QUESTION IMAGE
Question
part f: use the periodic table to answer the following questions.
name\tsymbol\tatomic #\tatomic mass\tmass #\tp\tn\te⁻
iron\tfe\t26\t56\t\t26\t\t
oxygen\to\t8\t15.9994\t\t8\t\t
\tbr\t\t\t\t\t\t
\t\t27\t\t\t\t\t
mercury\t\t\t\t\t\t
\t\t\t\t11\t\t6\t\t
\txe\t\t\t\t\t\t
chlorine\t\t\t\t\t\t
\t\t\t\t\t12\t\t12
Step1: Recall Atomic Structure Rules
In an atom, \( \text{Atomic Number (Z)} = \text{Number of Protons (P)} = \text{Number of Electrons (e}^- \text{)} \), and \( \text{Mass Number (A)} = \text{Number of Protons (P)} + \text{Number of Neutrons (N)} \). Atomic Mass is approximately equal to Mass Number for most elements (or we can round Atomic Mass to get Mass Number).
Step2: Analyze Iron (Fe)
- Atomic Number (\( Z \)) = 26, so \( P = 26 \), \( e^- = 26 \).
- Atomic Mass ≈ 56 (Mass Number, \( A \)). Then \( N = A - P = 56 - 26 = 30 \).
- Mass Number (\( A \)) = 56.
Step3: Analyze Oxygen (O)
- Atomic Number (\( Z \)) = 8, so \( P = 8 \), \( e^- = 8 \).
- Atomic Mass = 15.9994 ≈ 16 (Mass Number, \( A \)). Then \( N = A - P = 16 - 8 = 8 \).
- Mass Number (\( A \)) = 16.
Step4: Analyze Bromine (Br)
- Symbol: Br. Atomic Number (\( Z \)) for Br is 35 (from periodic table). So \( P = 35 \), \( e^- = 35 \).
- Atomic Mass of Br is approximately 80 (or 79.904, round to 80). Then \( N = 80 - 35 = 45 \).
- Mass Number (\( A \)) = 80.
Step5: Analyze Element with Atomic Number 27
- Atomic Number 27: Element is Cobalt (Co). \( P = 27 \), \( e^- = 27 \).
- Atomic Mass of Co is approximately 59. So \( N = 59 - 27 = 32 \).
- Mass Number (\( A \)) = 59. Name: Cobalt.
Step6: Analyze Mercury (Hg)
- Symbol: Hg. Atomic Number (\( Z \)) for Hg is 80. So \( P = 80 \), \( e^- = 80 \).
- Atomic Mass of Hg is approximately 201 (or 200.59). Round to 201. Then \( N = 201 - 80 = 121 \).
- Mass Number (\( A \)) = 201.
Step7: Analyze Element with Mass Number 11 and Neutrons 6
- \( N = 6 \), \( A = 11 \). So \( P = A - N = 11 - 6 = 5 \). Atomic Number \( Z = 5 \), element is Boron (B). \( e^- = 5 \).
- Name: Boron. Atomic Number (\( Z \)) = 5.
Step8: Analyze Xenon (Xe)
- Symbol: Xe. Atomic Number (\( Z \)) for Xe is 54. So \( P = 54 \), \( e^- = 54 \).
- Let's find Mass Number: \( A = P + N \), but \( N \) isn't given? Wait, maybe from periodic table, Atomic Mass of Xe is ~131. So \( A \approx 131 \), \( N = 131 - 54 = 77 \). Or if we use other info, but main: \( P = 54 \), \( e^- = 54 \), Atomic Number \( Z = 54 \).
Step9: Analyze Chlorine (Cl)
- Symbol: Cl. Atomic Number (\( Z \)) for Cl is 17. So \( P = 17 \), \( e^- = 17 \).
- Atomic Mass of Cl is approximately 35 (or 35.453, round to 35 or 36; common is 35). If \( A = 35 \), \( N = 35 - 17 = 18 \); if \( A = 36 \), \( N = 36 - 17 = 19 \) (depends on isotope, but most abundant is \( A = 35 \)).
Step10: Analyze Element with \( P = 12 \), \( e^- = 12 \)
- \( P = 12 \), so Atomic Number \( Z = 12 \), element is Magnesium (Mg). \( N =? \), \( A = P + N \), but \( e^- = 12 \). Atomic Mass of Mg is ~24, so \( N = 24 - 12 = 12 \). Mass Number (\( A \)) = 24. Name: Magnesium.
(Note: The table has some blanks, above is filling based on periodic table and atomic structure rules. If the question was to fill the table, the filled values as per steps.)
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Filled table (key values):
| Name | Symbol | Atomic # | Atomic Mass | Mass # | P | N | e⁻ |
|---|---|---|---|---|---|---|---|
| Oxygen | O | 8 | 15.9994 | 16 | 8 | 8 | 8 |
| Bromine | Br | 35 | ~80 | 80 | 35 | 45 | 35 |
| Cobalt | Co | 27 | ~59 | 59 | 27 | 32 | 27 |
| Mercury | Hg | 80 | ~201 | 201 | 80 | 121 | 80 |
| Boron | B | 5 | ~11 | 11 | 5 | 6 | 5 |
| Xenon | Xe | 54 | ~131 | 131 | 54 | 77 | 54 |
| Chlorine | Cl | 17 | ~35 | 35 | 17 | 18 | 17 |
| Magnesium | Mg | 12 | ~24 | 24 | 12 | 12 | 12 |
(If specific blanks were to be filled, e.g., for Iron: Mass # = 56, N = 30, e⁻ = 26; Oxygen: Mass # = 16, N = 8, e⁻ = 8; etc. Adjust based on exact question, but above is the analysis.)