@@ -143,9 +143,7 @@ aero_dist = ppmc.AeroDist(
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" num_conc" : 3200 / si.cm** 3 ,
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" geom_mean_diam" : 8.64 * si.nm,
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" log10_geom_std_dev" : 0.28 ,
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- }
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- },
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- {
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+ },
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" diesel" : {
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" mass_frac" : [{" OC" : [0.3 ]}, {" BC" : [0.7 ]}],
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" diam_type" : " geometric" ,
@@ -187,9 +185,7 @@ aero_dist = ppmc.AeroDist(aero_data, (
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" num_conc" => 3200 / si. cm^ 3 ,
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" geom_mean_diam" => 8.64 * si. nm,
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" log10_geom_std_dev" => .28 ,
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- )
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- ),
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- Dict (
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+ ),
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" diesel" => Dict (
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" mass_frac" => (Dict (" OC" => (.3 ,)), Dict (" BC" => (.7 ,))),
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" diam_type" => " geometric" ,
@@ -198,7 +194,7 @@ aero_dist = ppmc.AeroDist(aero_data, (
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" geom_mean_diam" => 50 * si. nm,
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" log10_geom_std_dev" => .24 ,
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)
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- )
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+ ),
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))
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n_part = 100
@@ -232,9 +228,7 @@ aero_dist = ppmc.AeroDist(aero_data, py.tuple({ ...
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"num_conc", 3200 / si.cm^3, ...
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"geom_mean_diam", 8.64 * si.nm, ...
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"log10_geom_std_dev", .28 ...
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- )) ...
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- )), ...
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- py.dict(pyargs( ...
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+ )), ...
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"diesel", py.dict(pyargs( ...
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"mass_frac", py.tuple({ ...
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py.dict(pyargs("OC", py.tuple({.3}))), ...
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