Subjects in the monograph “Biophysics of the Failing Heart” include state of the art chapters considering major biophysical mechanisms... Læs mere
Commingled and Disarticulated Human Remains
Topics are developed to provide a rudimentary understanding of how plant-environment interactions span multiple spatiotemporal scales, and how this rudimentary knowledge can... Læs mere
Optimal Learning Environments to Promote Student Engagement analyzes the psychological, social, and academic phenomena comprising engagement, framing it as critical to learning and development.
This volume highlights advances in the development of effective modeling and solution approaches to enhance the performance of humanitarian relief logistics. It covers preparedness, post-disaster response and supporting technologies in information systems.
Applied Predictive Modeling covers the overall predictive modeling process, beginning with the crucial steps of data preprocessing, data splitting and foundations of model tuning.
These contributions, written by the foremost international researchers and practitioners of Genetic Programming (GP), explore the synergy between theoretical and empirical results on real-world problems, producing a comprehensive view of the state of the art in GP.
This handbook assembles current findings on assessment methods and applies them to common complicating factors, including comorbid personality and behavioral problems. It provides a how-to guide for dealing with common issues that may complicate assessment.
Although several online karyotyping (chromosome identification) programs have become available, they are not meaningful for studying the dynamics of the chromosome system, nor do they help students understand genetics as a discipline.
Solid Mechanics: A Variational Approach, Augmented Edition presents a lucid and thoroughly developed approach to solid mechanics for students engaged in the study of elastic structures not seen in other texts currently on the market.
In its revised and expanded second edition, this book examines the theoretical aspects of small strain theory of elastoplasticity with hardening assumptions, offering a comprehensive and unified treatment of mathematical theory and numerical analysis.
In this book, leading authorities actively involved in this field provide state-of-the-art knowledge of the basic biology, translational requirements and latest clinical experience with Mesenchymal Stromal Cell (MSC) biology.