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1

Vakulenko, Sergey. Complexity and evolution of dissipative systems: An analytical approach. Berlin: Walter de Gruyter, 2014.

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2

1976-, Nersesov Sergey G., ed. Stability and control of large-scale dynamical systems: A vector dissipative systems approach. Princeton, N.J: Princeton University Press, 2011.

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3

Rakotomanana, L. R. A Geometric Approach to Thermomechanics of Dissipating Continua. Boston, MA: Birkhäuser Boston, 2004. http://dx.doi.org/10.1007/978-0-8176-8132-6.

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4

Rakotomanana, L. R. A Geometric Approach to Thermomechanics of Dissipating Continua. Boston, MA: Birkhäuser Boston, 2004.

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5

Center, Langley Research, ed. Preprocessing for eddy dissipation rate and TKE profile generation. Hampton, Va: National Aeronautics and Science Administration, Langley Research Center, 2001.

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6

Chen, Hsing-Ta. Delving Into Dissipative Quantum Dynamics: From Approximate to Numerically Exact Approaches. [New York, N.Y.?]: [publisher not identified], 2016.

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7

Vakulenko, Sergey. Complexity and Evolution of Dissipative Systems: An Analytical Approach. De Gruyter, Inc., 2013.

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8

Vakulenko, Sergey. Complexity and Evolution of Dissipative Systems: An Analytical Approach. de Gruyter GmbH, Walter, 2013.

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9

Nersesov, Sergey G. y Wassim M. Haddad. Stability and Control of Large-Scale Dynamical Systems: A Vector Dissipative Systems Approach. Princeton University Press, 2011.

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10

Nersesov, Sergey G. y Wassim M. Haddad. Stability and Control of Large-Scale Dynamical Systems: A Vector Dissipative Systems Approach. Princeton University Press, 2011.

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11

Allen, Michael P. y Dominic J. Tildesley. Mesoscale methods. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198803195.003.0012.

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Coarse-graining is an increasingly commonplace approach to study, as economically as possible, large-scale, and long-time phenomena. This chapter covers the main methods. Brownian and Langevin dynamics are introduced, with practical details of the solution of the modified equations of motion. Several techniques which aim to bridge the gap to the hydrodynamic regime are described: these include dissipative particle dynamics, multiparticle collision dynamics, and the lattice Boltzmann method. Several examples of program code are provided. In the last part of the chapter, the derivation of a coarse-grained potential from an atomistic one is considered using force-matching and structure-matching, and the limitations of these approaches are discussed.
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12

Rakotomanana, Lalao. A Geometric Approach to Thermomechanics of Dissipating Continua. Birkhäuser, 2012.

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13

Strevens, Michael. Complexity Theory. Editado por Paul Humphreys. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199368815.013.35.

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Complexity theory attempts to explain, at the most general possible level, the interesting features of complex systems. Two such features are the emergence of simple or stable behavior of the whole from relatively complex or unpredictable behavior of the parts and the emergence of sophisticated behavior of the whole from relatively simplistic behavior of the parts. Often, both kinds of emergence are found nested in the same system. Concerning the emergence of simplicity, this essay examines Herbert Simon’s explanation from near-decomposability and a stochastic explanation that generalizes the approach of statistical physics. A more general notion of an abstract difference-making structure is introduced with examples, and a discussion of evolvability follows. Concerning the emergence of sophistication, this chapter focuses on, first, the energetics approach associated with dissipative structures and the “fourth law of thermodynamics” and, second, the notion of a “complex adaptive system.”
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14

Beris, Antony N. y Brian J. Edwards. Thermodynamics of Flowing Systems: with Internal Microstructure. Oxford University Press, 1994. http://dx.doi.org/10.1093/oso/9780195076943.001.0001.

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This much-needed monograph presents a systematic, step-by-step approach to the continuum modeling of flow phenomena exhibited within materials endowed with a complex internal microstructure, such as polymers and liquid crystals. By combining the principles of Hamiltonian mechanics with those of irreversible thermodynamics, Antony N. Beris and Brian J. Edwards, renowned authorities on the subject, expertly describe the complex interplay between conservative and dissipative processes. Throughout the book, the authors emphasize the evaluation of the free energy--largely based on ideas from statistical mechanics--and how to fit the values of the phenomenological parameters against those of microscopic models. With Thermodynamics of Flowing Systems in hand, mathematicians, engineers, and physicists involved with the theoretical study of flow behavior in structurally complex media now have a superb, self-contained theoretical framework on which to base their modeling efforts.
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15

A Geometric Approach to Thermomechanics of Dissipating Continua (Progress in Mathematical Physics). Birkhäuser Boston, 2003.

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16

A Geometric Approach to Thermomechanics of Dissipating Continua (Progress in Mathematical Physics). Birkhauser, 2003.

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17

Steinmann, Paul. Spatial and Material Vistas on Non-Linear Continuum Mechanics: A Dissipation-Consistent Approach. Springer International Publishing AG, 2021.

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18

Zwicknagel, Günter, Institute Radiophysics y Christian Toepffer. Interactions Between Charged Particles in a Magnetic Field: A Theoretical Approach to Ion Stopping in Magnetized Plasmas. Springer London, Limited, 2007.

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19

Zwicknagel, Günter, Institute Radiophysics y Christian Toepffer. Interactions Between Charged Particles in a Magnetic Field: A Theoretical Approach to Ion Stopping in Magnetized Plasmas. Springer, 2014.

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20

Pikaar, Ilje, Jeremy Guest, Ramon Ganigué, Paul Jensen, Korneel Rabaey, Thomas Seviour, John Trimmer, Olaf van der Kolk, Céline Vaneeckhaute y Willy Verstraete, eds. Resource Recovery from Water. IWA Publishing, 2022. http://dx.doi.org/10.2166/9781780409566.

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Abstract Throughout history, the first and foremost role of urban water management has been the protection of human health and the local aquatic environment. To this end, the practice of (waste-)water treatment has maintained a central focus on the removal of pollutants through dissipative pathways. Approaches like – in the case of wastewater treatment – the activated sludge process, which makes ‘hazardous things’ disappear, have benefitted our society tremendously by safeguarding human and environmental health. While conventional (waste-)water treatment is regarded as one of the greatest engineering achievements of the 20th century, these dissipative approaches will not suffice in the 21st century as we enter the era of the circular economy. A key challenge for the future of urban water management is the need to re-envision the role of water infrastructure, still holding paramount the safeguard of human and environmental health while also becoming a more proactive force for sustainable development through the recovery of resources embedded in urban water. This book aims (i) to explain the basic principles governing resource recovery from water (how much is there, really); (ii) to provide a comprehensive overview and critical assessment of the established and emerging technologies for resource recovery from water; and (iii) to put resource recovery from water in a legal, economic (including the economy of scale of recovered products), social (consumer's point of view), and environmental sustainability framework. This book serves as a powerful teaching tool at the graduate entry master level with an aim to help develop the next generation of engineers and experts and is also highly relevant for seasoned water professionals and practicing engineers. ISBN: 9781789060317 (Paperback) ISBN: 9781780409566 (eBook)
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21

Interactions Between Charged Particles in a Magnetic Field: A Theoretical Approach to Ion Stopping in Magnetized Plasmas. Springer, 2007.

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22

Size matters: measuring the effects of inequality and growth shocks. UNU-WIDER, 2020. http://dx.doi.org/10.35188/unu-wider/2020/934-1.

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Understanding the relationship between income inequality and economic growth is of utmost importance to economists and social scientists. In this paper we use a Bayesian structural vector autoregression approach to estimate the relationship between inequality and growth via growth and inequality shocks for two large economies, China and the USA, for the years 1979–2018. We find that a growth shock is inequality-increasing, and an inequality shock is growth-reducing. We also find, however, that the sizes of the effects of these shocks are very small, accounting for under 2 per cent of the variance for both countries. Finally, we also find that the effects of the shocks dissipate within ten years, suggesting that the effects of these shocks are a short-term phenomenon.
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23

Batterman, Robert W. A Middle Way. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780197568613.001.0001.

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This book focuses on a method for exploring, explaining, and understanding the behavior of large many-body systems. It describes an approach to non-equilibrium behavior that focuses on structures (represented by correlation functions) that characterize mesoscale properties of the systems. In other words, rather than a fully bottom-up approach, starting with the components at the atomic or molecular scale, the “hydrodynamic approach” aims to describe and account for continuum behaviors by largely ignoring details at the “fundamental” level. This methodological approach has its origins in Einstein’s work on Brownian motion. He gave what may be the first instance of “upscaling” to determine an effective (continuum) value for a material parameter—the viscosity. His method is of a kind with much work in the science of materials. This connection and the wide-ranging interdisciplinary nature of these methods are stressed. Einstein also provided the first expression of a fundamental theorem of statistical mechanics called the Fluctuation-Dissipation theorem. This theorem provides the primary justification for the hydrodynamic, mesoscale methodology. Philosophical consequences include an argument to the effect that mesoscale parameters can be the natural variables for characterizing many-body systems. Further, the book offers a new argument for why continuum theories (fluid mechanics and equations for the bending of beams) are still justified despite completely ignoring the fact that fluids and materials have lower scale structure. The book argues for a middle way between continuum theories and atomic theories. A proper understanding of those connections can be had when mesoscales are taken seriously.
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24

Lynch, David K., Kenneth Sassen, David O'C Starr y Graeme Stephens, eds. Cirrus. Oxford University Press, 2002. http://dx.doi.org/10.1093/oso/9780195130720.001.0001.

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Cirrus clouds are high, thin, tropospheric clouds composed predominately of ice. In the last ten years, considerable work has shown that cirrus is widespread--more common than previously believed--and has a significant impact on climate and global change. As the next generation weather satellites are being designed, the impact of cirrus on remote sensing and the global energy budget must be recognized and accommodated. This book, the first to be devoted entirely to cirrus clouds, captures the state of knowledge of cirrus and serves as a practical handbook as well. Each chapter is based on an invited review talk presented at Cirrus, a meeting hosted by the Optical Society of America and co-sponsored by the American Geophysical Union and the American Meteorological Society. All aspects of cirrus clouds are covered, an approach that reaches into diverse fields. Topics include: the definition of cirrus, cirrus climatologies, nucleation, evolution and dissipation, mixed-phase thermodynamics, crystallinity, orientation mechanisms, dynamics, scattering, radiative transfer, in situ sampling, processes that produce or influence cirrus (and vice versa), contrails, and the influence of cirrus on climate.
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25

Hopkins, Ramona O. y James C. Jackson. Neurocognitive impairment after critical illness. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199600830.003.0382.

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More than 5 million individuals are admitted to intensive care units (ICUs) in North America annually. Due to improvements in treatment, increasing numbers of these individuals survive and go on to develop long-term neurocognitive impairment in a variety of cognitive domains. As evidence from over two dozen studies demonstrates, neurocognitive impairment occurs in up to two-thirds of individuals. While it may be particularly common in those with pre-existing vulnerabilities, even patients who are young with robust health prior to critical illness are at risk of post-ICU neurocognitive impairment. While neurocognitive impairment may improve over time and even dissipate in a subset of ICU survivors, neurocognitive impairment is often permanent and, in some cases may be progressive. As commonly occurs in the context of acquired brain injury, the neurocognitive impairment observed after critical illness is typically diffuse, although domains including memory, attention, and executive functioning are often particularly impaired. This impairment is sufficiently severe to negatively impact daily functioning. Although the risk factors and mechanisms undergirding neurocognitive impairment have yet to be fully elucidated, potential contributors include inflammation, hypoxia, and delirium. While one way to impact on the prevalence and incidence of cognitive impairment after critical illness is to attempt to modify key ‘in-hospital’ risk factors, another approach involves the use of post-ICU cognitive rehabilitation, which is increasingly being successfully employed with other impaired medical populations.
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