Write the molecular formula for the compound that exhibits a molecular ion at M* = 123.0320. Assume that C, H, N, and O might be present, and use the exact masses below: • Exact mass of carbon = 12.000 • Exact mass of hydrogen = 1.0078 • Exact mass of nitrogen = 14.003 • Exact mass of oxygen = 15.995 (The order of atoms should be carbon, then hydrogen, then the others in alphabetical order. If there is more than one answer, just give one. ) Molecular formula: CóH9N3 Incorrect The calculated mass for this formula is 123.0320, which relates to a formula of CH5NO2. The next closest match to the observed high resolution molar mass is C3H5N3O at M* = 123.0433.

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Write the molecular formula for the compound that exhibits a molecular ion at M* = 123.0320. Assume that C, H, N, and O might be present, and use the exact masses below:
Exact mass of carbon
12.000
• Exact mass of hydrogen = 1.0078
Exact mass of nitrogen = 14.003
Exact mass of oxygen = 15.995
(The order of atoms should be carbon, then hydrogen, then the others in alphabetical order. If there is more than one answer, just give one. )
Molecular formula: C6H9N3
Incorrect
The calculated mass for this formula is 123.0320, which relates to a formula of C,H5NO,. The next closest match to the observed high resolution molar mass is
C5H5N30 at M* = 123.0433.
Transcribed Image Text:Write the molecular formula for the compound that exhibits a molecular ion at M* = 123.0320. Assume that C, H, N, and O might be present, and use the exact masses below: Exact mass of carbon 12.000 • Exact mass of hydrogen = 1.0078 Exact mass of nitrogen = 14.003 Exact mass of oxygen = 15.995 (The order of atoms should be carbon, then hydrogen, then the others in alphabetical order. If there is more than one answer, just give one. ) Molecular formula: C6H9N3 Incorrect The calculated mass for this formula is 123.0320, which relates to a formula of C,H5NO,. The next closest match to the observed high resolution molar mass is C5H5N30 at M* = 123.0433.
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