
A description is given of a pressure driven shock tube and the techniques which have been developed to investigate the variation with gas temperature of the electron-molecular ion dissociative recombination coefficient alpha . Double probe detectors are used to measure, at times in the afterglow, electron densities of a plasma slice located between the shock front and contact surface of the nearly one-dimensional gas flow. The experimental parameters are discussed in relation to their influence on the recombination process. In krypton at 900 K, alpha is found to have the value 4.2*10-6 cm3s-1 and at 2700 K it has followed a T-3/2 variation to the value 9.6*10-7 cm3s-1.
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