Ozone (O₃) is not considered a stable molecule; it is relatively reactive and can decompose into oxygen (O₂) under certain conditions. Its instability is due to the presence of a weak bond between the oxygen atoms in the ozone molecule. While it plays a crucial role in the Earth's stratosphere by absorbing UV radiation, its reactivity can also lead to environmental concerns, particularly in the lower atmosphere where it can contribute to air pollution.
Ozone is a tri oxygen molecule. While the ozone layer is formed by the collection of large number of ozone molecules.
Ozone is a stable allotrope of oxygen because it is a resonant structure where the three oxygen atoms are connected in a cyclic arrangement. This delocalization of electrons across the molecule increases its stability compared to other arrangements.
An ozone molecule (O₃) becomes stable through the formation of a resonance structure, where the electrons are delocalized across the three oxygen atoms. This delocalization allows the molecule to distribute its energy more evenly, reducing the overall energy and increasing stability. Additionally, ozone can also absorb ultraviolet (UV) light, which can lead to the dissociation of ozone into diatomic oxygen (O₂) and free oxygen atoms, but the overall stability is maintained through the balance of these reactions in the atmosphere.
There are three oxygen atoms in a molecule of ozone (O3).
No. Ozone (O3) is triatomic, having 3 oxygen atoms in each molecule.
Ozone is a tri oxygen molecule. While the ozone layer is formed by the collection of large number of ozone molecules.
Ozone is a molecule because it is composed of three oxygen atoms bonded together. Its chemical formula is O3, distinguishing it from the diatomic oxygen molecules (O2) that we commonly encounter. The three oxygen atoms are connected by covalent bonds, forming a stable triatomic molecule.
Ozone is a stable allotrope of oxygen because it is a resonant structure where the three oxygen atoms are connected in a cyclic arrangement. This delocalization of electrons across the molecule increases its stability compared to other arrangements.
Ozone is a molecule. Its formula is O3.
Yes, ozone is a polar molecule.
An ozone molecule (O₃) becomes stable through the formation of a resonance structure, where the electrons are delocalized across the three oxygen atoms. This delocalization allows the molecule to distribute its energy more evenly, reducing the overall energy and increasing stability. Additionally, ozone can also absorb ultraviolet (UV) light, which can lead to the dissociation of ozone into diatomic oxygen (O₂) and free oxygen atoms, but the overall stability is maintained through the balance of these reactions in the atmosphere.
You get nothing, since ozone is a molecule.
When CFC molecule comes near ozone, it reacts with it. This leads to depletion of ozone layer.
The ozone molecule in found in the ozone layer. It is an allotrope of oxygen molecule.
The ozone molecule is represented as O3. The no. 3 represent the no. of oxygen molecules present in the ozone molecule.
Ozone is a trioxygen molecule. It is naturally fomed by the action of UV light on oxygen molecule.
Ozone at the higher levels of the atmosphere is a product of UV radiation acting on oxygen (O2) molecule. The higher energy UV radiations split apart some molecular oxygen (O2) into free oxygen (O) atoms. These atoms then combine with the molecular oxygen to form ozone as shown--- O2 → O + O (in the presence of UV) O + O2 → O3 (ozone)