What is the electronegativity and hardness of SO3
The chemical formula of aluminium sulfite is Al2(SO3)3.
Yes. Ordinary table salt is the molecule NaCl.
Neither. Table salt is an ionic compound.
The balanced equation for the reaction between SO3 and H2O is: SO3 + H2O → H2SO4
Trigonal planar.
No, SO3, sulphur trioxide is not a salt. A salt is an ionic compound such as might result from neutralizing an acid with a base. In SO3, there are no ions, and it is the result of oxidation.
SO3 is the chemical formula for the compound sulfur trioxide. Sulfur trioxide gas is a major pollutant and a big contributor to acid rain. But SO3 may, with a 2- added to it as a superscript, represent the sulfite ion with a charge of -2.
The angle between the sulfur-oxygen bonds in the sulfur trioxide (SO3) molecule is 120 degrees.
What is the electronegativity and hardness of SO3
When one molecule of Al2(SO3)3 dissolves in water, it forms 2 Al3+ ions and 3 SO32- ions. These ions result from the dissociation of the compound in water, where Al2(SO3)3 separates into its respective ions.
NO such molecule as 'So32'. If you mean 'SO3^(2-)' this is the sulphite anion. NB There is no element with the initials 'So'. or no molecule with '32' oxygen atoms to one sulphur atom.
SO3 is a non polar molecule. Although the bonds between the S and O atoms are polar because S is more electronegative than O hence creating an electronegativity difference, the molecule is non polar. This is because the negative and positive centres are both loacted in the same place (at the S molecule) as they are all on the same plane and therefore there is no permanant dipole as the dipoles in the bond cancel each other out, therefore the molecule is non polar.
AnswerPolar. Its geometry is bent, as it has one lone pair (nonbonding domain) and two bonding domains. It has an asymmetrical distribution of charge. However, it is not very polar as the electronegativities of sulfur and oxygen are similar.
Benzene is a common molecule that exhibits resonance. Benzene's structure can be represented by a resonance hybrid of multiple contributing structures, where the delocalization of π electrons results in increased stability.
The reaction of sulfur trioxide (SO3) with water (H2O) produces sulfuric acid (H2SO4) according to the following equation: SO3 + H2O → H2SO4. This is an example of a hydration reaction where the SO3 molecule reacts with water to form a new compound, sulfuric acid.
SO3 is a compound and therefore is neither a metal nor a nonmetal, because these are types of chemical elements, not of compounds. This particular compound consists of two nonmetal elements, sulfur and oxygen.