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Table 7:

The best-fit parameters for the 15 investigated CCT versus parameter. The parameters were fit to CCT = CCT0 ( ${\rm parameter})^{\Gamma }$.
Parameter $\Gamma$ CCT0 $\Gamma$ CCT0 $\Gamma$ CCT0
  All All SCC  SCC  WCC+NCC  WCC+NCC 
    h71-1/2 Gyr   h71-1/2 Gyr   h71-1/2 Gyr
(1) (2) (3) (4) (5) (6) (7)
$K_{0}/(100\; h_{71}^{-1/3}\;\rm {keV}\;\rm {cm}^2)$ 1.085 $\pm$ 0.036 4.3 $\pm$ 0.6 0.843 $\pm$ 0.109 2.7 $\pm$ 0.8 1.278 $\pm$ 0.073 3.9 $\pm$ 1.3
$\Sigma_{0}/(10^{-6}$ photons cm-2 s-1 arcsec-2) -0.894 $\pm$ 0.061 2.6 $\pm$ 0.3 0.991 $\pm$ 0.737 $\rm0.090^{+0.110}_{-0.063}$ -0.830 $\pm$ 0.073 3.3 $\pm$ 0.4
$r_{\rm c}/(r_{500}$10-2) 0.932 $\pm$ 0.060 1.6 $\pm$ 0.2 0.378 $\pm$ 0.068 0.63 $\pm$ 0.06 0.698 $\pm$ 0.085 2.8 $\pm$ 0.5
$n_{0}/(10^{-2}\; h_{71}^{1/2}\;\rm {cm}^{-3})$ -1.194 $\pm$ 0.051 3.5 $\pm$ 0.2 -0.860 $\pm$ 0.151 1.8 $\pm$ 0.4 -1.016 $\pm$ 0.046 4.1 $\pm$ 0.2
$K_{\rm BIAS}/(100\; h_{71}^{-1/3}\;\rm {keV}\;\rm {cm}^2)$ 0.975 $\pm$ 0.062 4.7 $\pm$ 1.2 0.501 $\pm$ 0.081 1.5 $\pm$ 0.3 1.314 $\pm$ 0.166 4.4 $\pm$ 3.3
exp[Cooling Radius/(10-2 ${r}_{\rm vir}$)]$^{\dagger}$ -0.350 $\pm$ 0.025 11.1 $\pm$ 1.1 -0.584 $\pm$ 1.055 $\rm 70.46^{+653.06}_{-70.45}$ -0.336 $\pm$ 0.026 12.2 $\pm$ 1.0
$(\dot{M}_{\rm Spec}$/M500)/(10-14 h71 yr-1) -0.598 $\pm$ 0.121 1.5 $\pm$ 0.4 -0.996 $\pm$ 1.313 0.78 $\pm$ 0.33 -0.404 $\pm$ 0.163 4.0 $\pm$ 0.9
$(\dot{M}_{\rm Classical}$/M500)/(10-14 h71-1 yr-1) -0.816 $\pm$ 0.742 $\rm 1.1^{+2.3}_{-1.0}$ 0.966 $\pm$ 0.675 $\rm0.018^{+0.040}_{-0.016}$ -0.280 $\pm$ 0.163 4.1 $\pm$ 1.3
exp$[\alpha$] $^{\dagger}$ -3.726 $\pm$ 0.198 34 $\pm$ 6 -1.610 $\pm$ 0.268 2.8 $\pm$ 0.9 -3.589 $\pm$ 0.345 35 $\pm$ 7
$L_{\rm X}/(10^{32} h_{71}^{1/2}\; {\rm ergs}\; {\rm s}^{-1}\; {\rm keV}^{-1}\; {M}_{\odot}^{-1}) $ -3.057 $\pm$ 0.250 0.41 $\pm$ 0.07 -1.114 $\pm$ 0.167 0.43 $\pm$ 0.04 -3.795 $\pm$ 0.699 0.24 $\pm$ 0.14
exp[T0/ $T_{\rm vir}$] $^{\dagger}$ 4.931 $\pm$ 0.365 0.043 $\pm$ 0.013 -0.102 $\pm$ 0.290 0.76 $\pm$ 0.10 5.047 $\pm$ 2.421 $\rm0.041^{+0.099}_{-0.037}$
exp[Slope of T-profile] $^{\dagger}$ 6.908 $\pm$ 1.209 5.2 $\pm$ 1.0 -1.208 $\pm$ 0.271 0.32 $\pm$ 0.04 17.48 $\pm$ 16.60 8.4 $\pm$ 4.2
exp[T0(0.5-2.0 keV)/T0(2.0-7.0 keV)] $^{\dagger}$ -3.469 $\pm$ 3.389 $\rm 28^{+75}_{-26}$ -1.027 $\pm$ 0.586 1.0 $\pm$ 0.5 -3.957 $\pm$ 2.316 $\rm 125^{+215}_{-64}$
${M}_{\rm gas}$/(10-3 h71-3/2 M500) -1.997 $\pm$ 0.136 0.58 $\pm$ 0.10 0.894 $\pm$ 0.229 0.49 $\pm$ 0.06 -1.832 $\pm$ 0.171 0.93 $\pm$ 0.20
$(\dot{M}_{\rm Spec2}$/M500)/(10-14 h71 yr-1) -0.375 $\pm$ 0.028 3.3 $\pm$ 0.4 -0.708 $\pm$ 0.248 4.3 $\pm$ 3.5 -0.347 $\pm$ 0.058 6.3 $\pm$ 0.8
$\Sigma_{0}/($kT10-7 photons cm-2 s-1 keV-1) -0.892 $\pm$ 0.039 5.5 $\pm$ 0.4 -0.630 $\pm$ 0.221 2.5 $\pm$ 1.6 -0.914 $\pm$ 0.063 5.7 $\pm$ 0.4
${M}_{\rm gas}$/(10-4 kT M500 keV-1) -1.654 $\pm$ 0.089 2.9 $\pm$ 0.2 -0.805 $\pm$ 0.138 1.02 $\pm$ 0.17 -1.458 $\pm$ 0.127 3.6 $\pm$ 0.4

Notes. Columns: (1) the parameter name; (2) the fitted slope ($\Gamma$) including all clusters; (3) the fitted normalization (CCT0) including all clusters; (4) $\Gamma$ for the SCC clusters; (5) CCT0 for the SCC clusters; (6) $\Gamma$ for WCC and NCC clusters and (7) CCT0 for the WCC and NCC clusters.
$^{\dagger}$For this parameter the fitting function was CCT = CCT0 (exp $[{\rm parameter}]$)$^{\Gamma}$.


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