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mass fractions of silver fulminate

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silver fulminate | elemental composition
silver fulminate | elemental composition

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Find the elemental composition for silver fulminate in terms of the atom and mass percents: atom percent = N_i/N_atoms × 100% mass percent = (N_im_i)/m × 100% Plan: • Write the chemical formula and gather atomic masses from the periodic table. • Determine values for N_i, m_i, N_atoms and m using these items. • Finally, compute the percents and check the results. Write the chemical formula: CAgNO Use the chemical formula to count the number of atoms, N_i, for each element and find the total number of atoms, N_atoms, per molecule:  | number of atoms  Ag (silver) | 1  C (carbon) | 1  N (nitrogen) | 1  O (oxygen) | 1  N_atoms = 1 + 1 + 1 + 1 = 4 Divide each N_i by N_atoms to calculate atom fractions. Then use the property that atom fractions must sum to one to check the work:  | number of atoms | atom fraction  Ag (silver) | 1 | 1/4  C (carbon) | 1 | 1/4  N (nitrogen) | 1 | 1/4  O (oxygen) | 1 | 1/4 Check: 1/4 + 1/4 + 1/4 + 1/4 = 1 Compute atom percents using the atom fractions:  | number of atoms | atom percent  Ag (silver) | 1 | 1/4 × 100% = 25.0%  C (carbon) | 1 | 1/4 × 100% = 25.0%  N (nitrogen) | 1 | 1/4 × 100% = 25.0%  O (oxygen) | 1 | 1/4 × 100% = 25.0% Look up the atomic mass, m_i, in unified atomic mass units, u, for each element in the periodic table:  | number of atoms | atom percent | atomic mass/u  Ag (silver) | 1 | 25.0% | 107.8682  C (carbon) | 1 | 25.0% | 12.011  N (nitrogen) | 1 | 25.0% | 14.007  O (oxygen) | 1 | 25.0% | 15.999 Multiply N_i by m_i to compute the mass for each element. Then sum those values to compute the molecular mass, m:  | number of atoms | atom percent | atomic mass/u | mass/u  Ag (silver) | 1 | 25.0% | 107.8682 | 1 × 107.8682 = 107.8682  C (carbon) | 1 | 25.0% | 12.011 | 1 × 12.011 = 12.011  N (nitrogen) | 1 | 25.0% | 14.007 | 1 × 14.007 = 14.007  O (oxygen) | 1 | 25.0% | 15.999 | 1 × 15.999 = 15.999  m = 107.8682 u + 12.011 u + 14.007 u + 15.999 u = 149.8852 u Divide the mass for each element by m to calculate mass fractions. Then use the property that mass fractions must sum to one to check the work:  | number of atoms | atom percent | mass fraction  Ag (silver) | 1 | 25.0% | 107.8682/149.8852  C (carbon) | 1 | 25.0% | 12.011/149.8852  N (nitrogen) | 1 | 25.0% | 14.007/149.8852  O (oxygen) | 1 | 25.0% | 15.999/149.8852 Check: 107.8682/149.8852 + 12.011/149.8852 + 14.007/149.8852 + 15.999/149.8852 = 1 Compute mass percents using the mass fractions: Answer: |   | | number of atoms | atom percent | mass percent  Ag (silver) | 1 | 25.0% | 107.8682/149.8852 × 100% = 71.97%  C (carbon) | 1 | 25.0% | 12.011/149.8852 × 100% = 8.013%  N (nitrogen) | 1 | 25.0% | 14.007/149.8852 × 100% = 9.345%  O (oxygen) | 1 | 25.0% | 15.999/149.8852 × 100% = 10.67%
Find the elemental composition for silver fulminate in terms of the atom and mass percents: atom percent = N_i/N_atoms × 100% mass percent = (N_im_i)/m × 100% Plan: • Write the chemical formula and gather atomic masses from the periodic table. • Determine values for N_i, m_i, N_atoms and m using these items. • Finally, compute the percents and check the results. Write the chemical formula: CAgNO Use the chemical formula to count the number of atoms, N_i, for each element and find the total number of atoms, N_atoms, per molecule: | number of atoms Ag (silver) | 1 C (carbon) | 1 N (nitrogen) | 1 O (oxygen) | 1 N_atoms = 1 + 1 + 1 + 1 = 4 Divide each N_i by N_atoms to calculate atom fractions. Then use the property that atom fractions must sum to one to check the work: | number of atoms | atom fraction Ag (silver) | 1 | 1/4 C (carbon) | 1 | 1/4 N (nitrogen) | 1 | 1/4 O (oxygen) | 1 | 1/4 Check: 1/4 + 1/4 + 1/4 + 1/4 = 1 Compute atom percents using the atom fractions: | number of atoms | atom percent Ag (silver) | 1 | 1/4 × 100% = 25.0% C (carbon) | 1 | 1/4 × 100% = 25.0% N (nitrogen) | 1 | 1/4 × 100% = 25.0% O (oxygen) | 1 | 1/4 × 100% = 25.0% Look up the atomic mass, m_i, in unified atomic mass units, u, for each element in the periodic table: | number of atoms | atom percent | atomic mass/u Ag (silver) | 1 | 25.0% | 107.8682 C (carbon) | 1 | 25.0% | 12.011 N (nitrogen) | 1 | 25.0% | 14.007 O (oxygen) | 1 | 25.0% | 15.999 Multiply N_i by m_i to compute the mass for each element. Then sum those values to compute the molecular mass, m: | number of atoms | atom percent | atomic mass/u | mass/u Ag (silver) | 1 | 25.0% | 107.8682 | 1 × 107.8682 = 107.8682 C (carbon) | 1 | 25.0% | 12.011 | 1 × 12.011 = 12.011 N (nitrogen) | 1 | 25.0% | 14.007 | 1 × 14.007 = 14.007 O (oxygen) | 1 | 25.0% | 15.999 | 1 × 15.999 = 15.999 m = 107.8682 u + 12.011 u + 14.007 u + 15.999 u = 149.8852 u Divide the mass for each element by m to calculate mass fractions. Then use the property that mass fractions must sum to one to check the work: | number of atoms | atom percent | mass fraction Ag (silver) | 1 | 25.0% | 107.8682/149.8852 C (carbon) | 1 | 25.0% | 12.011/149.8852 N (nitrogen) | 1 | 25.0% | 14.007/149.8852 O (oxygen) | 1 | 25.0% | 15.999/149.8852 Check: 107.8682/149.8852 + 12.011/149.8852 + 14.007/149.8852 + 15.999/149.8852 = 1 Compute mass percents using the mass fractions: Answer: | | | number of atoms | atom percent | mass percent Ag (silver) | 1 | 25.0% | 107.8682/149.8852 × 100% = 71.97% C (carbon) | 1 | 25.0% | 12.011/149.8852 × 100% = 8.013% N (nitrogen) | 1 | 25.0% | 14.007/149.8852 × 100% = 9.345% O (oxygen) | 1 | 25.0% | 15.999/149.8852 × 100% = 10.67%

Mass fraction pie chart

Mass fraction pie chart
Mass fraction pie chart