QUESTION IMAGE
Question
- fill in the blanks in the data table below regarding the periodic table of the elements.
| group/family number | 1a | 2a | 3a | 4a | 5a | 6a | 7a | 8a |
|---|---|---|---|---|---|---|---|---|
| electron config. ends in | $s^2p^1$ | |||||||
| number of valence electrons |
Step1: Analyze Group 1A (Alkali Metals)
Alkali metals are in Group 1A. Their electron configuration ends with \( ns^1 \) (where \( n \) is the principal quantum number). The number of valence electrons is 1.
Step2: Analyze Group 2A (Alkaline Earth Metals)
Alkaline earth metals are in Group 2A. Their electron configuration ends with \( ns^2 \). The number of valence electrons is 2.
Step3: Analyze Group 3A
Group 3A elements have electron configuration ending with \( ns^2np^1 \) (given in the table). The number of valence electrons is \( 2 + 1 = 3 \).
Step4: Analyze Group 4A
For Group 4A, the electron configuration ends with \( ns^2np^2 \). The number of valence electrons is \( 2 + 2 = 4 \).
Step5: Analyze Group 5A
Group 5A elements have electron configuration ending with \( ns^2np^3 \). The number of valence electrons is \( 2 + 3 = 5 \).
Step6: Analyze Group 6A
Group 6A elements have electron configuration ending with \( ns^2np^4 \). The number of valence electrons is \( 2 + 4 = 6 \).
Step7: Analyze Group 7A (Halogens)
Halogens are in Group 7A. Their electron configuration ends with \( ns^2np^5 \). The number of valence electrons is \( 2 + 5 = 7 \).
Step8: Analyze Group 8A (Noble Gases)
Noble gases are in Group 8A (except He, which has \( 1s^2 \); others have \( ns^2np^6 \)). The number of valence electrons is 8 (for Ne, Ar, etc.) or 2 (for He), but generally, noble gases have a full valence shell with 8 valence electrons (except He).
Now, let's fill the table:
| Group/Family Number | Group/Family Name | Electron config. ends in | Number of Valence electrons |
|---|---|---|---|
| 2A | Alkaline earth metals | \( ns^2 \) | 2 |
| 3A | - | \( ns^2np^1 \) | 3 |
| 4A | - | \( ns^2np^2 \) | 4 |
| 5A | - | \( ns^2np^3 \) | 5 |
| 6A | - | \( ns^2np^4 \) | 6 |
| 7A | Halogens | \( ns^2np^5 \) | 7 |
| 8A | Noble gases | \( ns^2np^6 \) (or \( 1s^2 \) for He) | 8 (or 2 for He) |
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
The filled table (key parts) is as above. For each group:
- 1A: Electron config ends in \( ns^1 \), Valence e⁻ = 1
- 2A: Electron config ends in \( ns^2 \), Valence e⁻ = 2
- 3A: Given \( ns^2np^1 \), Valence e⁻ = 3
- 4A: Electron config ends in \( ns^2np^2 \), Valence e⁻ = 4
- 5A: Electron config ends in \( ns^2np^3 \), Valence e⁻ = 5
- 6A: Electron config ends in \( ns^2np^4 \), Valence e⁻ = 6
- 7A: Electron config ends in \( ns^2np^5 \), Valence e⁻ = 7
- 8A: Electron config ends in \( ns^2np^6 \) (or \( 1s^2 \)), Valence e⁻ = 8 (or 2)