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Table 5.

Main properties of the linear fits to data shown in Figs. 511.

Scaling relation (x − y) (1) m(2) q(2) R (σ, n. pts)(2) XCO(3)
log(Σstar) – log(Σdust)/log(Σstar) −0.56 ± 0.02 −2.19 ± 0.04 −0.82 (0.22, 303)
log(ΣSSFR) – log(Σdust)/log(Σstar) 0.63 ± 0.06 3.30 ± 0.62 0.52 (0.32, 299)
log(12 + log(O/H) – log(Σdust)/log(Σstar) −0.80 ± 0.09 3.64 ± 0.75 −0.56 (0.17, 181)
log(Σstar) – log(DGR) 0.37 ± 0.02 −2.92 ± 0.04 0.80 (0.14, 202) Const.
log(Σstar) – log(DGR) 0.37 ± 0.02 −2.97 ± 0.04 0.81 (0.14, 181) Z–dep.
log(ΣSSFR) – log(DGR) −0.18 ± 0.07 −4.09 ± 0.69 −0.18 (0.23, 202) const.
log(ΣSSFR) – log(DGR) −0.29 ± 0.10 −5.24 ± 0.98 −0.22 (0.24, 181) Z–dep.
12 + log(O/H) – log(DGR) 1.17 ± 0.09 −12.28 ± 0.73 0.72 (0.09, 181) Const.
12 + log(O/H) – log(DGR) 1.28 ± 0.08 −13.23 ± 0.67 0.77 (0.17, 181) Z–dep.
fgas – log(DGR) −0.63 ± 0.02 −2.88 ± 0.02 0.89 (0.11, 202) Const.
fgas – log(DGR) −0.66 ± 0.02 −2.92 ± 0.02 0.90 (0.10, 181) Z–dep.
log(Σstar) – log(DTM) 0.11 ± 0.01 −0.65 ± 0.03 0.51 (0.10, 181) Const.
log(Σstar) – log(DTM) 0.12 ± 0.01 −0.68 ± 0.02 0.57 (0.09, 181) Z–dep.
log(ΣSSFR) – log(DTM) −0.19 ± 0.04 −2.43 ± 0.43 −0.32 (0.11, 181) Const.
log(ΣSSFR) – log(DTM) −0.17 ± 0.04 −2.20 ± 0.43 −0.29 (0.11, 181) Z–dep.
12 + log(O/H) – log(DTM) 0.15 ± 0.06 −1.71 ± 0.49 0.19 (0.11, 181) Const.
12 + log(O/H) – log(DTM) 0.22 ± 0.05 −2.36 ± 0.47 0.29 (0.11, 181) Z–dep.
fgas – log(DTM) −0.22 ± 0.02 −0.66 ± 0.02 −0.66 (0.09, 181) Const.
fgas – log(DTM) −0.22 ± 0.05 −0.68 ± 0.02 −0.68 (0.08, 181) Z–dep.

Notes.

(1)

Explored scaling relation.

(2)

Slope m, intercept q, Pearson correlation coefficient R, dispersion σ, and number of pixels.

(3)

The two assumptions on XCO: “Const.” corresponds to constant XCO, “Z–dep.” to metallicity-dependent XCO (see Sect. 3.2).

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