Monthly Catalog of United States Government Publications

Monthly Catalog of United States Government Publications

Author: United States. Superintendent of Documents

Publisher:

Published: 1980

Total Pages: 1268

ISBN-13:

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February issue includes Appendix entitled Directory of United States Government periodicals and subscription publications; September issue includes List of depository libraries; June and December issues include semiannual index


Steve Jobs

Steve Jobs

Author: Walter Isaacson

Publisher: Simon and Schuster

Published: 2011

Total Pages: 656

ISBN-13: 1451648545

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Based on more than 40 interviews with Jobs conducted over two years--as well as interviews with more than 100 family members, friends, adversaries, competitors, and colleagues--Isaacson has written a riveting story of the roller-coaster life and searingly intense personality of a creative entrepreneur whose passion for perfection and ferocious drive revolutionized six industries: personal computers, animated movies, music, phones, tablet computing, and digital publishing.


Historical Dictionary of Somalia

Historical Dictionary of Somalia

Author: Mohamed Haji Mukhtar

Publisher: Scarecrow Press

Published: 2003-02-25

Total Pages: 400

ISBN-13: 0810866048

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Despite advances in modern communication and the proliferation of information, there remain areas of the world about which little is known. One such place is Somalia. The informed public is aware of a political meltdown and consequent chaos there, but few comprehend the causes of this tragic crisis. This new edition covers Somalia's origin, history, culture, and language, as well as current economic and political issues. The alphabetical arrangement of this Dictionary, with a complete chronology, list of acronyms, and in-depth bibliography provide useful information about the country in a convenient format. A vital addition to reference collections supporting undergraduate and graduate programs on Africa and the Middle East, international relations, and economics- a useful fact-filled compendium for government and public libraries, NGO's, and other special libraries


Neuropeptide Systems as Targets for Parasite and Pest Control

Neuropeptide Systems as Targets for Parasite and Pest Control

Author: Timothy G. Geary

Publisher: Springer Science & Business Media

Published: 2011-01-13

Total Pages: 246

ISBN-13: 1441969020

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The need to continually discover new agents for the control or treatment of invertebrate pests and pathogens is undeniable. Agriculture, both animal and plant, succeeds only to the extent that arthropod and helminth consumers, vectors and pathogens can be kept at bay. Humans and their companion animals are also plagued by invertebrate parasites. The deployment of chemical agents for these purposes inevitably elicits the selection of resistant populations of the targets of control, necessitating a regular introduction of new kinds of molecules. Experience in other areas of chemotherapy has shown that a thorough understanding of the biology of disease is an essential platform upon which to build a discovery program. Unfortunately, investment of research resources into understanding the basic physiology of invertebrates as a strategy to illuminate new molecular targets for pesticide and parasiticide discovery has been scarce, and the pace of introduction of new molecules for these indications has been slowed as a result. An exciting and so far unexploited area to explore in this regard is invertebrate neuropeptide physiology. This book was assembled to focus attention on this promising field by compiling a comprehensive review of recent research on neuropeptides in arthropods and helminths, with contributions from many of the leading laboratories working on these systems.


Approaches in Bioremediation

Approaches in Bioremediation

Author: Ram Prasad

Publisher: Springer

Published: 2018-12-08

Total Pages: 413

ISBN-13: 3030023699

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Bioremediation refers to the clean‐up of pollution in soil, groundwater, surface water, and air using typically microbiological processes. It uses naturally occurring bacteria and fungi or plants to degrade, transform or detoxify hazardous substances to human health or the environment. For bioremediation to be effective, microorganisms must enzymatically attack the pollutants and convert them to harmless products. As bioremediation can be effective only where environmental conditions permit microbial growth and action, its application often involves the management of ecological factors to allow microbial growth and degradation to continue at a faster rate. Like other technologies, bioremediation has its limitations. Some contaminants, such as chlorinated organic or high aromatic hydrocarbons, are resistant to microbial attack. They are degraded either gradually or not at all, hence, it is not easy to envisage the rates of clean-up for bioremediation implementation. Bioremediation represents a field of great expansion due to the important development of new technologies. Among them, several decades on metagenomics expansion has led to the detection of autochthonous microbiota that plays a key role during transformation. Transcriptomic guides us to know the expression of key genes and proteomics allow the characterization of proteins that conduct specific reactions. In this book we show specific technologies applied in bioremediation of main interest for research in the field, with special attention on fungi, which have been poorly studied microorganisms. Finally, new approaches in the field, such as CRISPR-CAS9, are also discussed. Lastly, it introduces management strategies, such as bioremediation application for managing affected environment and bioremediation approaches. Examples of successful bioremediation applications are illustrated in radionuclide entrapment and retardation, soil stabilization and remediation of polycyclic aromatic hydrocarbons, phenols, plastics or fluorinated compounds. Other emerging bioremediation methods include electro bioremediation, microbe-availed phytoremediation, genetic recombinant technologies in enhancing plants in accumulation of inorganic metals, and metalloids as well as degradation of organic pollutants, protein-metabolic engineering to increase bioremediation efficiency, including nanotechnology applications are also discussed.