QUESTION IMAGE
Question
make the following conversions. show your work
- convert 1.51 x 10²⁵ atoms si to moles
- convert 4.25 x 10² moles of no₂ to molecules
- convert 8.95 x 10²⁶ molecules of ccl₄ to moles
- convert 5.90 moles of ca to atoms
Step1: Recall Avogadro's number
Avogadro's number \(N_A = 6.022\times 10^{23}\text{ atoms/mole}\) or \(6.022\times 10^{23}\text{ molecules/mole}\). The formula for converting number of atoms/molecules (\(N\)) to moles (\(n\)) is \(n=\frac{N}{N_A}\), and for converting moles to atoms/molecules is \(N = n\times N_A\).
Step2: Solve problem 7
Given \(N = 1.51\times 10^{25}\text{ atoms Si}\). Using \(n=\frac{N}{N_A}\), we substitute \(N = 1.51\times 10^{25}\) and \(N_A=6.022\times 10^{23}\).
Step3: Solve problem 8
Given \(n = 4.25\times 10^{2}\text{ moles NO}_2\). Using \(N=n\times N_A\), substitute \(n = 4.25\times 10^{2}\) and \(N_A = 6.022\times 10^{23}\).
Step4: Solve problem 9
Given \(N = 8.95\times 10^{26}\text{ molecules CCl}_4\). Using \(n=\frac{N}{N_A}\), substitute \(N = 8.95\times 10^{26}\) and \(N_A=6.022\times 10^{23}\).
Step5: Solve problem 10
Given \(n = 5.90\text{ moles Ca}\). Using \(N=n\times N_A\), substitute \(n = 5.90\) and \(N_A = 6.022\times 10^{23}\).
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