Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals

Hansen I, Kohse-Höinghaus K, Zetzsch C, Stuhl F (1976)
Chemical Physics Letters 42(2): 370-372.

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Using resonance fluorescence the kinetics of NH (X3 [Sigma]-) was studied in the pulsed vacuum UV photolysis of mixtures of NH3 and NO. The rate constant of the reaction NH + NO was determined to be (4.7 = 1.2) x lO - 11 cm 3 molecule - 1 s - 1
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Hansen I, Kohse-Höinghaus K, Zetzsch C, Stuhl F. Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals. Chemical Physics Letters. 1976;42(2):370-372.
Hansen, I., Kohse-Höinghaus, K., Zetzsch, C., & Stuhl, F. (1976). Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals. Chemical Physics Letters, 42(2), 370-372.
Hansen, I., Kohse-Höinghaus, K., Zetzsch, C., and Stuhl, F. (1976). Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals. Chemical Physics Letters 42, 370-372.
Hansen, I., et al., 1976. Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals. Chemical Physics Letters, 42(2), p 370-372.
I. Hansen, et al., “Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals”, Chemical Physics Letters, vol. 42, 1976, pp. 370-372.
Hansen, I., Kohse-Höinghaus, K., Zetzsch, C., Stuhl, F.: Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals. Chemical Physics Letters. 42, 370-372 (1976).
Hansen, I., Kohse-Höinghaus, Katharina, Zetzsch, C., and Stuhl, F. “Detection of NH (X3 [Sigma]-) by resonance fluorescence in the pulsed vacuum UV photolysis of NH3 and its application to reactions of NH radicals”. Chemical Physics Letters 42.2 (1976): 370-372.
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