The chemical name of HOBr is hypobromous acid.
Yes, resonance is possible in naphthalene. The pi-electrons in the benzene rings of naphthalene can delocalize and spread out across the rings, leading to resonance stabilization. This resonance contributes to the stability and unique chemical properties of naphthalene.
Resonance structures are theoretical representations of electron distribution within molecules, not physical entities that can be trapped or isolated for study. It is not possible to trap or isolate a specific resonance structure because molecules exist as dynamic entities, constantly shifting between different resonance forms. Experiments and computational methods are used to understand the overall electronic structure of molecules in terms of their resonance forms.
resonance. Resonance occurs when multiple Lewis structures can be drawn for a molecule by repositioning electrons while keeping the same atomic framework.
Ozone is not an example of resonance (by all possible meanings). It does have two bonding forms that it occasionally changes between. These two forms are called resonant states... but the bonding does not "resonate" per se.
The chemical name of HOBr is hypobromous acid.
Yes, the molecule HOBr is polar. This is because the molecular geometry of HOBr is non-symmetrical, leading to an uneven distribution of charge within the molecule, causing it to be polar.
When bromine reacts with water, it forms hydrobromic acid (HBr) and hypobromous acid (HOBr). The overall reaction can be represented as: Br2 + H2O → HBr + HOBr. This reaction is reversible and depends on the pH and conditions of the solution.
HOBr is a polar molecule. This is because it has a bent molecular geometry, with oxygen pulling electrons more strongly than bromine, leading to an uneven distribution of charge within the molecule.
Bromine reacts with water to form hypobromous acid (HOBr) and hydrobromic acid (HBr). The reaction is: Br2 + H2O → HOBr + HBr
The oxidation number of bromine in HOBr is +1. This is because the oxidation number of oxygen is typically -2 and the overall compound is neutral, so the oxidation number of hydrogen is +1. This leaves bromine with an oxidation number of +1 to balance the compound.
HOCl is a stronger acid than HOBr because chlorine is more electronegative than bromine, making the O-H bond in HOCl more polar and easier to break. As a result, HOCl will more readily donate a proton in solution compared to HOBr.
resonance
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magnetic resonance imagingMagnetic Resonance ImagingMagnetic Resonance ImagingMRI stands for magnetic resonance imaging.
Resonance
A double-headed arrow "->" is placed between a molecule's resonance structures to indicate resonance.