Table 9: Integrated intensities, $\int T_{\rm{MB}}\Delta V$ [K km s-1], for H2O lines in the wide parameter grid for all abundances. Ortho lines for p=1.5.

Density (cm-3)
Integrated intensity $\int T_{\rm{MB}}\Delta V$ [K km s-1]
  $L=2 (L_{\odot}$) $L=25 (L_{\odot}$) $L=7 (L_{\odot}$)
 Abundancea Abundancea Abundancea
 1a 1b 1c 2a 2b 2c 1a 1b 1c 2a 2b 2c 1a 1b 1c 2a 2b 2c
 1 10-101
$4\times 10^5$0.68 0.27 4.7(-2) 2.1 0.18 6.2(-2) 1.2 0.55 0.27 1.3 0.23 0.14 4.1 0.43 0.12 0.59 0.19 9.1(-2)
$1\times 10^6$2.7 2.7 0.37 0.24 2.9 0.64 0.16 6.2 0.70 0.48 2.2 0.54 0.29 2.5 0.95 0.17 1.8 0.56
$5 \times 10^6$3.6 2.3 0.22 3.9 2.1 1.7 11.2 1.9 0.33 15.0 2.0 0.16 8.6 2.1 0.22 3.6 3.9 0.43
 212-101
$4\times 10^5$2.9(-2) 7.2(-2) -2.5(-2) 2.1 -1.3(-2) 4.2(-2) 0.26 0.82 0.92 0.11 -0.37 0.28 5.0 0.30 0.19 -0.24 -0.21 2.48(-3)
$1\times 10^6$3.7 -0.35 3.6(-2) 1.2 -0.21 -0.17 1.0 -1.2 -0.14 -1.7 -1.7 -0.75 -0.43 -0.36 -0.54 -0.83 -0.80 0.88
$5 \times 10^6$-1.3 -1.1 -1.7 -1.4 -1.6 -3.6(-2) -9.1 -9.1 -7.5 -5.5 -9.1 -7.7 -3.9 -4.4 -3.8 -3.9 -3.6 -3.7
 221-212
$4\times 10^5$0.20 0.51 0.16 0.40 0.17 7.4(-2) 1.4 1.2 1.2 0.73 0.67 0.65 1.2 0.60 0.45 0.41 0.32 0.17
$1\times 10^6$4.8 0.29 0.25 0.13 0.42 0.14 6.3 1.5 1.6 0.42 1.2 0.67 2.3(-2) 0.87 0.46 0.20 0.55 0.38
$5 \times 10^6$-0.29 0.16 0.10 -0.59 -0.30 0.48 -5.1 -2.0 1.0 2.0 -2.0 0.42 -1.3 -0.74 0.50 -0.54 -0.69 0.29
 312-303
$4\times 10^5$0.26 0.18 8.3(-2) 0.32 0.11 5.8(-2) 2.0 1.1 0.91 1.7 0.75 0.77 0.95 0.38 0.25 0.65 0.26 0.18
$1\times 10^6$0.82 0.21 9.1(-2) 0.37 0.22 6.9(-2) 8.3 1.5 0.92 3.1 1.3 0.69 1.1 0.60 0.25 1.3 0.47 0.23
$5 \times 10^6$0.57 0.32 6.9(-2) 0.69 0.28 8.8(-2) 4.3 2.7 0.92 4.1 2.5 0.77 1.9 0.89 0.23 0.98 0.95 0.23
 312-221
$4\times 10^5$0.19 0.19 8.3(-2) 0.31 0.10 5.2(-2) 1.5 1.1 0.70 1.4 0.69 0.44 0.83 0.40 0.24 0.47 0.26 0.14
1 $\times 10^6$0.93 0.21 0.12 0.33 0.23 9.2(-2) 5.8 1.6 1.1 2.1 1.4 0.69 0.78 0.67 0.29 0.71 0.50 0.30
$5 \times 10^6$0.37 0.37 0.12 0.33 0.30 0.18 2.4 2.9 1.5 3.3 2.5 1.3 1.1 0.84 0.42 1.0 0.99 0.42
 321-312
$4\times 10^5$0.328 0.302 0.103 0.575 0.155 5.604(-2) 2.84 1.4 0.753 2.67 0.929 0.672 1.52 0.592 0.308 0.867 0.372 0.152
$1\times 10^6$1.44 0.317 0.16 0.633 0.372 0.118 12.1 2.69 1.28 4.49 2.29 0.832 1.53 1.09 0.374 1.59 0.824 0.398
$5 \times 10^6$0.785 0.609 0.157 0.809 0.547 0.236 7.34 5.44 2.28 9.35 5.17 2.05 2.8 1.64 0.60 1.96 1.85 0.612
a The abundance combinations are as follows: 1: X0 = 10-4, 2: X0 = 10-6 and a: $X_{\rm {d}}=10^{-6}$, b: Xd= 10-7, c: $X_{\rm {d}}=10^{-8}$.
Note: $A(B) = A \times 10^{\rm {B}}$.

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