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Preface

机译:前言

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This book is based on scientific presentations made at the 11th Symposium on the Properties of Water (ISOPOW 11) held in Queretaro, Mexico, September 5-9, 2010. This publication received decisive and integrated support from ISOPOW Central Committee and two Mexican academic institutions: Instituto Politecnico Nacional and Tecnologico de Monterrey. A comprehensive review on novel aspects related to water stress in biological, chemical, food, and pharmaceutical systems is presented in this book. The chapters have been written by well-established authorities in their respective fields coming from research institutions and industry as well as by very promising young scientists making strides on these ever-evolving topics around the properties of water. One of the premises of this book is that a thorough update requires an in-depth knowledge of each subject under consideration where a number of disciplines are effectively integrated. This approach facilitates to appropriately formulate the latest on fundamental aspects; present the bases for innovative applications; and identify upcoming developments, as well as research and development needs. The understanding of water stresses in complex systems is a true challenge for scientists and practitioners. The mechanisms involved in the interaction of water with a number of compounds imply to follow a multi-interdisciplinary approach. The ISOPOW community is well acquainted with the challenges ahead and the approaches to be taken whenever dealing with water as part of complex systems. This implies, among others, to identify ongoing and upcoming efforts towards the use and inclusion of a diversity of intertwined disciplines, novel tools, and concepts to successfully integrate existing knowledge with potentially useful new developments.
机译:本书基于2010年9月5日至9日在墨西哥克雷塔罗举行的第11届水的特性研讨会(ISOPOW 11)上所作的科学介绍。该出版物得到了ISOPOW中央委员会和两个墨西哥学术机构的果断和综合支持。 :国家理工学院和蒙特雷技术学院。本书对生物,化学,食品和制药系统中与水分胁迫有关的新颖方面进行了全面综述。这些章节是由来自研究机构和行业的知名机构在各自领域撰写的,以及非常有前途的年轻科学家在围绕水的特性不断发展的这些主题上迈出了一大步。本书的前提之一是,要进行全面的更新,就需要对所考虑的每个主题进行深入的了解,从而有效地整合了许多学科。这种方法有助于适当地制定有关基本方面的最新资料;展示创新应用的基础;并确定未来的发展以及研发需求。对复杂系统中的水分胁迫的理解对科学家和从业者是一个真正的挑战。水与许多化合物的相互作用所涉及的机理暗示着遵循多学科方法。 ISOPOW社区非常熟悉未来面临的挑战以及在将水作为复杂系统的一部分处理时应采取的方法。这意味着,除其他外,这意味着要确定正在进行和即将进行的努力,以使用和包含各种相互交织的学科,新颖的工具和概念,以成功地将现有知识与潜在有用的新发展整合在一起。

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