Table 3: Masses and momenta of the outflows calculated from the $m_{\rm H_2}(v)$ relation using the velocity ranges 2-40  km s-1 and 7-40  km s-1 with a bin width of 1  km s-1. Also shown are $\langle v\rangle_{\rm lobe}$ and $v_{\rm max}$, the latter chosen as the velocity at which $I_{\rm CO}$ is 1/100 that at $v_{\rm min}$ (see text).

2*$\eta $
2*$\alpha$ 2* $L_{\rm lobe}$ (10-1 pc) $\langle v\rangle_{\rm flow}$ ( km s-1) $v_{\rm max}$ ( km s-1) $\displaystyle\frac{m_{\rm observed}}{m_{\rm H_2}}$ $\displaystyle\frac{\vert P_{\rm blue}\vert + \vert P_{\rm red}\vert}{
P_{{\rm H_2}, z}}$
      (2-40) (7-40) (2-40) (7-40) (2-40) (7-40) (2-40) (7-40)

4*0.1
$0^\circ$ 0.91 2.68 8.82 6 17 0.33 $3.0\times10^{-3}$ 0.39 $1.2\times10^{-2}$
  $30^\circ $ 0.53 3.47 10.17 15 25 0.37 $3.4\times10^{-2}$ 0.56 0.15
  $60^\circ $ 0.36 4.94 11.81 20 32 0.35 $7.7\times10^{-2}$ 0.76 0.41
  $90^\circ$ 0.10 5.55 12.50 20 35 0.34 $8.8\times10^{-2}$ 0.85 0.50
4*1 $0^\circ$ 2.01 3.80 8.65 11 17 0.66 $5.4\times10^{-2}$ 1.72 0.32
  $30^\circ $ 1.63 3.70 9.24 13 24 0.64 $5.1\times10^{-2}$ 1.61 0.32
  $60^\circ $ 0.90 3.62 10.57 13 31 0.50 $5.5\times10^{-2}$ 1.26 0.41
  $90^\circ$ 0.15 4.90 11.24 17 36 0.26 $5.6\times10^{-2}$ 0.89 0.45


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