Due to unprecedented growth in population and the resultant massive mining of energy resources, especially the non-renewable resources and also water resources, these resources have gradually become scarce commodities. Hence the geoscientists and the technocrats from all over the world have embarked into many fold research programmes for locating newer reservoirs of these resources and also to develop models to conserve and sustainably exploit them. As this involves the total understanding of the rock types, tectonic architecture, geomorphology and reservoir conditions, the Geomatics technology comprising Remote Sensing, Geographic Information System (GIS), etc have been found to be vital tools in the inventory and management of these resources; While the former due to its synoptivity, multispectral nature and repeativity and the latter by virtue of its capability to store, manipulate and model huge volume of spatial and non-spatial data. Divergent geological provinces and processes are brought out deserving concepts and methods on geology, 3D visualization of subsurface lineaments, SRTM based lineament mapping, spatio-linear modeling of hard rock aquifer systems, 3D visualization of oil bearing structures, etc., both as field geologists and as researchers.
In recent years, the importance of biogas energy has risen manifold and has become universal. This is due to the realization that biogas capture and utilization has great potential in controlling global warming. By capturing biogas wherever it is formed, we not only tap a source of clean energy, but we also prevent the escape of methane to the atmosphere. Given that methane has 25 times greater global warming potential than CO2, methane capture through biogas energy in this manner can contribute substantially towards global warming control.
The authors, as geologists, were endowed with the fortune of working in Geomatics technology comprising Remote Sensing, GIS, GPS, etc. with a focused vision to bring out the Quaternary geological history of different parts of Indian Peninsular, the senior author during the last four decades and the co-authors during the last one and half decades. As geomorphology, one of the major branch of geology, not only dealing with external landscape architecture of the planet earth but also bears the records on the Quaternary tectonics, riverine, coastal, aeolian, glacial, volcanic and other geomorphic processes of the Quaternary period, the authors were stimulated to carry out studies on the riverine life histories, shoreline changes and offshore land building phenomena, the recent earth movements from the geomorphic anomalies, Holocene tectonics and their control over Quaternary deltas, etc. Besides unfurling the geological history of the Quaternary period, geomorphology has been deeply studied by the authors with the focus on mapping and mitigation of natural disasters like seismotectonics, landslides, response of coastal geomorphology to tsunami surges, floods, etc.
The problem of mass blindness today stems largely from cataract which accounts for a total of 40 million cataract victims in the world — and it will worsen with the ageing population. Fortunately, this problem can be resolved with cost effective extracapsular cataract extraction (ECCE) and posterior chamber implantation (PCI).This book highlights how the use of ECCE and PCI can restore normal vision to cataract victims around the world.A successful approach is to establish training centres. The success of the International Intraocular Implant Training Centre (IIITC) in the Peoples' Republic of China is cited to show that implant surgery for cataracts can be successfully performed in communities in developing nations in Asia with appropriate training and supervision. The centre has since yielded excellent results with cost effective ECCE and PCI. The book challenges eye surgeons around the world to unite to address a global need to contain world cataract blindness.
This book provides the latest developments on safety practices utilized in composite manufacturing facilities for students, workers, engineers, and other participants. It includes commentary from academic experts in the field who present cutting-edge research on advanced composite materials. Illustrations, figures, and tables are included in this book in order to make it easier for students, workers, engineers, and other participants to understand the contents of this book. The end user knows the safety and health that should be practiced in composite industry and their right in composite industry. Besides that, the composites industry players can upgrade their current safety system to the recommended practiced system. A lot of problems are solved by integrate the current system and advanced technology system from extensive research.
Natural Fiber Reinforced Vinyl Ester and Vinyl Polymer Composites: Characterization, Properties and Applications discusses recent advances on the development, characterization and application of natural fiber vinyl ester and vinyl polymers composites. Various types of vinyl ester and vinyl based polymers, such as poly(vinyl chloride) (PVC), low and high density polyethylene (LDPE and HDPE), polypropylene (PP), polyvinyl alcohol (PVA) and polyvinyl acetate (PVAc) are discussed. Chapters focus on different composite fabrication processes, such as compression moulding, hand lay-up, and pultrusion processes. Key themes covered include the properties and characterization of vinyl ester and vinyl polymers composites reinforced by natural fibers. The effect of fiber treatment and coupling agents on mechanical and physical properties of these materials is also evaluated. In addition to a determination of physical and mechanical properties, studies on thermal, degradation, swelling behavior, and the morphological properties of natural fiber reinforced vinyl ester and vinyl polymer composites is also presented. - Presents the importance of vinyl ester and vinyl-based polymers as matrices in natural fiber composites - Provides a detailed and comprehensive review on the development, characterization and applications of natural fiber vinyl ester and vinyl polymers composites - Looks at recent fabrication techniques and the mechanical properties of materials - Contains contributions from leading experts in the field
The book is about a global mission against world cataract blindness. It highlights the resistance of some world organizations to changes, particularly the shift from ICCE to ECCE with PCI, and how they have relented over the years. It also highlights the success of cataract/implant training centres in China, especially in Tianjin. The book will be of interest to anyone involved in providing eye care, and may be of special interest to those dealing with blinding diseases including cataract.
Interventional Pericardiology gives a unique and comprehensive view on an often neglected but clinically very important part of cardiovascular disease: The pericardium and the adjacent myocardium or epicardium. The authors of this up-to-date compendium on pericardial disease etiology, diagnostics and treatment, Professors Bernhard Maisch (Marburg), Arsen Ristić (Belgrade), Petar Seferović (Belgrade) and Teresa Tsang (Rochester) focus on recent advances to the new window that has been opened to the heart by flexible and video-assisted pericardioscopy, modern biochemical, immunohistological and molecular tools for the analysis of epicardial and pericardial biopsies, which have been acquired safely under pericardioscopic control by the interventional pericardiologist. Their book adds brand-new information to the recent and so far only guidelines world-wide by the European Society of Cardiology on the management of pericardial diseases. This task-force has been chaired by the lead author B. Maisch. Accordingly “Interventional Pericardiology” belongs in every medical library and on the desk of every cardiologist, cardiological interventionalist, and trainee with an interest in pericardial diseases.
Due to unprecedented growth in population and the resultant massive mining of energy resources, especially the non-renewable resources and also water resources, these resources have gradually become scarce commodities. Hence the geoscientists and the technocrats from all over the world have embarked into many fold research programmes for locating newer reservoirs of these resources and also to develop models to conserve and sustainably exploit them. As this involves the total understanding of the rock types, tectonic architecture, geomorphology and reservoir conditions, the Geomatics technology comprising Remote Sensing, Geographic Information System (GIS), etc have been found to be vital tools in the inventory and management of these resources; While the former due to its synoptivity, multispectral nature and repeativity and the latter by virtue of its capability to store, manipulate and model huge volume of spatial and non-spatial data. Divergent geological provinces and processes are brought out deserving concepts and methods on geology, 3D visualization of subsurface lineaments, SRTM based lineament mapping, spatio-linear modeling of hard rock aquifer systems, 3D visualization of oil bearing structures, etc., both as field geologists and as researchers.
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