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Here again they found that the mean ridge density in male is more than female.
Frequencies for different types of patterns and mean ridge density were also determined.
The results suggest that mean ridge density in males is 12.32 ridges/25mm2, where as it was 13.94 ridges/25mm2 in females.
The mean ridge density of male in case of middle finger is 12.7 ridges/25mm2 and in females 13.22 ridges/25mm2.
Acc to the present study, the results as shown in Table 2, suggest that mean ridge density of male index finger is 12.32 ridges/25mm2, whereas in female it was 13.94 ridges/25mm2 in Punjabi population.
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Mean value for ridge density and Standard deviation value have been calculated for each pattern and tabulated in Tables 1, 2, 3 and 4.
More significant relationships (n = 8 metrics) were observed with SDSE, with the strongest associations for slough density, mean ridge width, and the average length of straight flow, as well as for a suite of hydrologic connectivity metrics (DCI, LFC and landscape discharge competence – LDC).
The present work investigates the ridge characteristics and ridge density of fingerprints to determine gender differences among population of Punjab.
The ridge density and minutiae or ridge characteristics present in the selected area was counted in each fingerprint (Table 2).
Only short ridge density of 1 and 11 were more likely of male origin.
The study has supported the hypothesis that women tend to have thin ridges i.e. more ridge density as compared to men.
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