211,85 €
235,39 €
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Storm and Cloud Dynamics
Storm and Cloud Dynamics
211,85
235,39 €
  • We will send in 10–14 business days.
Storm and Cloud Dynamics focuses on the dynamics of clouds and of precipitating mesoscale meteorological systems. Clouds and precipitating mesoscale systems represent some of the most important and scientifically exciting weather systems in the world. These are the systems that produce torrential rains, severe winds including downburst and tornadoes, hail, thunder and lightning, and major snow storms. Forecasting such storms represents a major challenge since they are too small to be adequately…
235.39
  • Publisher:
  • ISBN-10: 0120885425
  • ISBN-13: 9780120885428
  • Format: 16.3 x 23.6 x 4.8 cm, kieti viršeliai
  • Language: English
  • SAVE -10% with code: EXTRA

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Storm and Cloud Dynamics focuses on the dynamics of clouds and of precipitating mesoscale meteorological systems. Clouds and precipitating mesoscale systems represent some of the most important and scientifically exciting weather systems in the world. These are the systems that produce torrential rains, severe winds including downburst and tornadoes, hail, thunder and lightning, and major snow storms. Forecasting such storms represents a major challenge since they are too small to be adequately resolved by conventional observing networks and numerical prediction models.

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  • Author: William R Cotton
  • Publisher:
  • ISBN-10: 0120885425
  • ISBN-13: 9780120885428
  • Format: 16.3 x 23.6 x 4.8 cm, kieti viršeliai
  • Language: English English

Storm and Cloud Dynamics focuses on the dynamics of clouds and of precipitating mesoscale meteorological systems. Clouds and precipitating mesoscale systems represent some of the most important and scientifically exciting weather systems in the world. These are the systems that produce torrential rains, severe winds including downburst and tornadoes, hail, thunder and lightning, and major snow storms. Forecasting such storms represents a major challenge since they are too small to be adequately resolved by conventional observing networks and numerical prediction models.

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