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Answer :
To determine how many moles are present in a given number of molecules, we use Avogadro's number, which relates the number of molecules in one mole. Here are the steps:
1. We know that one mole of any substance contains approximately
[tex]$$
6.022 \times 10^{23} \text{ molecules}.
$$[/tex]
2. Given the number of molecules is
[tex]$$
4.3 \times 10^{22},
$$[/tex]
we can calculate the number of moles by dividing the number of molecules by Avogadro's number:
[tex]$$
\text{moles} = \frac{4.3 \times 10^{22}}{6.022 \times 10^{23}}.
$$[/tex]
3. Performing the division gives:
[tex]$$
\text{moles} \approx 0.0714.
$$[/tex]
Therefore, there are approximately [tex]$0.0714$[/tex] moles in [tex]$4.3 \times 10^{22}$[/tex] molecules of [tex]$H_3PO_4$[/tex].
1. We know that one mole of any substance contains approximately
[tex]$$
6.022 \times 10^{23} \text{ molecules}.
$$[/tex]
2. Given the number of molecules is
[tex]$$
4.3 \times 10^{22},
$$[/tex]
we can calculate the number of moles by dividing the number of molecules by Avogadro's number:
[tex]$$
\text{moles} = \frac{4.3 \times 10^{22}}{6.022 \times 10^{23}}.
$$[/tex]
3. Performing the division gives:
[tex]$$
\text{moles} \approx 0.0714.
$$[/tex]
Therefore, there are approximately [tex]$0.0714$[/tex] moles in [tex]$4.3 \times 10^{22}$[/tex] molecules of [tex]$H_3PO_4$[/tex].
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