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how many atoms in total are there in 1.83 mol of aluminum oxide molecul…

Question

how many atoms in total are there in 1.83 mol of aluminum oxide molecules?
a. 2.20×10²⁴
b. 1.10×10²⁴
c. 6.61×10²⁴
d. 5.51×10²⁴
a
b
c
d
in the balanced chemical equation 2h₂+o₂→2h₂o, if 4.0 moles of h₂ react completely, how many moles of h₂o will be produced?
1.0 mole
2.0 moles
8.0 moles
4.0 moles

Explanation:

First Question (Atoms in Aluminum Oxide)

Step1: Determine Formula of Aluminum Oxide

Aluminum oxide is $\ce{Al2O3}$, so each molecule has $2 + 3 = 5$ atoms.

Step2: Calculate Molecules Using Avogadro's Number

Moles of $\ce{Al2O3}$ = $1.83$ mol. Molecules = $n \times N_A = 1.83\ \text{mol} \times 6.022 \times 10^{23}\ \text{molecules/mol}$.

Step3: Calculate Total Atoms

Total atoms = Molecules $\times$ Atoms per Molecule = $1.83 \times 6.022 \times 10^{23} \times 5$.
$1.83 \times 6.022 \approx 10.99$, $10.99 \times 5 \approx 54.95$, $54.95 \times 10^{23} \approx 5.51 \times 10^{24}$.

Step1: Analyze Balanced Equation

The equation is $\ce{2H2 + O2 -> 2H2O}$. The mole ratio of $\ce{H2}$ to $\ce{H2O}$ is $2:2 = 1:1$.

Step2: Apply Mole Ratio

Moles of $\ce{H2}$ = $4.0$ mol. Since ratio is $1:1$, moles of $\ce{H2O}$ = moles of $\ce{H2}$ = $4.0$ mol.

Answer:

d. $5.51 \times 10^{24}$

Second Question (Moles of $\ce{H2O}$ Produced)