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Table 4:

Kinematical parameters.
VVDS ID $z_{{\rm H}\alpha}$ Inclination Position Angle $r_{\rm t}$ $V_{\rm t}$ Residuals (V) $\chi^2$ $V_{\rm t}/r_{\rm t}$
    $^\circ $ $^\circ $ $^{\prime\prime}$   $\rm km~s^{-1}$   $\rm km~s^{-1}$     $\rm km~s^{-1}$ kpc-1
(1) (2) (3) (4) (5) (6) (7) (8) (9)
020116027 1.53022 $\rm 44 ^{+12}_{-23}$ 219 $\pm$ 8 0.12 32 8 2.4 30
020182331 1.22832 $\rm 52 ^{+ 9}_{-13}$ 244 $\pm$ 6 0.55 134 18 1.2 29
020147106 1.51949 $\rm 37 ^{+15}_{-37}$ 307 $\pm$ 11 0.12 30 3 0.7 29
020261328 1.52891 $\rm 47 ^{+12}_{-21}$ 192 $\pm$ 5 0.77 195 12 2.2 30
220596913 1.26619 $\rm 66 ^{+ 6}_{- 7}$ 253 $\pm$ 5 2.80 325 16 3.5 13
220584167 1.46588 $\rm 49 ^{+ 9}_{-13}$ 178 $\pm$ 1 1.24 280 15 6.6 26
220544103 1.39659 $\rm 61 ^{+ 7}_{-10}$ 205 $\pm$ 7 6.73 762 17 2.8 13
220015726 1.29300 $\rm 25 ^{+21}_{-25}$ 184 $\pm$ 1 0.12 323 16 6.8 309
220014252 1.31014 $\rm 48 ^{+10}_{-15}$ 137 $\pm$ 3 0.12 103 13 2.6 99
(1) Source VVDS identification number, (2) geocentric SINFONI spectroscopic redshift deduced from model fitting, (3) morphological inclination from CFHT I-band images, (4) kinematical Position Angle of the major axis from North to East deduced from model fitting, (5) characteristic radius of the kinematical model, (6) characteristic velocity of the kinematical model, (7) weighted standard deviation of the residual velocity map, (8) reduced $\chi^2$ of the fit, (9) inner velocity gradient derived from the model.

Source LaTeX | All tables | In the text

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