Dmitry Efremenko - Böcker
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5 produkter
5 produkter
357 kr
Skickas inom 7-10 vardagar
The former Soviet empire spanned eleven time zones and contained half the world's forests; vast deposits of oil, gas and coal; various ores; major rivers such as the Volga, Don and Angara; and extensive biodiversity. These resources and animals, as well as the people who lived in the former Soviet Union - Slavs, Armenians, Georgians, Azeris, Kazakhs and Tajiks, indigenous Nenets and Chukchi - were threatened by environmental degradation and extensive pollution. This environmental history of the former Soviet Union explores the impact that state economic development programs had on the environment. The authors consider the impact of Bolshevik ideology on the establishment of an extensive system of nature preserves, the effect of Stalinist practices of industrialization and collectivization on nature, and the rise of public involvement under Khrushchev and Brezhnev, and changes to policies and practices with the rise of Gorbachev and the break-up of the USSR.
1 200 kr
Skickas inom 7-10 vardagar
The former Soviet empire spanned eleven time zones and contained half the world's forests; vast deposits of oil, gas and coal; various ores; major rivers such as the Volga, Don and Angara; and extensive biodiversity. These resources and animals, as well as the people who lived in the former Soviet Union - Slavs, Armenians, Georgians, Azeris, Kazakhs and Tajiks, indigenous Nenets and Chukchi - were threatened by environmental degradation and extensive pollution. This environmental history of the former Soviet Union explores the impact that state economic development programs had on the environment. The authors consider the impact of Bolshevik ideology on the establishment of an extensive system of nature preserves, the effect of Stalinist practices of industrialization and collectivization on nature, and the rise of public involvement under Khrushchev and Brezhnev, and changes to policies and practices with the rise of Gorbachev and the break-up of the USSR.
1 584 kr
Skickas inom 10-15 vardagar
Theoretical foundations of atmospheric remote sensing are electromagnetic theory, radiative transfer and inversion theory.
1 069 kr
Skickas inom 10-15 vardagar
Theoretical foundations of atmospheric remote sensing are electromagnetic theory, radiative transfer and inversion theory.
1 478 kr
Skickas inom 5-8 vardagar
Provides in-depth knowledge of the physics of radiative transfer In Analytical Methods in Radiative Transfer, a team of distinguished researchers delivers a comprehensive exploration of solutions to practical problems of modern atmospheric optics related to solar light interaction with the terrestrial atmosphere and the remote sensing of clouds, aerosols, and gases. The authors describe analytic methods in radiative transfer that help explain atmospheric phenomena. The book includes discussions on the interaction of solar light with the atmosphere. Readers will also benefit from thorough reviews of various analytical radiative transfer techniques, for various turbid media, including media with phase functions extended in the forward direction, and also semi-infinite, non-absorbing, weakly absorbing, and strongly absorbing light scattering media. Analytical Methods in Radiative Transfer also includes: A thorough introduction to exact solutions of the radiative transfer equation, including situations of single scattering, as well as isotropic and Rayleigh scatteringA comprehensive exploration of approximate solutions for scalar radiative transfer, including single and multiple light scattering separation and the case of semi-infinite media such as snowIn-depth examinations of the applications of analytical methods in atmospheric radiative transfer, including aerosol remote sensing, cloud remote sensing, and the remote sensing of trace gasesPerfect for meteorologists, climatologists and graduate students studying physics, Analytical Methods in Radiative Transfer is also an indispensable resource for geophysicists seeking a practical exploration of modern atmospheric optics.