielectric permittivity Dielectric Spectroscopy diffusion coefficient distribution B3 distribution of particle distribution structure dust term emulsion polymerization equation experimental data exponential sampling Gulari histogram method histogram step individual peak intensity distribution intensity scattered large particles latex latex mixture linear least squares Macromolecules mass distribution measurement multimodal distribution noise added non-negative least squares non-negatively constrained least objective function oooooooooo parameters particle diameter particle size distribution peak area Pearson distribution Phvs polydispersity polymer polymer latex Provencher quasielastic light scattering ratio refractive index rH rH scattering angle scattering factor sensitive simulated data standard deviation subdistribution method Table technique theory turbidity unimodal values variance wavelength