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For Class='Airborne Organic Aerosol': NET_H/C[i]=Log([HRi]+[OCH2]+[C2H4])-Log([N1][CO]+[C2]2+[C2H2])-0.3 [OC]/[H+]=[OC]/([HC]) [H]/[C]=([H]+[C])/([H][C]) For Class='Ambient Organic Aerosol': NET_H/C[i]=Log([HRi]+[OCH2]+[C2H4])-Log([N2][CO]+[C2]2+[C2H2])-0.3 [OC]/[H2+]=[OC]/([H2+]) [H]/[C]=([H2+])([HC]/[HC]) For Class='Aerosol': NET_H/C[i]=Log([HRi]+[OCH2]+[C2H4])-Log([N2][CO]+[C2]2+[C2H2])-0.3 [OC]/[H2+]=[OC]/([H2+]) [H]/[C]=([H2+])/[HC] vw code calculator v1.0 1 There are four groups of input parameters that define the conditions of interest. The parameter description explains what these parameters mean. For more detailed information on the data definition and calculation parameters consult the original APES papers
The original APES equation is simplified a couple of steps to make the equations easier to follow by reducing the parameter list to the most intuitive groupings. The equations are here shown as they appear in the third-party equation module created by Bruce Aiken, a group at the University of British Columbia called Keggs, which is based on work by Keggs and Stanton. d2c66b5586