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meteorology & atmospheric sciences (459) 459
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Journal Article
Journal Article
Journal Article
Atmospheric chemistry and physics, ISSN 1680-7324, 2012, Volume 12, Issue 24, pp. 11975 - 11984
Journal Article
Journal of geophysical research. Atmospheres, ISSN 2169-8996, 2019, Volume 124, Issue 9, pp. 5058 - 5087
The method to derive aerosol size distributions from in situ stratospheric measurements from the University of Wyoming is modified to include an explicit counting efficiency function (CEF... 
in situ aerosol measurements | stratospheric aerosol surface area densities | stratospheric aerosol extinction | comparisons of in situ and remote aerosol measurements | LIGHT-SCATTERING | OPTICAL-PROPERTIES | SULFURIC-ACID | CONDENSATION NUCLEI | LIDAR | VERTICAL PROFILES | POLAR STRATOSPHERIC CLOUDS | VOLCANIC AEROSOL | SAGE-II | HALOE | METEOROLOGY & ATMOSPHERIC SCIENCES | Measurement | Retrieval | Aerosol extinction | Size distribution | Satellite-borne instruments | Methodology | Laboratories | Global climate models | Gaussian distribution | Global climate | Experiments | Earth | Efficiency | Halogens | Measurement methods | Aerosol size distribution | Distribution functions | Instruments | Extinction | Particle counters | Stratosphere | Chemical reactions | Ozone | Climate models | Calibration | Organic chemistry | Satellites | Area | Particle size distribution | Normal distribution | Aerosols | Sunlight | Radiation counters | Error correction | Surface area | Occultation | Balloons | Volcanic Effects | Paleoceanography | Natural Hazards | Middle Atmosphere | Atmospheric Effects | Aerosol and Clouds | Oceanography | Aerosols and Particles | Atmospheric | Instruments and Techniques | Composition and Chemistry | Pollution | Stratospheric aerosol during the post Pinatubo era | Urban and Regional | Biological and Chemical | Atmospheric Composition and Structure | Volcanology | processes , interactions, and impact
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2010, Volume 107, Issue 38, pp. 16428 - 16431
Aerosols could be injected into the upper atmosphere to engineer the climate by scattering incident sunlight so as to produce a cooling tendency that may mitigate the risks posed by the accumulation of greenhouse gases... 
Geoengineering | Climate change | Stratopause | Aerosols | Stratosphere | Climate models | Sulfates | Accommodation coefficient | Radiative forcing | Environmental engineering | Solar radiation management | Atmospheric physics | MOUNT-PINATUBO | MULTIDISCIPLINARY SCIENCES | atmospheric physics | ATMOSPHERE | OZONE DEPLETION | TRANSPORT | solar radiation management | WATER-VAPOR | ERUPTION | GRAVITO-PHOTOPHORESIS | STRATOSPHERE | climate change | CLIMATE | Research | Properties | Physical Sciences
Journal Article
Philosophical transactions of the Royal Society of London. Series A: Mathematical, physical, and engineering sciences, ISSN 1471-2962, 11/2008, Volume 366, Issue 1882, pp. 4007 - 4037
Journal Article