2.512e+03 3.162e+03 3.981e+03 5.012e+03 6.310e+03 7.943e+03 1.000e+04 1.259e+04 1.585e+04 1.995e+04 2.512e+04 3.162e+04 3.981e+04 5.012e+04 6.310e+04 7.943e+04 1.000e+05 1.259e+05 1.585e+05 1.995e+05 2.512e+05 3.162e+05 3.981e+05 5.012e+05 6.310e+05 7.943e+05 1.000e+06 1.259e+06 1.585e+06 1.995e+06 2.512e+06 3.162e+06 3.981e+06 1 1 8.714e+02 0.000e+00 0.000e+00 0.000e+00 0.000e+00 0.000e+00 0.000e+00 0.000e+00 0.000e+00 3.756e-289 4.145e-232 8.641e-187 8.763e-151 3.580e-122 1.944e-99 2.291e-81 5.261e-67 1.380e-55 1.658e-46 2.742e-39 1.533e-33 5.731e-29 2.497e-25 1.991e-22 4.081e-20 2.861e-18 8.513e-17 1.282e-15 1.127e-14 6.432e-14 2.609e-13 8.049e-13 1.997e-12 4.162e-12 -1 Total direct collisional ionization rate coefficient 1st line gives the temperatures (in K) at which the rate coefficients have been calculated. Remaining lines have the format: initial level before ionisation, final level after ionisation, ionisation potential of initial level in eV, collisional ionisation rate coefficients in cm^3 s^-1 using a Maxwellian distribution at each given temperature Data source: Dufresne, Del Zanna and Badnell (2020), MNRAS, 497, 1443. Produced by R.P. Dufresne on Thu Jun 11 17:24:03 2020 -1