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1

United States. National Aeronautics and Space Administration., ed. Waves and instability in the atmosphere of Mars: Final report, July 1, 1987 - December 31, 1990. [Washington, DC: National Aeronautics and Space Administration, 1990.

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2

United States. National Aeronautics and Space Administration., ed. Waves and instability in the atmosphere of Mars: Final report, July 1, 1987 - December 31, 1990. [Washington, DC: National Aeronautics and Space Administration, 1990.

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3

John, Stanford. Rossby-gravity waves in tropical total ozone data. [Washington, DC: National Aeronautics and Space Administration, 1993.

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4

John, Stanford. Rossby-gravity waves in tropical total ozone data. [Washington, DC: National Aeronautics and Space Administration, 1993.

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5

R, Ziemke J., e United States. National Aeronautics and Space Administration., eds. Rossby-gravity waves in tropical total ozone data. [Washington, DC: National Aeronautics and Space Administration, 1993.

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6

Volland, Hans. Atmospheric tidal and planetary waves. Dordrecht: Kluwer Academic Publishers, 1988.

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7

Chiu, Ching-Sang. Estimation of planetary wave parameters from the data of the 1981 Ocean Acoustic Tomography Experiment. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1985.

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8

R, Reiter Elmar, e United States. National Aeronautics and Space Administration., eds. Atmospheric planetary wave response to external forcing: Final technical report, NASA grant NAG 5-136. [Washington, D.C: National Aeronautics and Space Administration, 1985.

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9

United States. National Aeronautics and Space Administration., ed. Large-scale dynamics and transport in the stratosphere. [Washington, D.C: National Aeronautics and Space Administration, 1990.

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10

United States. National Aeronautics and Space Administration., ed. Large-scale dynamics and transport in the stratosphere. [Washington, D.C: National Aeronautics and Space Administration, 1990.

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11

Kelley, Michael C. Aspects of weather and space weather in the earth's upper atmosphere: The role of internal atmospheric waves. Washington, D.C: National Academy Press, 1997.

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12

Haack, Tracy. Mixed convective/dynamic roll vortices and their effects on initial wind and temperature profiles. University Park, PA: Dept. of Meteorology, Pennsylvania State University, 1991.

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13

Pacific Marine Environmental Laboratory (U.S.), ed. Observations of long Rossby waves in the northern tropical Pacific. Seattle, Wash: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Pacific Marine Environmental Laboratory, 1989.

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14

Kessler, William S. Observations of long Rossby waves in the northern tropical Pacific. Seattle, Wash: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1989.

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15

1940-, Gruber Arnold, e United States. National Environmental Satellite, Data, and Information Service, eds. Spurious semi-diurnal variation in the E.R.B.E. outgoing longwave radiation. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1995.

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16

1940-, Gruber Arnold, e United States. National Environmental Satellite, Data, and Information Service., eds. Spurious semi-diurnal variation in the E.R.B.E. outgoing longwave radiation. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1995.

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17

1940-, Gruber Arnold, e United States. National Environmental Satellite, Data, and Information Service, eds. Spurious semi-diurnal variation in the E.R.B.E. outgoing longwave radiation. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1995.

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18

1940-, Gruber Arnold, e United States. National Environmental Satellite, Data, and Information Service., eds. Spurious semi-diurnal variation in the E.R.B.E. outgoing longwave radiation. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1995.

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19

1940-, Gruber Arnold, e United States. National Environmental Satellite, Data, and Information Service., eds. Spurious semi-diurnal variation in the E.R.B.E. outgoing longwave radiation. Washington, D.C: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, National Environmental Satellite, Data, and Information Service, 1995.

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20

Grigorkina, R. G. Vozdeĭstvie taĭfunov na okean. Leningrad: Gidrometeoizdat, 1986.

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21

Grigorkina, R. G. Vozdeĭstvie taĭfunov na okean. Leningrad: Gidrometeoizdat, 1986.

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22

Swart, H. E. de. Vacillation and predictability properties of low-order atmospheric spectral models. Amsterdam, the Netherlands: Centrum voor Wiskunde en Informatica, 1989.

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23

Zhu, Yong. Geostrophic wave circulations. 2a ed. Boston: New Knowledge Pub., 2002.

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24

Goretzki, Bernd. Untersuchungen zur Ausbreitung und Entwicklung von Rossby-Wellen in einem dreidimensionalen, globalen numerischen Modell bei Anwesenheit einer subtropischen kritischen Schicht. Berlin: D. Reimer, 1988.

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25

I, Ivanovskiĭ A., e Gosudarstvennyĭ komitet SSSR po gidrometeorologii i kontroli͡u︡ prirodnoĭ sredy., eds. Fizika verkhneĭ atmosfery. Moskva: Moskovskoe otd-nie Gidrometeoizdata, 1985.

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26

United States. National Aeronautics and Space Administration., ed. Investigation of tropical transport with UARS data: Final report : contract no. NAS5-32862. [Bellevue, Wash.]: Northwest Research Associates, 1999.

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27

Kamenkovich, Igor V. Radiating instability of nonzonal ocean currents. Woods Hole, Mass: Massachusetts Institute of Technology, Woods Hole Oceanographic Institution, Joint Program in Oceanography/Applied Ocean Science and Engineering, 1997.

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28

Phillips, Norman A. Dispersion processes in large-scale weather prediction. Geneva, Switzerland: Secretariat of the World Meteorological Organization, 1990.

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29

Phillips, Norman A. Dispersion processes in large scale weather prediction. [Geneva]: World Meteorological Organization, 1990.

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30

Nikishin, E. S. Dinamika ėkonomicheskogo razvitii︠a︡ Rossii. Sankt-Peterburg: Nestor, 2001.

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31

Batueva, E. V. Refrakt︠s︡ionnye svoĭstva troposfery Dalʹnevostochnykh raĭonov Rossii. Novosibirsk: Izd-vo Sibirskogo otd-nii︠a︡ Rossiĭskoĭ akademii nauk, 1999.

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32

Bocharov, V. I︠U︡. Sot︠s︡ialʹnyĭ institut naemnogo truda v sovremennoĭ Rossii. Samara: Izd-vo "Samarskiĭ universitet", 2010.

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33

(Federation), Russia. Ėkonomicheskai͡a︡ politika Pravitelʹstva Rossii: Dokumenty, kommentariĭ. Moskva: Izd-vo "Respublika", 1992.

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34

Pravitel'stvo, Russia (Federation), ed. Ekonomicheskaya politika Pravitel'stva Rossii: Dokumenty, kommentarii. Moskva: Respublika, 1992.

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35

Chekin, M. A. Oplata sluzhebnoĭ dei︠a︡telʹnosti gosudarstvennykh grazhdanskikh sluzhashchikh Rossii: Istorii︠a︡, praktika, ėksperimenty, perspektivy. Moskva: Vysshai︠a︡ shkola ėkonomiki, 2014.

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36

N, Volgin. Dokhody naselenii︠a︡ i oplata truda v sovremennoĭ Rossii: Analiz situat︠s︡ii, obosnovanie deĭstviĭ organov gosudarstvennoĭ vlasti i upravlenii︠a︡. Moskva: RAGS, 2008.

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37

K, Demin A., Demina I. A, Vserossiĭskiĭ forum po politike v oblasti obshchestvennogo zdorovʹi͡a︡ "Obrazovanie v oblasti zdorovʹi͡a︡ / ukreplenie zdorovʹi͡a︡ sredi deteĭ podrostkov i molodezhi v Rossii." e Rossiĭskai͡a︡ assot͡s︡iat͡s︡ii͡a︡ obshchestvennogo zdorovʹi͡a︡, eds. Obrazovanie v oblasti zdorovʹi͡a︡ i ukreplenie zdorovʹi͡a︡ sredi deteĭ, podrostkov i molodezhi v Rossii: Materialy Vserossiĭskogo Foruma po politike v oblasti obshchestvennogo zdorovʹi͡a︡, 1 okti͡a︡bri͡a︡ 1997 g.-30 avgusta 1998 g. Moskva: Rossiĭskai͡a︡ assot͡s︡iat͡s︡ii͡a︡ obshchestvennogo zdorovʹi͡a︡, 1999.

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38

K, Demin A., Rossiĭskai͡a︡ assot͡s︡iat͡s︡ii͡a︡ obshchestvennogo zdorovʹi͡a︡, Vserossiĭskiĭ forum po politike v oblasti obshchestvennogo zdorovʹi͡a︡ "Alkogolʹ i zdorovʹe." e Vserossiĭskai͡a︡ konferent͡s︡ii͡a︡ "Alkogolʹ i zdorovʹe" (1996 : Moscow, Russia), eds. Alkogolʹ i zdorovʹe naselenii͡a︡ Rossii, 1900-2000: Materialy Vserossiĭskogo foruma po politike v oblasti obshchestvennogo zdorovʹi͡a︡ "Alkogol i zdorovʹe", sostoi͡a︡vshegosi͡a︡ v 1996-1998 godakh i Vserossiĭskoĭ konferent͡s︡ii "Alkogol i zdorovʹe", g. Moskva, Rossiĭskai͡a︡ Federat͡s︡ii͡a︡, 17 dekabri͡a︡ 1996 g. Moskva: Rossiĭskai͡a︡ assot͡s︡iat͡s︡ii͡a︡ obshchestvennogo zdorovʹi͡a︡, 1998.

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39

Cherry-Garrard, Apsley. The Worst Journey in the World. Crabtree: The Narrative Press, 2001.

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40

Cherry-Garrard, Apsley. The worst journey in the world. North Salem, NY: Adventure Library, 1997.

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41

Cherry-Garrard, Apsley. The worst journey in the world: Antarctica, 1910-1913. New York: Skyhorse Pub., 2013.

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42

Cherry-Garrard, Apsley. The worst journey in the world: With Scott in Antarctica 1910-1913. Mineola, N.Y: Dover Publications, Inc., 2010.

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43

Cherry-Garrard, Apsley. The worst journey in the world. Washington, D.C: National Geographic, 2002.

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44

Cherry-Garrard, Apsley. Shi jie zui xian e zhi lü. Chongqing: Chongqing chu ban she, 2007.

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45

Cherry-Garrard, Apsley. The worst journey in the world. New York: Penguin Books, 2006.

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46

Zeitlin, Vladimir. Getting Rid of Fast Waves: Slow Dynamics. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198804338.003.0005.

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After analysis of general properties of horizontal motion in primitive equations and introduction of principal parameters, the key notion of geostrophic equilibrium is introduced. Quasi-geostrophic reductions of one- and two-layer rotating shallow-water models are obtained by a direct filtering of fast inertia–gravity waves through a choice of the time scale of motions of interest, and by asymptotic expansions in Rossby number. Properties of quasi-geostrophic models are established. It is shown that in the beta-plane approximations the models describe Rossby waves. The first idea of the classical baroclinic instability is given, and its relation to Rossby waves is explained. Modifications of quasi-geostrophic dynamics in the presence of coastal, topographic, and equatorial wave-guides are analysed. Emission of mountain Rossby waves by a flow over topography is demonstrated. The phenomena of Kelvin wave breaking, and of soliton formation by long equatorial and topographic Rossby waves due to nonlinear effects are explained.
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47

Robinson, Walter A. Interactions among planetary waves and the generation of traveling long waves. 1985.

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48

Hollingsworth, Jeffery L. Modeling of forced planetary waves in the Mars atmosphere. 1992.

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49

Volland, Hans. Atmospheric Tidal and Planetary Waves. Springer, 2011.

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50

Volland, Hans. Atmospheric Tidal and Planetary Waves. Springer, 2012.

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