QUESTION IMAGE
Question
- what is the lewis dot structure for an element in group 2?
options (dot structures with x)
- what is the lewis dot structure for p?
options (dot structures with p)
- which of these is a correct lewis structure for beryllium chloride (becl₂)?
options (lewis structures with cl and be)
- what is the lewis dot structure for germanium?
options (dot structures with ge)
Question 3:
Step1: Recall Group 2 valence electrons
Group 2 elements have 2 valence electrons. Lewis dot structures show valence electrons as dots around the element symbol.
Step2: Analyze options
- First option (•X•): 2 valence electrons (dots on two sides), matches Group 2 (2 valence electrons).
- Other options have more dots (e.g., second has 4, third 5, fourth 8), which don't match Group 2's 2 valence electrons.
Step1: Recall P's valence electrons
Phosphorus (P) is in Group 15, so it has 5 valence electrons.
Step2: Analyze options
- First option (P•): 1 electron, wrong.
- Second option (•P•): 2 electrons, wrong.
- Third option (•Ṗ::): Wait, correct structure for P has 5 valence electrons. The third option (with 5 dots: •, •, •, :, :) – wait, standard Lewis dot for P is three unpaired and one pair? Wait, no: P has 5 valence electrons, so the correct structure should have 5 dots. Let's check: the third option (•Ṗ::) – no, the fourth option? Wait, no, the options: let's re-express. Wait, the options are: P• (1), •P• (2), •Ṗ:: (5? Wait, •, •, •, :, : – that's 5? Wait, no, the third option: •, •, •, :, : – that's 5? Wait, no, the fourth option is ::P: (with a dot? Wait, maybe the third option is •Ṗ:: (5 dots: three single, one pair). Wait, phosphorus has 5 valence electrons, so the correct Lewis dot structure has 5 dots. Among the options, the third option (•Ṗ::) – wait, the third option: let's count dots. If it's •, •, •, :, : – that's 5. The fourth option has more. So the third option (•Ṗ::) has 5 valence electrons, matching P.
Step1: Recall BeCl₂ structure
Beryllium (Be) is in Group 2, so it has 2 valence electrons. Chlorine (Cl) has 7. In BeCl₂, Be forms single bonds with two Cl atoms (Be is an exception, can have incomplete octet). Each Cl has 3 lone pairs (6 electrons) plus the bonding pair, so each Cl has 8 electrons (octet).
Step2: Analyze options
- First option (::Cl−Be=Cl:): Double bond, Be doesn't form double bonds here, and Cl's octet? No.
- Second option (::Cl=Be−Cl:): Double bond, wrong.
- Third option (::Cl−Be−Cl:): Single bonds, Be has 2 bonding pairs (4 electrons), Cl has 3 lone pairs each (6) + 1 bonding pair (8 total). This matches: Be (2 valence electrons) forms two single bonds, each Cl has octet.
- Fourth option (::Cl−Be=Cl:): Double bond, wrong.
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The first option (•X•)