
What is the mass of a $0.5$ mole of an ozone molecule?
Answer
504.3k+ views
Hint: We have to know that ozone is an inorganic atom with the compound equation ${O_3}$ . It's anything but a light blue gas with a particularly sharp smell. It's anything but an allotrope of oxygen that is considerably less steady than the diatomic allotrope ${O_2}$ , separating in the lower climate to ${O_2}$. Ozone is shaped from dioxygen by the activity of bright light and electrical releases inside the Earth's environment.
Complete answer:
It is one of the crucial amounts and the most essential property of the issue. We can characterize mass as the proportion of the measure of issue in a body. The SI unit of mass is kilogram (kg). The mass of a body doesn't change whenever. Just for certain outrageous situations when an enormous measure of energy is given or taken from a body. For instance in an atomic response, a minuscule measure of issue is changed over into an immense measure of energy, this diminishes the mass of the substance.
The mass of $O$ is $16g$ . Then, the mass of ozone ${O_3}$ = $3 \times 16 = 48g$ .
Then, $0.5$ mole is multiplied by $48g$ . Therefore, $0.5 \times 48 = 24g$
Note:
Ozone is a dull or light blue gas, somewhat dissolvable in water and considerably more solvent in idle non-polar solvents like carbon tetrachloride or fluorocarbons, in which it's anything but a blue arrangement. At $161K$ , it consolidates to frame a dim blue fluid. It is perilous to permit this fluid to warm to its limit, in light of the fact that both concentrated vaporous ozone and fluid ozone can explode.
Complete answer:
It is one of the crucial amounts and the most essential property of the issue. We can characterize mass as the proportion of the measure of issue in a body. The SI unit of mass is kilogram (kg). The mass of a body doesn't change whenever. Just for certain outrageous situations when an enormous measure of energy is given or taken from a body. For instance in an atomic response, a minuscule measure of issue is changed over into an immense measure of energy, this diminishes the mass of the substance.
The mass of $O$ is $16g$ . Then, the mass of ozone ${O_3}$ = $3 \times 16 = 48g$ .
Then, $0.5$ mole is multiplied by $48g$ . Therefore, $0.5 \times 48 = 24g$
Note:
Ozone is a dull or light blue gas, somewhat dissolvable in water and considerably more solvent in idle non-polar solvents like carbon tetrachloride or fluorocarbons, in which it's anything but a blue arrangement. At $161K$ , it consolidates to frame a dim blue fluid. It is perilous to permit this fluid to warm to its limit, in light of the fact that both concentrated vaporous ozone and fluid ozone can explode.
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