The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model Intercomparison Project 6 (CMIP6) and is designed to quantify the climate and air quality impacts of aerosols and chemically-reactive gases. These are specifically near-term climate forcers (NTCFs: methane, tropospheric ozone and aerosols, and their precursors), nitrous oxide and ozone-depleting halocarbons. The aim of AerChemMIP is to answer four scientific questions: 1. How have anthropogenic emissions contributed to global radiative forcing and affected regional climate over the historical period? 2. How might future policies (on climate, air quality and land use) affect the abundances of NTCFs and their climate impacts? 3. How do uncert...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
The Radiative Forcing Model Intercomparison Project (RFMIP) allows estimates of effective radiative ...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model ...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
The Radiative Forcing Model Intercomparison Project (RFMIP) allows estimates of effective radiative ...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model ...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
The Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed by the Coupled-Model In...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
International audienceThe Aerosol Chemistry Model Intercomparison Project (AerChemMIP) is endorsed b...
The Radiative Forcing Model Intercomparison Project (RFMIP) allows estimates of effective radiative ...