start iso mp2; freeze atomic; end print none python from __future__ import print_function energies = {} c2h4 = ''' geometry noprint symmetry d2h C 0 0 0.672 H 0 0.935 1.238 end ''' ch4 = ''' geometry noprint symmetry td C 0 0 0 H 0.634 0.634 0.634 end ''' h2 = ''' geometry noprint H 0 0 0.378 H 0 0 -0.378 end ''' def energy(basis, geometry): input_parse(''' basis spherical noprint c library %s ; h library %s end ''' % (basis, basis)) input_parse(geometry) return task_energy('mp2') for basis in ('sto-3g', '6-31g', '6-31g*', 'cc-pvdz', 'cc-pvtz'): energies[basis] = 2*energy(basis, ch4) - \ 2*energy(basis, h2) - \ energy(basis, c2h4) if (ga_nodeid() == 0): print(basis, ' %8.6f' % energies[basis]) end task python