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This book highlights the proceedings of the International Conference on Atomic, Molecular, Optical and Nano-Physics with Applications (CAMNP 2019), organized by the Department of Applied Physics, Delhi Technological University, New Delhi, India. It presents experimental and theoretical studies of atoms, ions, molecules and nanostructures both at the fundamental level and on the application side using advanced technology. It highlights how modern tools of high-field and ultra-fast physics are no longer merely used to observe nature but can be used to reshape and redirect atoms, molecules, particles or radiation. It brings together leading researchers and professionals on the field to present and discuss the latest finding in the following areas, but not limited to: Atomic and Molecular Structure, Collision Processes, Data Production and Applications Spectroscopy of Solar and Stellar Plasma Intense Field, Short Pulse Laser and Atto-Second Physics Laser Technology, Quantum Optics and applications Bose Einstein condensation Nanomaterials and Nanoscience Nanobiotechnolgy and Nanophotonics Nano and Micro-Electronics Computational Condensed Matter Physics
"Coming to a conclusion, this wonderful, informative and very interesting book presents an excellent overview of small volatile organic compounds and their role in our life and environment. Really fascinating is the entirety of scientific disciplines which were addressed by this book." –Flavour and Fragrance Journal, 2011 "... this book deserves to be a well-used reference in the library of any laboratory specialising in VOC". –Chemistry World, 2011 Volatile compounds are molecules with a relatively low molecular weight allowing for an efficient evaporation into the air. They are found in many areas of our everyday-life: they are responsible for the communication between species such as ...
Agronomic crops have been a source of foods, beverages, fodders, fuels, medicines and industrial raw materials since the dawn of human civilization. Over time, these crops have come to be cultivated using scientific methods instead of traditional methods. However, in the era of climate change, agronomic crops are increasingly subjected to various environmental stresses, which results in substantial yield loss. To meet the food demands of the ever-increasing global population, new technologies and management practices are being adopted to boost yield and maintain productivity under both normal and adverse conditions. To promote the sustainable production of agronomic crops, scientists are cur...
This book addresses multiple focus areas identified and provides solutions with respect to the circular economy, water pollution, potable water availability, reducing population impact on the environment, and better health by integrated waste management. It explains techniques to handle waste generation, characterization, minimization, collection, separation, treatment, and disposal, and includes chapters that address waste management policy, education, and economic and environmental assessments. Features: Introduces waste management, pollution, and toxicity profile of potentially toxic environmental contaminants and industrial wastes. Describes field studies on the application of microbes a...
This book is a compilation of advancements and achievements in the field of sugar beet cultivation. It covers recent research and up-to-date information on this crop. It discusses essential aspects for high production and good yield, development and crop management, such as origin, breeding, seed production, physiology, pathology, entomology, biotechnology, and post-harvest technology. Sugar beet is known as an alternative crop for sugar production. A versatile crop having numerous uses, besides being raw material for sugar production, its molasses contain high amount of betaine which is used as a feed supplement. Due to its value profile it has attracted the millers and farmers alike. This book is of interest to teachers, researchers, agriculture scientists, capacity builders and policymakers. Also the book serves as additional reading material for graduate students of agriculture, forestry, ecology and soil science. National and international agricultural scientists, policy makers will also find this to be a useful read.
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Advances in Agronomy continues to be recognized as a leading reference and a first-rate source of the latest and best research in agronomy. As always, the topics covered are varied and exemplary of the panoply of subject matter dealt with by this long-running serial.Volume 68 contains five outstanding and contemporary reviews on topics that deal with soil chemistry, plant physiology, plant nutrition, and soil and crop management. Chapter 1 by Morris Schnitzer summarizes the past and present knowledge of the chemistry of soil organic matter. Chapter 2, written by H.S. Saini and M.E. Westgate, is a comprehensive exposition on the reproductive development in grain crops during drought. G. Xu, H. Magen, J. Tarchitzky, and U. Kafkafi present advances in chloride management in Chapter 3. Chapter 4 is a review in our continuing series on the 12 soil orders. S.W. Buol and H. Eswaran provide an enlightening review on Oxisols. K. Kumar and K.M. Goh discuss aspects of crop residues in the fifth and final chapter of this important and well-written book.
The second edition includes new findings that were only a theory in the first edition, clarifying what is beginning to be proven true. All chapters have been updated, and new data on the analysis of major depressive disorder from exosome microRNA (miRNA) in plasma, traumatic brain injury, and Alzheimer's disease, brain glioma from cerebrospinal fluid miRNA, liver cancer, induced pluripotent stem (iPS) cell tumorigenesis, and other topics have been added. As predicted in the first edition, diseases can be predicted using the miRNA memory package (MMP) and miRNA entangling target sorting (METS), which could clarify the etiology of human diseases. Because researchers are investigating the relationship between circulating miRNAs and human diseases to develop new medicines, miRNA deep sequencing and detection methods will be high-speed and clever. The microRNA 2000 Transformer - Quantum Computing and Artificial Intelligence for Health is aimed at intermediate and advanced scientists, clinicians, students, and science enthusiasts. The Author hopes to lay the groundwork for future human health innovation.