QUESTION IMAGE
Question
drag the ions together in such a way as to make a rectangle, from top down, in the \build model\ portion of the table below, then fill in the rest of the table. see the sample completed table here:
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& 2 : 3 & \text{al}_2\text{o}_3 \\\\
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*if only one ion is needed in a formula, it is left off, but for this practice you will need to type in the quantity, even a 1.
⚡ Using what you learned: formation of ionic and covalent bonds
Step 1: Determine the charges of the ions
Identify the charges of the given cation and anion:
- Cation: Sodium ion, \(\text{Na}^+\) (charge of \(+1\))
- Anion: Sulfide ion, \(\text{S}^{2-}\) (charge of \(-2\))
Step 2: Balance the charges to find the ratio
To form a neutral ionic compound, the total positive charge must equal the total negative charge:
- Each \(\text{Na}^+\) provides \(+1\) charge.
- Each \(\text{S}^{2-}\) provides \(-2\) charge.
We need two \(\text{Na}^+\) ions to balance one \(\text{S}^{2-}\) ion:
Thus, the cation to anion ratio is:
Step 3: Write the compound formula
Using the ratio of \(2\) sodium ions to \(1\) sulfide ion, and following the instruction to include the quantity even if it is \(1\):
- Sodium symbol and quantity: \(\text{Na}_2\)
- Sulfide symbol and quantity: \(\text{S}_1\)
Combining them gives:
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- cation to anion ratio: \(2 : 1\)
- Compound formula: \(\text{Na}_2\text{S}_1\)