A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences

This book PDF is perfect for those who love Technology & Engineering genre, written by Riccardo Sacco and published by Academic Press which was released on 18 July 2019 with total hardcover pages 854. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences books below.

A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences
Author : Riccardo Sacco
File Size : 50,5 Mb
Publisher : Academic Press
Language : English
Release Date : 18 July 2019
ISBN : 9780128125199
Pages : 854 pages
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A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences by Riccardo Sacco Book PDF Summary

A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences provides a systematic methodology to the formulation of problems in biomedical engineering and the life sciences through the adoption of mathematical models based on physical principles, such as the conservation of mass, electric charge, momentum, and energy. It then teaches how to translate the mathematical formulation into a numerical algorithm that is implementable on a computer. The book employs computational models as synthesized tools for the investigation, quantification, verification, and comparison of different conjectures or scenarios of the behavior of a given compartment of the human body under physiological and pathological conditions. Presents theoretical (modeling), biological (experimental), and computational (simulation) perspectives Features examples, exercises, and MATLAB codes for further reader involvement Covers basic and advanced functional and computational techniques throughout the book

A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences

A Comprehensive Physically Based Approach to Modeling in Bioengineering and Life Sciences provides a systematic methodology to the formulation of problems in biomedical engineering and the life sciences through the adoption of mathematical models based on physical principles, such as the conservation of mass, electric charge, momentum, and energy. It

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