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Landfill leachate is a complex mix of organics, inorganics and heavy metals produced from the conventional and engineering landfilling practices. The adverse effects of landfill leachate on the human and environmental health have forced the relevant authorities to stipulate stringent disposal requirements, producing the requirement for ground-breaking technological solutions for effective management of landfill leachate. The researchers and field engineers are still looking for robust options for leachate management. This timely book on landfill leachate management is a valued addition into this domain. The key features of the book include: broad range of treatment techniques covered, conventional to advanced technological options discussed, along with the inclusion of successful case studies.
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The book provides an overview of technical sustainable water management in the Global South, mainly in India. The book is structured in five sections: (1) current state and challenges, (2) new age materials in (waste) water treatment, (3) new technologies developed for (waste) water treatment, (4) sensors, (5) urban water infrastructure. Section-1 provides the latest information about the status and challenges for sustainable water management in India, from the perspective of water quality, industrial and domestic wastewater treatment, urban water infrastructure and policy and governance towards water security. Section 2 deals with new age materials for water and wastewater treatment. This part discusses new framework solids for water purification, new materials for arsenic and fluoride removal, nanocomposites for water and wastewater treatment and removal of hazardous materials, and toxicity of these materials. Section 3 of the book presents the new technologies developed for water and wastewater treatment; dealing with pulsed power technology, constructed wetlands, nutrient recovery, low-cost filters and pollution abatement using waste derived materials. Section 4 of the book focuses on sensors, presenting the development of low-cost colorimetric sensors for eutrophying ions, sensors for conductivity and flow parameters, and multi-analyte assessment for water quality. Finally, Section 5 addresses the issues related to urban water infrastructure, sustainable urban drainage and integrated flood and water scarcity management. This section also discusses virtual water. The unique feature of this edited volume is the special perspective on emerging economies in the Global South, such as India. It provides information about adaption of technologies, development of new technologies, and management practices which are context driven and region specific. It also deals with economical and easy to use sensors for large scale monitoring of water quality and water quantity parameters.
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Achieving true wholesome sustainability requires a change of heart. Hence this book starts in the heart. It asks the timely question of 'how do we become true water stewards?' The transformation to a new sustainable practice will be made through a new connection with our heart, a more holistic type of analysis (brains) and the right actions based on personal integrity (hand). A water steward should be similar to the shepherds of olden days. They were given the responsibility to guard the sheep. The village trusted they would take care of the herd, make sure it would be well fed, protected from storms and kept together. The shepherd learned to take a long term perspective for the herd, ensuring that the pastures were not overgrazed, that the herd was not led too far away from access to water and that shelter was in reach in the event of storms and dangerous predators. Over time the shepherds became increasingly skilled in caring for the herd. They integrated the responsibility of the well-being of the herd into their identity. In a similar way, we can take the responsibility for human water consumption and our interaction with the natural world. We need to understand and work according to the big picture and the very long term perspective. Being a water steward requires deep reflection of how water should be treated and our relationship with water. Water utility professionals have the knowledge and have been trusted with the role of managing human water consumption. This is a great responsibility and requires deep reflection of how this should be done. The book will present ideas and concepts for the new role as well as questions for personal reflection.
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"Past archaeological literature on cooperation theory has emphasized competition's role in cultural evolution. As a result, bottom-up possibilities for group cooperation have been under-theorized in favor of models stressing top-down leadership, and evidence from a range of disciplines has demonstrated that humans effectively sustain cooperative undertakings through a number of social norms and institutions. Cooperation and Collective Action is the first volume to focus on the use of archaeological evidence to understand cooperation and collective action. Disentangling the motivations and institutions that foster group cooperation among competitive individuals remains a great conundrum in evolutionary theory. The breadth and material focus of archaeology provide a much-needed complement to existing research on cooperation and collective action, which thus far has relied largely on game-theoretic modeling, surveys of college students from affluent countries, brief ethnographic experiments, and limited historic cases. In Cooperation and Collective Action, diverse case studies address the evolution of the emergence of norms, institutions, and symbols in complex societies over the last 10,000 years. This book is an important contribution to the literature on cooperation in human societies and will appeal to archaeologists and other scholars interested in cooperation research"--
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Leadership and Challenges in Medical Physics: A Strategic and Robust Approach aims to present aspiring future Medical Physics leaders with effective, strategic and robust leadership skills in a world dominated by austerity economics, inter-professional competition and sometimes unchecked commoditization. Chapters are dedicated to healthy leadership and leadership styles, organizational politics, organizational psychology and negotiating skills. A compendium of SWOT themes provides leaders with a ready resource of possible ideas to trigger initial SWOT brainstorming and discussions when developing strategic plans with their own group or team. In addition, the script is peppered with reflection/discussion points or case studies to promote a systematic and well-thought out approach to strategic planning. The author, originator and leader of the EFOMP-EUTEMPE module MPE01 on leadership in Medical physics, promotes a can-do approach, and considers that his medical physics colleagues can make excellent leaders: 'We are a highly intelligent group, we have excelled as clinical scientists--I am very confident that we can excel in leadership too provided we give it the attention it deserves'. Part of IPEM-IOP Series in Physics and Engineering in Medicine and Biology.
Medical physics --- Leadership. --- Physics. --- Vocational Guidance. --- Medical physics. --- SCIENCE / Applied Sciences. --- Vocational guideance.
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Gradiometry is a multidisciplinary area that combines theoretical and applied physics, ultra-low noise electronics, precision engineering, and advanced signal processing. Applications include the search for oil, gas, and mineral resources, GPS-free navigation, defence, space missions, and medical research. This book provides readers with a comprehensive introduction, history, potential applications, and current developments in relation to some of the most advanced technologies in the 21st Century.
Gravitational fields --- Magnetic fields --- Electromagnetic fields --- Field theory (Physics) --- Applied physics. --- SCIENCE / Applied Sciences. --- Measurement. --- Measurement
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The book contains an extensive illustration of use of finite difference method in solving the boundary value problem numerically. A wide class of differential equations has been numerically solved in this book. Starting with differential equations of elementary functions like hyperbolic, sine and cosine, we have solved those of special functions like Hermite, Laguerre and Legendre. Those of Airy function, of stationary localised wavepacket, of the quantum mechanical problem of a particle in a 1D box, and the polar equation of motion under gravitational interaction have also been solved. Mathematica 6.0 has been used to solve the system of linear equations that we encountered and to plot the numerical data. Comparison with known analytic solutions showed nearly perfect agreement in every case. On reading this book, readers will become adept in using the method.
Boundary value problems --- Finite differences. --- Applied physics. --- SCIENCE / Applied Sciences. --- Numerical solutions.
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This book demonstrates Microsoft EXCEL®-based Fourier transform of selected physics examples, as well as describing spectral density of the auto-regression process in relation to Fourier transform. Rather than offering rigorous mathematics, the book provides readers with an opportunity to gain an understanding of Fourier transform through the examples. They will acquire and analyze their own data following the step-by-step procedure outlined, and a hands-on acoustic spectral analysis is suggested as the ideal long-term student project.
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Harvesting rain and using it for drinking and domestic use will help to give scattered rural households and under-served city dwellers access to water. The world cannot ignore using rain - as the source of all water. This book presents stories and experiences from some 15 countries from all over the globe, developed and less developed. There are many more experiences that can be highlighted, but those included are thought to give the reader a good overview of what can be done when water supply engineering investment has not yet reached the unserved. Rainwater harvesting has an important role to play as a safe water supply when other sources are not safe or not available. A rainwater system brings along storage. It may be perceived as a little expensive but will normally be cheaper than a house connection from a centrally treated water supply system. Moreover, the storage will be invaluable in an emergency when tankered water can be stored. Also, in times of drought households with rainwater storage will still have a supply of water.
Technology & Engineering / Mining --- Science / Applied Sciences --- Science / Environmental Science --- Science --- Natural science --- Natural sciences --- Science of science --- Sciences
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The principle of the conventional activated sludge (CAS) for municipal wastewater treatment is primarily based on biological oxidation by which organic matters are converted to biomass and carbon dioxide. After more than 100 years' successful application, the CAS process is receiving increasing critiques on its high energy consumption and excessive sludge generation. Currently, almost all municipal wastewater treatment plants with the CAS as a core process are being operated in an energy-negative fashion. To tackle such challenging situations, there is a need to re-examine the present wastewater treatment philosophy by developing and adopting novel process configurations and emerging technologies. The solutions going forward should rely on the ways to improve direct energy recovery from wastewater, while minimizing in-plant energy consumption. This book begins with a critical overview of the energy situation and challenges in current municipal wastewater treatment plants, showing the necessity of the paradigm shift from removal to recovery in terms of energy and resource. As such, the concept of A-B process is discussed in detail in the book. It appears that various A-B process configurations are able to provide possible engineering solutions in which A-stage is primarily designed for COD capture with the aim for direct anaerobic treatment without producing excessive biosludge, while B-stage is designated for nitrogen removal. Making the wastewater treatment energy self-sustainable is obviously of global significance and eventually may become a game changer for the global market of the municipal wastewater reclamation technology. The principal audiences include practitioners, professionals, university researchers, undergraduate and post-graduate students who are interested and specialized in municipal wastewater treatment and process design, environmental engineering, and environmental biotechnology.
Technology & Engineering / Mining --- Science / Applied Sciences --- Science / Environmental Science --- Science --- Natural science --- Natural sciences --- Science of science --- Sciences
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