QUESTION IMAGE
Question
- choose the best answer.
which of these represents an atoms tendency to bond in order to fill its valence shell?
electron dot notation
molecular geometry
vsepr theory
octet rule
- choose the best answer.
which structure has 2 double bonds?
si₂o₂
si₃o₂
sio₂
sio
Question 8
Brief Explanations
- Electron dot notation: Represents valence electrons of an atom, not about bonding to fill valence shell.
- Molecular geometry: Deals with the 3D arrangement of atoms in a molecule, not about bonding tendency to fill valence shell.
- VSEPR Theory: Predicts molecular geometry based on electron pairs, not about filling valence shell through bonding.
- Octet rule: States that atoms tend to bond to achieve a stable electron configuration (usually 8 valence electrons), which matches the description of an atom’s tendency to bond to fill its valence shell.
Step1: Analyze the valence electrons and bonding for each compound.
- For \( \text{Si}_2\text{O}_2 \): Let's consider the valence electrons. Si has 4 valence electrons, O has 6. The structure of \( \text{Si}_2\text{O}_2 \) (disilicon dioxide) can be thought of as having a structure where each Si is bonded to O. But let's check the other options.
- For \( \text{Si}_3\text{O}_2 \): Unlikely to have a stable structure with this formula as the valence electron distribution would be odd.
- For \( \text{SiO}_2 \): In silicon dioxide, each Si is bonded to 4 O atoms (single bonds in a network, no double bonds).
- For \( \text{SiO} \): Let's look at \( \text{Si}_2\text{O}_2 \) (which is equivalent to \( 2\text{SiO} \) but as a dimer). Wait, actually, the correct approach is to calculate the number of bonds. Let's consider the Lewis structure. For \( \text{Si}_2\text{O}_2 \), the Lewis structure can be drawn as \( \text{O}=\text{Si}-\text{Si}=\text{O} \), which has 2 double bonds (between O and Si on each end).
Step2: Confirm the double bonds.
In \( \text{Si}_2\text{O}_2 \), the structure has two \( \text{Si}=\text{O} \) double bonds.
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D. octet rule