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Predictive theories of phenomena involving phase change with applications in engineering are investigated in this volume, e.g. solid-liquid phase change, volume and surface damage, and phase change involving temperature discontinuities. Many other phase change phenomena such as solid-solid phase change in shape memory alloys and vapor-liquid phase change are also explored. Modeling is based on continuum thermo-mechanics. This involves a renewed principle of virtual power introducing the power of the microscopic motions responsible for phase change. This improvement yields a new equation of motion related to microscopic motions, beyond the classical equation of motion for macroscopic motions. The new theory sensibly improves the phase change modeling. For example, when warm rain falls on frozen soil, the dangerous black ice phenomenon can be comprehensively predicted. In addition, novel equations predict the evolution of clouds, which are themselves a mixture of air, liquid water and vapor.
"The media has recently been abuzz with cases of citizens around the world using digital technologies to push for social and political change: from the use of Twitter to amplify protests in Iran and Moldova to the thousands of American non-profits creating Facebook accounts in the hopes of luring supporters. These stories have been published, discussed, extolled, and derided, but have not yet been viewed holistically as a new field of human endeavor. We call this field "digital activism" and its dynamics, practices, misconceptions, and possible futures are presented together for the first time in this book."--Pub. desc.
'Bertoloni Meli reexamines such major texts as Galileo's Dialogues Concerning Two New Sciences, Descartes' Principles of Philosophy, and Newton's Principia, and in them finds a reliance on objects that has escaped proper understanding. From Pappus of Alexandria to Guidobaldo dal Monte, Bertoloni Meli sees significant developments in the history of mechanical experimentation, all of them crucial for understanding Galileo. Bertoloni Meli uses similarities and tensions between dal Monte and Galileo as a springboard for exploring the revolutionary nature of seventeenth-century mechanics.' (Back cover)
"DLP, Developmental Leadership Program; Australian Aid; Oxfam."
Foundations of the Psychological Intervention presents a new General Theory for Psychological Intervention (GTPI), delving into how its methodology can be applied across diverse psychological contexts. Rooted in semiotic cultural psychology and guided by the GTPI framework, this book offers a cohesive perspective of psychology, addressing the prevailing fragmentation evident in various domains of psychology such as health, sports, forensic, organisational, and clinical psychology. The framework establishes a foundation of methods and techniques that render psychological interventions applicable across various domains, substantiated by concrete examples from different areas. With chapters revolving around theories of action, change and the client dynamics, this groundbreaking work provides both a conceptual and methodological structure to underpin domain-specific theories and methodologies, thereby strengthening the conceptual links among distinct domains of psychology. As one of the first works to develop a theory and method of intervention across multiple psychological domains, this book will be of interest to postgraduate students and researchers specialising in cultural psychology, clinical psychology, health psychology, and the philosophy of psychology. Moreover, it serves as a useful reading for practising psychologists and psychology professionals.
This is a modern and elegant introduction to engineering fluid mechanics enriched with numerous examples, exercises and applications. A swollen creek tumbles over rocks and through crevasses, swirling and foaming. Taffy can be stretched, reshaped and twisted in various ways. Both the water and the taffy are fluids and their motions are governed by the laws of nature. The aim of this textbook is to introduce the reader to the analysis of flows using the laws of physics and the language of mathematics. The book delves deeply into the mathematical analysis of flows; knowledge of the patterns fluids form and why they are formed, and also the stresses fluids generate and why they are generated, is essential to designing and optimising modern systems and devices. Inventions such as helicopters and lab-on-a-chip reactors would never have been designed without the insight provided by mathematical models.
How to create the change you want to see in the world using the paradigm-busting ideas in this "utterly fascinating" (Adam Grant) big-idea book.​ Most of what we know about how ideas spread comes from bestselling authors who give us a compelling picture of a world, in which "influencers" are king, "sticky" ideas "go viral," and good behavior is "nudged" forward. The problem is that the world they describe is a world where information spreads, but beliefs and behaviors stay the same. When it comes to lasting change in what we think or the way we live, the dynamics are different: beliefs and behaviors are not transmitted from person to person in the simple way that a virus is. The real story of social change is more complex. When we are exposed to a new idea, our social networks guide our responses in striking and surprising ways. Drawing on deep-yet-accessible research and fascinating examples from the spread of coronavirus to the success of the Black Lives Matter movement, the failure of Google+, and the rise of political polarization, Change presents groundbreaking and paradigm-shifting new science for understanding what drives change, and how we can change the world around us.