The electron geometry of a water molecule is tetrahedral even though the molecular geometry is _____. Bent
It's geometry is tetrahedral.
The moecular geometry is LINEAR The moecular geometry is LINEAR
Electron Domain is Tetrahedral Molecular Geometry is Trigonal Pyramidal
Tetrahedral
The molecular geometry of H2S is bent, with a bond angle of approximately 92 degrees. This is because of the presence of two lone pairs on the sulfur atom, which push the hydrogen atoms closer together and give the molecule a bent shape.
There are two electron groups around the central sulfur atom in H2S. This gives H2S a bent molecular geometry.
The molecular geometry of dihydrogen monosulfide (H2S) is bent or V-shaped. This is because of the presence of two bonding pairs and two lone pairs around the sulfur atom, causing repulsion and resulting in a bent shape.
Tetrahedral
Compounds like hydrogen sulfide (H2S), hydrogen selenide (H2Se), and hydrogen telluride (H2Te) are expected to have a similar geometry to water. These compounds exhibit a bent or angular molecular geometry due to the presence of lone pairs of electrons on the central atom, similar to water's bent molecular structure.
Dihydrogen monosulfide (H2S) is a bent molecule. It has tetrahedral electronic geometry and due to the two lone pairs of electrons on the sulfur, it is bent.
The molecular shape of HC2 is linear. There are only two atoms in the molecule and no lone pairs of electrons, resulting in a linear geometry.
H2S is bent because it has a bent molecular geometry due to the lone pairs of electrons on the sulfur atom causing repulsion and pushing the hydrogen atoms closer together. This results in a bond angle of approximately 92 degrees.
The molecular geometry is octahedral.
The molecular geometry of C2H2Br2 is trigonal planar.The molecular geometry of C2H2Br2 is trigonal planar.
because...
The molecular geometry of secl2 is BENT.