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Table 3.

The coefficients of the PLZ and PWZ relations.

α β γ rms R2 Bands μ0LMC N dat LMC $ \mathrm{N}_{\mathrm{dat}}^{\mathrm{LMC}} $ μ0SMC N dat SMC $ \mathrm{N}_{\mathrm{dat}}^{\mathrm{SMC}} $
0.672 ± 0.019 –1.524 ± 0.029 0.1409 ± 0.01 0.281 0.76 GBP
0.385 ± 0.015 –1.716 ± 0.023 0.1106 ± 0.0083 0.233 0.85 G
–0.056 ± 0.011 –1.92 ± 0.019 0.0859 ± 0.0064 0.183 0.92 GRP
–0.101 ± 0.011 –1.955 ± 0.018 0.0865 ± 0.0059 0.174 0.93 I
–0.4976 ± 0.0071 –2.207 ± 0.012 0.0755 ± 0.0043 0.119 0.97 J
–0.8003 ± 0.0041 –2.4264 ± 0.0079 0.0711 ± 0.0027 0.073 0.99 H
–0.8435 ± 0.0038 –2.4546 ± 0.0074 0.0707 ± 0.0024 0.069 0.99 K
–0.5506 ± 0.0068 –2.22 ± 0.011 0.0741 ± 0.0043 0.116 0.97 Jvista
–0.3016 ± 0.0094 –2.091 ± 0.014 0.0778 ± 0.0053 0.146 0.96 Yvista
–0.8738 ± 0.0041 –2.4612 ± 0.0073 0.0669 ± 0.0026 0.068 0.99 K s vista $ \rm K_s^{vista} $
0.442± 0.015 –0.864± 0.050 2.170± 0.026 0.439 0.51 ulsst
0.755 ± 0.021 –1.397 ± 0.031 0.162 ± 0.012 0.316 0.68 glsst
0.395 ± 0.014 –1.744 ± 0.022 0.0902 ± 0.0081 0.226 0.86 rlsst
0.317 ± 0.012 –1.906 ± 0.019 0.0859 ± 0.0066 0.186 0.92 ilsst
0.312 ± 0.01 –2.003 ± 0.016 0.0866 ± 0.0055 0.165 0.94 zlsst
0.3015 ± 0.0094 –2.051 ± 0.016 0.0835 ± 0.005 0.156 0.95 ylsst
–0.6135 ± 0.0041 –2.7135 ± 0.0086 –0.1119 ± 0.003 0.073 0.99 rgrlsst
–0.2459 ± 0.0027 –2.5608 ± 0.005 –0.0127 ± 0.0019 0.046 1.00 igilsst
0.2958 ± 0.0057 –2.3149 ± 0.01 0.089 ± 0.0035 0.099 0.98 zizlsst
0.0476 ± 0.0043 –2.4168 ± 0.0068 0.0393 ± 0.0026 0.072 0.99 ygylsst
–1.1254 ± 0.0028 –2.5255 ± 0.0051 0.0402 ± 0.0018 0.047 1.00 IVI 18.44(0.11) 149 18.80(0.31) 26
–0.9046 ± 0.0039 –2.4457 ± 0.0066 0.0598 ± 0.0023 0.067 0.99 JVJ
–0.8329 ± 0.0044 –2.4199 ± 0.0078 0.0662 ± 0.0026 0.074 0.99 JIJ
–1.0949 ± 0.0027 –2.6084 ± 0.0056 0.0613 ± 0.0018 0.044 1.00 HVH
–1.0901 ± 0.0029 –2.6216 ± 0.0055 0.0647 ± 0.0019 0.044 1.00 HIH
–1.3373 ± 0.0041 –2.8156 ± 0.0071 0.0632 ± 0.0022 0.052 1.00 HJH
–1.0243 ± 0.0029 –2.5665 ± 0.0059 0.0649 ± 0.0018 0.049 1.00 KVK
–1.0153 ± 0.003 –2.5701 ± 0.006 0.0671 ± 0.0019 0.050 1.00 KIK
–1.084 ± 0.0027 –2.6267 ± 0.0062 0.0674 ± 0.0017 0.044 1.00 KJK
–0.9207 ± 0.0036 –2.5049 ± 0.0065 0.0702 ± 0.0023 0.061 0.99 KHK
–0.9669 ± 0.0034 –2.4682 ± 0.0061 0.0543 ± 0.0022 0.060 0.99 JVI
–1.1004 ± 0.0026 –2.5935 ± 0.0051 0.0575 ± 0.0018 0.043 1.00 HVI
–1.036 ± 0.0028 –2.5617 ± 0.0057 0.062 ± 0.002 0.049 1.00 KVI
–0.9917 ± 0.0032 –2.4655 ± 0.0055 0.0065 ± 0.0022 0.059 0.99 GG BP G RP $ \rm GG_{BP}G_{RP} $ 18.48(0.13) 149 18.89(0.26) 26
–1.1208 ± 0.0029 –2.6456 ± 0.0062 0.0614 ± 0.0016 0.044 1.00 ( K s JK s ) vista $ \rm (K_sJK_s)^{vista} $ 18.45(0.13) 149 18.82(0.32) 26
–1.1425 ± 0.0027 –2.6349 ± 0.0059 0.0618 ± 0.0018 0.044 1.00 ( K s YK s ) vista $ \rm (K_sYK_s)^{vista} $ 18.47(0.12) 149 18.87(0.34) 26

Notes. The coefficients of the predicted relations mag = α + βlog P + γ[Fe/H], fitted for different band combinations and 886 models, are listed in columns 1–3. Column 4 reports the root mean square (rms) of the residuals around the fit, and Column 5 contains the coefficient of determination R2. Column 6 indicates the band or the band combination. The last four columns present the median (with robust standard deviation) of the distance distributions obtained by applying the fitted relation to a sample of T2Cs belonging to the LMC and SMC.

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