Question: will rate micro- scale urban or regional or synoptic or local scale mesoscale global scale 100yr long-lived CFC's species N20 CH4 10yr inter-hemispheric mixing time

will rate
micro- scale urban or regional or synoptic or local scale mesoscale global scale 100yr long-lived CFC's species N20 CH4 10yr inter-hemispheric mixing time 1yr RESIDENCE TIME CH3CCI3 CH, Br moderately long. .CO lived species Aerosols Trop 03 H2O SO2 H2O2 -DMS CH6 CSHB intra-hemispheric mixing time boundary layer mixing time 1 day -NOX 1hr short-lived species -CH3O2 100s HOZ .NO, 1s 1m 10m 100m 1km 10km 100km 1000km 10.000km SPATIAL SCALE OF VARIABILITY Chemical Engineering Homework Problem: Ammonia (NH3), nitrous oxide (N20) and methane (CH4) comprise 1 x 10-8, 3 x 10-5, and 7 x 10-5 % by mass of the Earth's atmosphere, respectively. If the effluxes of these chemicals from the atmosphere are 5 x 10^10, 1 x 10^10, and 4 x 10^11 kg a-1, respectively, what are the residence times of NH3, N20, and CH4 in the atmosphere? (Mass of the Earth's atmosphere = 5 x 10^18kg.) this is the full question Exercise 2.2. Ammonia (NH), nitrous oxide (N2O) and methane (CH) comprise 1 x 10-8, 3 x 10-, and 7 x 10-$% by mass of the Earth's atmosphere, respectively. If the effluxes of these chemicals from the atmosphere are 5 x 10', 1 x 10'', and 4x10'' kg a ',respec- tively, what are the residence times of NH3, N2O, and CH, in the atmosphere? (Mass of the Earth's atmosphere = 5 x 1018kg.)
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