QUESTION IMAGE
Question
bonding basics - ionic bonds
name
complete the chart for each element.
element # of protons # of electrons # of valence electrons oxidation number
sodium
chlorine
beryllium
fluorine
lithium
oxygen
phosphorus
To solve this, we use the following concepts:
- The number of protons in an element is equal to its atomic number.
- In a neutral atom, the number of electrons is equal to the number of protons.
- Valence electrons are the electrons in the outermost shell. For main - group elements (Groups 1, 2, 13 - 18), the number of valence electrons can be determined by the group number.
- The oxidation number for main - group elements is related to the number of electrons lost or gained to achieve a stable electron configuration (usually a full outer shell of 8 electrons, or 2 for the first shell).
Sodium (Na)
- Step 1: Number of Protons
The atomic number of sodium is 11. So, the number of protons $= 11$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 11$.
- Step 3: Number of Valence Electrons
Sodium is in Group 1 of the periodic table. So, the number of valence electrons $= 1$.
- Step 4: Oxidation Number
Sodium tends to lose 1 electron to achieve a stable electron configuration. So, the oxidation number $= + 1$.
Chlorine (Cl)
- Step 1: Number of Protons
The atomic number of chlorine is 17. So, the number of protons $= 17$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 17$.
- Step 3: Number of Valence Electrons
Chlorine is in Group 17 (or 7A) of the periodic table. So, the number of valence electrons $= 7$.
- Step 4: Oxidation Number
Chlorine tends to gain 1 electron to achieve a stable electron configuration. So, the oxidation number $= - 1$.
Beryllium (Be)
- Step 1: Number of Protons
The atomic number of beryllium is 4. So, the number of protons $= 4$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 4$.
- Step 3: Number of Valence Electrons
Beryllium is in Group 2 of the periodic table. So, the number of valence electrons $= 2$.
- Step 4: Oxidation Number
Beryllium tends to lose 2 electrons to achieve a stable electron configuration. So, the oxidation number $= + 2$.
Fluorine (F)
- Step 1: Number of Protons
The atomic number of fluorine is 9. So, the number of protons $= 9$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 9$.
- Step 3: Number of Valence Electrons
Fluorine is in Group 17 (or 7A) of the periodic table. So, the number of valence electrons $= 7$.
- Step 4: Oxidation Number
Fluorine tends to gain 1 electron to achieve a stable electron configuration. So, the oxidation number $= - 1$.
Lithium (Li)
- Step 1: Number of Protons
The atomic number of lithium is 3. So, the number of protons $= 3$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 3$.
- Step 3: Number of Valence Electrons
Lithium is in Group 1 of the periodic table. So, the number of valence electrons $= 1$.
- Step 4: Oxidation Number
Lithium tends to lose 1 electron to achieve a stable electron configuration. So, the oxidation number $= + 1$.
Oxygen (O)
- Step 1: Number of Protons
The atomic number of oxygen is 8. So, the number of protons $= 8$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 8$.
- **Step 3: Number of…
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To solve this, we use the following concepts:
- The number of protons in an element is equal to its atomic number.
- In a neutral atom, the number of electrons is equal to the number of protons.
- Valence electrons are the electrons in the outermost shell. For main - group elements (Groups 1, 2, 13 - 18), the number of valence electrons can be determined by the group number.
- The oxidation number for main - group elements is related to the number of electrons lost or gained to achieve a stable electron configuration (usually a full outer shell of 8 electrons, or 2 for the first shell).
Sodium (Na)
- Step 1: Number of Protons
The atomic number of sodium is 11. So, the number of protons $= 11$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 11$.
- Step 3: Number of Valence Electrons
Sodium is in Group 1 of the periodic table. So, the number of valence electrons $= 1$.
- Step 4: Oxidation Number
Sodium tends to lose 1 electron to achieve a stable electron configuration. So, the oxidation number $= + 1$.
Chlorine (Cl)
- Step 1: Number of Protons
The atomic number of chlorine is 17. So, the number of protons $= 17$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 17$.
- Step 3: Number of Valence Electrons
Chlorine is in Group 17 (or 7A) of the periodic table. So, the number of valence electrons $= 7$.
- Step 4: Oxidation Number
Chlorine tends to gain 1 electron to achieve a stable electron configuration. So, the oxidation number $= - 1$.
Beryllium (Be)
- Step 1: Number of Protons
The atomic number of beryllium is 4. So, the number of protons $= 4$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 4$.
- Step 3: Number of Valence Electrons
Beryllium is in Group 2 of the periodic table. So, the number of valence electrons $= 2$.
- Step 4: Oxidation Number
Beryllium tends to lose 2 electrons to achieve a stable electron configuration. So, the oxidation number $= + 2$.
Fluorine (F)
- Step 1: Number of Protons
The atomic number of fluorine is 9. So, the number of protons $= 9$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 9$.
- Step 3: Number of Valence Electrons
Fluorine is in Group 17 (or 7A) of the periodic table. So, the number of valence electrons $= 7$.
- Step 4: Oxidation Number
Fluorine tends to gain 1 electron to achieve a stable electron configuration. So, the oxidation number $= - 1$.
Lithium (Li)
- Step 1: Number of Protons
The atomic number of lithium is 3. So, the number of protons $= 3$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 3$.
- Step 3: Number of Valence Electrons
Lithium is in Group 1 of the periodic table. So, the number of valence electrons $= 1$.
- Step 4: Oxidation Number
Lithium tends to lose 1 electron to achieve a stable electron configuration. So, the oxidation number $= + 1$.
Oxygen (O)
- Step 1: Number of Protons
The atomic number of oxygen is 8. So, the number of protons $= 8$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 8$.
- Step 3: Number of Valence Electrons
Oxygen is in Group 16 (or 6A) of the periodic table. So, the number of valence electrons $= 6$.
- Step 4: Oxidation Number
Oxygen tends to gain 2 electrons to achieve a stable electron configuration. So, the oxidation number $= - 2$.
Phosphorus (P)
- Step 1: Number of Protons
The atomic number of phosphorus is 15. So, the number of protons $= 15$.
- Step 2: Number of Electrons
In a neutral atom, the number of electrons is equal to the number of protons. So, the number of electrons $= 15$.
- Step 3: Number of Valence Electrons
Phosphorus is in Group 15 (or 5A) of the periodic table. So, the number of valence electrons $= 5$.
- Step 4: Oxidation Number
Phosphorus can have multiple oxidation numbers, but a common one (when forming ionic compounds by gaining 3 electrons to achieve a stable octet) is $- 3$. It can also have positive oxidation numbers in some compounds (e.g., $+ 5$ in $P_2O_5$), but for the basic ionic bonding context, $- 3$ is a common oxidation number.
We can now fill the chart:
| Element | # of Protons | # of Electrons | # of Valence Electrons | Oxidation Number |
|---|---|---|---|---|
| Chlorine | 17 | 17 | 7 | $- 1$ |
| Beryllium | 4 | 4 | 2 | $+ 2$ |
| Fluorine | 9 | 9 | 7 | $- 1$ |
| Lithium | 3 | 3 | 1 | $+ 1$ |
| Oxygen | 8 | 8 | 6 | $- 2$ |
| Phosphorus | 15 | 15 | 5 | $- 3$ (or $+ 5$ etc.) |
If we were to present the answers for each element in the order asked (filling the chart values):
For Sodium:
- # of Protons: $11$
- # of Electrons: $11$
- # of Valence Electrons: $1$
- Oxidation Number: $+ 1$
For Chlorine:
- # of Protons: $17$
- # of Electrons: $17$
- # of Valence Electrons: $7$
- Oxidation Number: $- 1$
For Beryllium:
- # of Protons: $4$
- # of Electrons: $4$
- # of Valence Electrons: $2$
- Oxidation Number: $+ 2$
For Fluorine:
- # of Protons: $9$
- # of Electrons: $9$
- # of Valence Electrons: $7$
- Oxidation Number: $- 1$
For Lithium:
- # of Protons: $3$
- # of Electrons: $3$
- # of Valence Electrons: $1$
- Oxidation Number: $+ 1$
For Oxygen:
- # of Protons: $8$
- # of Electrons: $8$
- # of Valence Electrons: $6$
- Oxidation Number: $- 2$
For Phosphorus:
- # of Protons: $15$
- # of Electrons: $15$
- # of Valence Electrons: $5$
- Oxidation Number: $- 3$ (or other common ones like $+ 5$)
If you want the answers in a specific format (e.g., for each element's values), you can extract them from the above. For example, if we list the answers for each column and row:
- Sodium: Protons = 11, Electrons = 11, Valence Electrons = 1, Oxidation Number = +1
- Chlorine: Protons = 17, Electrons = 17, Valence Electrons = 7, Oxidation Number = -1
- Beryllium: Protons = 4, Electrons = 4, Valence Electrons = 2, Oxidation Number = +2
- Fluorine: Protons = 9, Electrons = 9, Valence Electrons = 7, Oxidation Number = -1
- Lithium: Protons = 3, Electrons = 3, Valence Electrons = 1, Oxidation Number = +1
- Oxygen: Protons = 8, Electrons = 8, Valence Electrons = 6, Oxidation Number = -2
- Phosphorus: Protons = 15, Electrons = 15, Valence Electrons = 5, Oxidation Number = -3 (or +5)
The final answers (filling the chart) are as presented in the table above.