The gas-phase reaction of NONO with F2F2 to form NOFNOF and FF has an activation energy of EaEaEa = 6.30 kJ/molkJ/mol and a frequency factor of AAA1 = 6.00×108 M−1⋅s−1M−1⋅s−1 . The reaction is believed to be bimolecular: NO(g)+F2(g)→NOF(g)+F(g)NO(g)+F2(g)→NOF(g)+F(g) where NONO is a free radical. Free radicals, species with an odd number of unbound electrons, tend to be more reactive. This is one reason by NONO reacts so readily with gases such as fluorine or oxygen gas A. What is the rate constant at 515 ∘C∘C ? B. Draw the Lewis structure for NONO. C. Draw the Lewis structure for NOFNOF. Nitrogen is the central atom.
The gas-phase reaction of NONO with F2F2 to form NOFNOF and FF has an activation energy of EaEaEa = 6.30 kJ/molkJ/mol and a frequency factor of AAA1 = 6.00×108 M−1⋅s−1M−1⋅s−1 . The reaction is believed to be bimolecular: NO(g)+F2(g)→NOF(g)+F(g)NO(g)+F2(g)→NOF(g)+F(g) where NONO is a free radical. Free radicals, species with an odd number of unbound electrons, tend to be more reactive. This is one reason by NONO reacts so readily with gases such as fluorine or oxygen gas A. What is the rate constant at 515 ∘C∘C ? B. Draw the Lewis structure for NONO. C. Draw the Lewis structure for NOFNOF. Nitrogen is the central atom.
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Chapter1: Chemical Foundations
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The gas-phase reaction of NONO with F2F2 to form NOFNOF and FF has an activation energy of EaEaEa = 6.30 kJ/molkJ/mol and a frequency factor of AAA1 = 6.00×108 M−1⋅s−1M−1⋅s−1 . The reaction is believed to be bimolecular:
NO(g)+F2(g)→NOF(g)+F(g)NO(g)+F2(g)→NOF(g)+F(g)
where NONO is a free radical. Free radicals, species with an odd number of unbound electrons, tend to be more reactive. This is one reason by NONO reacts so readily with gases such as fluorine or oxygen gas
A. What is the rate constant at 515 ∘C∘C ?
B. Draw the Lewis structure for NONO.
C. Draw the Lewis structure for NOFNOF. Nitrogen is the central atom.
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