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To do this we follow the Migration rate computing algorithm.
To do this we apply again the Migration rate computing algorithm defined previously by replacing the Equations (3), (4), and (5) by these analogous (7), (10), and (9), respectively.
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Figure 3b shows the relative international migration rate computed as the total flows of international migration flowing into and out of each Spanish region over the total flows of international migration in Spain.
In order to clarify the previously obtained results, migration rates were computed with the MIGRATE software.
To understand the relative prevalence of temporary migration compared to permanent migration, the Crude Migration Rates were computed in 2006, a year in the middle of the observation period.
Figure 3a shows the average relative internal residential migration rate for each region computed as the ratio of each region's residential migration (across Spanish Autonomous Communities) over total interregional migration.
However, for models with more than one linked locus under selection, previous studies relied on numerical solutions or simulations to compute the effective migration rate.
The number of emigrants M from a deme is computed as follows: M t = mN t, where m is the migration rate, and N t is the population density of the deme at generation t.
Migration rate (m) [ 37], and from m the absolute number of migrants exchanged between two populations (M), were computed.
Other 18 remaining provinces have a negative net migration rate.
Migration rate is quantitated in the right panel.
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