a) 2KClO3 \(\underrightarrow{to}\) 2KCl + 3O2 (1)
\(n_{KClO_3}=\dfrac{73,5}{122,5}=0,6\left(mol\right)\)
Theo PT1: \(n_{O_2}=\dfrac{3}{2}n_{KClO_3}=\dfrac{3}{2}\times0,6=0,9\left(mol\right)\)
\(\Rightarrow m_{O_2}=0,9\times32=28,8\left(g\right)\)
\(V_{O_2}=0,9\times22,4=20,16\left(l\right)\)
b) 2Zn + O2 \(\underrightarrow{to}\) 2ZnO (2)
\(n_{Zn}=\dfrac{19,5}{65}=0,3\left(mol\right)\)
\(n_{O_2}\left(2\right)=n_{O_2}\left(1\right)=0,9\left(mol\right)\)
Theo PT2: \(n_{Zn}=2n_{O_2}\)
Theo bài: \(n_{Zn}=\dfrac{1}{3}n_{O_2}\)
Vì \(\dfrac{1}{3}< 2\) ⇒ O2 dư
Theo PT: \(n_{ZnO}=n_{Zn}=0,3\left(mol\right)\)
\(\Rightarrow m_{ZnO}=0,3\times81=24,3\left(g\right)\)