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Sample tabulation. Temperature and pressure conversions. Density and pressure with height. Pressure, density, temperature and potential temperature for constant lapse rate. Geodetic information, geostruphy and the reference atmosphere. Solar positon, sunrise and sunset times and incident radiation on slopes. Integration of the planck blackbody radiation function. Density, viscosity and fall velocity for particles in air or water. Saturation vapour pressure and latent heats for pure water and ice. Moisture parameters from dry bulb and wet or ice bulb readings. Meteorologically relevant temperatures for moist air. Speed of sound, density, molar mass and specific heats of moist air. Wind speed converter, beaufort scale and the vertical profile of mean wind. Diffusion and dispersion in air. Fire weather tables. Normal and chi-squared distributions. Weibull distribution.
Consists of computer programs to provide hydrological data in tabular form.
This book presents a unique, interdisciplinary approach to disaster risk research, combining cutting-edge natural science and social science methodologies. Bringing together leading scientists, policy makers and practitioners from around the world, it presents the risks of global hazards such as volcanoes, seismic events, landslides, hurricanes, precipitation floods and space weather, and provides real-world hazard case studies from Latin America, the Caribbean, Africa, the Middle East, Asia and the Pacific region. Avoiding complex mathematics, the authors provide insight into topics such as the vulnerability of society, disaster risk reduction policy, relations between disaster policy and climate change, adaptation to hazards, and (re)insurance approaches to extreme events. This is a key resource for academic researchers and graduate students in a wide range of disciplines linked to hazard and risk studies, including geophysics, volcanology, hydrology, atmospheric science, geomorphology, oceanography and remote sensing, and for professionals and policy makers working in disaster prevention and mitigation.
Advancements in science and engineering have occurred at a surprisingly rapid pace since the release of the seventh edition of this encyclopedia. Large portions of the reference have required comprehensive rewriting and new illustrations. Scores of new topics have been included to create this thoroughly updated eighth edition. The appearance of this new edition in 1994 marks the continuation of a tradition commenced well over a half-century ago in 1938 Van Nostrand's Scientific Encyclopedia, First Edition, was published and welcomed by educators worldwide at a time when what we know today as modern science was just getting underway. The early encyclopedia was well received by students and educators alike during a critical time span when science became established as a major factor in shaping the progress and economy of individual nations and at the global level. A vital need existed for a permanent science reference that could be updated periodically and made conveniently available to audiences that numbered in the millions. The pioneering VNSE met these criteria and continues today as a reliable technical information source for making private and public decisions that present a backdrop of technical alternatives.