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Mathematical Models for Dental Materials Research / by Alex Fok, Hooi Pin Chew

By: Fok, Alex, autor
Contributor(s): Chew, Hooi Pin, autor | SpringerLink (Online service)
Material type: materialTypeLabelE-bookSeries: (Biomedical and Life Sciences (Springer-11642)).Publisher: Cham, Switzerland : Springer International Publishing, 2020Edition: First edition 2020.Description: 1 recurso en línea (XIV, 77 páginas) : 41 ilustraciones, 40 ilustraciones a color.ISBN: 9783030378493.Subject: Materiales dentales | Modelos matemáticosOnline resources: Click here to access onlineDigital Resources
Contents:
Chapter 1 - Systematic Errors in Longitudinal Measurements -- Chapter 2 - Endodontic Treatment and Vertical Root Fracture -- Chapter 3 - Debonding of Resin Composite Restorations -- Chapter 4 - Attenuation of Curing Light through Resin Composite Restorations -- Chapter 5 - Release of Ions or Molecules from Dental Restorations -- Chapter 6 - Heat Generated from Dental Resin Composites during Curing -- Chapter 7 - Mechanical Failure of Dental Restorations - The Weakest-Link Theory -- Chapter 8 - Stability of Dental Implants -- Chapter 9 - Kinetics of Photo-polymerization -- Index.
Abstract: This book presents a mechanistic approach-mathematical modeling-for carrying out dental materials research. This approach allows researchers to go beyond the null hypothesis and obtain a solution that is more general and therefore predictive for conditions other than those considered in a study. Hence it can be used either on its own or to complement the commonly used statistical approach. Through a series of practical problems with wide-ranging application, the reader will be guided on: How to construct a mathematical model for the behavior of dental materials by making informed assumptions of the physical, chemical, or mechanical situation How to simplify the model by making suitable simplifications How to calibrate the model by calculating the values of key parameters using experimental results How to refine the model when there are discrepancies between predictions and experiments Only elementary calculus is required to follow the examples and all the problems can be solved by using MS Excel© spreadsheets. This is an ideal book for dental materials researchers without a strong mathematical background who are interested in applying a more mechanistic approach to their research to give deeper insight into the problem at hand. Advance praise for Mathematical Models for Dental Materials Research: "This is a nice addition for research students on how to conduct their work and how to manage data analysis. It brings together a number of important aspects of dental materials investigations which has been missing in the literature. The practical examples make it much easier to understand." - Michael F. Burrow, Clinical Professor in Prosthodontics, The University of Hong Kong "The great strengths of this volume are the real world examples of dental materials research in the successive chapters. In turn, this is an outcome of the outstanding expertise of both authors. I warmly recommend this book to the dental biomaterials community worldwide." - David C. Watts, Professor of Biomaterials Science, University of Manchester, UK.
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Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud RK652.5 2020 EB (Browse shelf(Opens below)) Acceso electrónico eBook.21042114
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Chapter 1 - Systematic Errors in Longitudinal Measurements -- Chapter 2 - Endodontic Treatment and Vertical Root Fracture -- Chapter 3 - Debonding of Resin Composite Restorations -- Chapter 4 - Attenuation of Curing Light through Resin Composite Restorations -- Chapter 5 - Release of Ions or Molecules from Dental Restorations -- Chapter 6 - Heat Generated from Dental Resin Composites during Curing -- Chapter 7 - Mechanical Failure of Dental Restorations - The Weakest-Link Theory -- Chapter 8 - Stability of Dental Implants -- Chapter 9 - Kinetics of Photo-polymerization -- Index.

This book presents a mechanistic approach-mathematical modeling-for carrying out dental materials research. This approach allows researchers to go beyond the null hypothesis and obtain a solution that is more general and therefore predictive for conditions other than those considered in a study. Hence it can be used either on its own or to complement the commonly used statistical approach. Through a series of practical problems with wide-ranging application, the reader will be guided on: How to construct a mathematical model for the behavior of dental materials by making informed assumptions of the physical, chemical, or mechanical situation How to simplify the model by making suitable simplifications How to calibrate the model by calculating the values of key parameters using experimental results How to refine the model when there are discrepancies between predictions and experiments Only elementary calculus is required to follow the examples and all the problems can be solved by using MS Excel© spreadsheets. This is an ideal book for dental materials researchers without a strong mathematical background who are interested in applying a more mechanistic approach to their research to give deeper insight into the problem at hand. Advance praise for Mathematical Models for Dental Materials Research: "This is a nice addition for research students on how to conduct their work and how to manage data analysis. It brings together a number of important aspects of dental materials investigations which has been missing in the literature. The practical examples make it much easier to understand." - Michael F. Burrow, Clinical Professor in Prosthodontics, The University of Hong Kong "The great strengths of this volume are the real world examples of dental materials research in the successive chapters. In turn, this is an outcome of the outstanding expertise of both authors. I warmly recommend this book to the dental biomaterials community worldwide." - David C. Watts, Professor of Biomaterials Science, University of Manchester, UK.

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