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2. Variability in Tropospheric Oxidation from Polluted to Remote Regions
3. The Impact of Organic Aerosol Volatility on Particle Microphysics and Global Climate
4. Temperature and precipitation extremes in the United States: Quantifying the responses to anthropogenic aerosols and greenhouse gases
5. On the surface impact of Arctic stratospheric ozone extremes
6. Projecting policy – relevant metrics for high summertime ozone pollution events over the 1 Eastern United States due to climate and emission changes during the 21st century
7. Uncertainties in isoprene photochemistry and emissions: implications for the oxidative capacity of past and present atmospheres and for climate forcing agents
8. Assessment of source contributions to seasonal vegetative exposure to ozone in the U.S.
9. Biases in Southern Hemisphere climate trends induced by coarsely specifying the temporal resolution of stratospheric ozone
10. Distinguishing the impacts of ozone-depleting substances and well-mixed greenhouse gases on Arctic stratospheric ozone and temperature trends
11. Global carbon budget 2013
12. Influence of projected Arctic sea ice loss on polar stratospheric ozone and circulation in spring
13. Monitoring high-ozone events in the US Intermountain West using TEMPO geostationary satellite observations
14. The response midlatitude jets to increased CO2: Distinguishing the roles of sea surface temperature and direct radiative forcing
15. The surface impacts of Arctic stratospheric ozone anomalies
16. Impact of preindustrial to present-day changes in short-lived pollutant emissions on atmospheric composition and climate forcing
17. Impacts of climate change on surface ozone and intercontinental ozone pollution: A multi-model study
18. Interannual variability in tropical tropospheric ozone and OH: The role of lightning
19. Preindustrial to present-day changes in tropospheric hydroxyl radical and methane lifetime from the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP)
20. Sensitivity of tropospheric oxidants to biomass burning emissions: implications for radiative forcing
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