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Exploring the Atmosphere by Remote Sensing Techniques [electronic resource] / edited by Rodolfo Guzzi.

Contributor(s): Material type: TextTextSeries: Lecture Notes in Physics ; 607Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2003Description: XII, 264 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540365365
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 550 23
  • 526.1 23
LOC classification:
  • QC801-809
Online resources:
Contents:
Global Measurement Networks for Atmospheric Studies -- Atmospheric Observations in the Perspective of Changing Climate and Environment, and the Synergy Between Ground-Based, Airborne and Space-Based Measurements -- A Review of Forward-Modeling Requirements -- Electromagnetic Scattering by Nonspherical Particles -- Modelling Information Content Problems of the Radiative Transfer Theory -- The Earth Radiation -- Analytical Inverse Methods for Aerosol Retrieval -- Studying Atmospheric Aerosol by Lidar -- Remote Sounding of the Stratosphere by the Occultation Method: The ORA Experiment.
In: Springer eBooksSummary: Only satellite-based remote-sensing instruments generate the wealth of global data on the concentrations of atmospheric constituents that are necessary for long-term monitoring of the atmosphere. This set of courses and lectures sponsored by ICTP in Trieste focuses on remote sensing for atmospheric applications and inverse methods to assess atmospheric components, gases, aerosols and clouds. It addresses primarily graduate students and young researchers in the atmospheric sciences but will be useful for all those wishing to study various techniques for exploring the atmosphere by remote sensing. Contributions span topics such as on IGOS (Integrated Global Observing Strategy), electromagnetic scattering by non-spherical particles, forward-modelling requirements and the information content problem, Earth radiation, and aerosol monitoring by LIDAR.
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Global Measurement Networks for Atmospheric Studies -- Atmospheric Observations in the Perspective of Changing Climate and Environment, and the Synergy Between Ground-Based, Airborne and Space-Based Measurements -- A Review of Forward-Modeling Requirements -- Electromagnetic Scattering by Nonspherical Particles -- Modelling Information Content Problems of the Radiative Transfer Theory -- The Earth Radiation -- Analytical Inverse Methods for Aerosol Retrieval -- Studying Atmospheric Aerosol by Lidar -- Remote Sounding of the Stratosphere by the Occultation Method: The ORA Experiment.

Only satellite-based remote-sensing instruments generate the wealth of global data on the concentrations of atmospheric constituents that are necessary for long-term monitoring of the atmosphere. This set of courses and lectures sponsored by ICTP in Trieste focuses on remote sensing for atmospheric applications and inverse methods to assess atmospheric components, gases, aerosols and clouds. It addresses primarily graduate students and young researchers in the atmospheric sciences but will be useful for all those wishing to study various techniques for exploring the atmosphere by remote sensing. Contributions span topics such as on IGOS (Integrated Global Observing Strategy), electromagnetic scattering by non-spherical particles, forward-modelling requirements and the information content problem, Earth radiation, and aerosol monitoring by LIDAR.

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