There are two different structures possible in an octahedral molecule with a formula of AX3Y3. The two structures are with each substituent atom in one plane of symmetry according to type, or having 2 in one and the other out.
There are two possible structures for an octahedral molecule with a formula of AX4Y2. In one structure, the two Y atoms are adjacent to each other (trans arrangement), while in the other structure, the two Y atoms are across from each other (cis arrangement).
There are multiple possible structures for the formula C2H5ClO depending on the arrangement of atoms within the molecule. Isomers can occur due to different connectivity of atoms or spatial arrangement. Without further information, it is not possible to give an exact number of different structures.
the chemical formula for carbon is C and for chlorine is Cl.
CH5 is not a possible molecular formula because hydrogen typically forms one bond, so it cannot form five bonds to carbon in a stable molecule.
The formula for hydrogen hydroxide is H2O.
There is only one possible structure for an octahedral molecule with the formula AX3Y3, where A and X represent the central atom and ligands that form the vertices of the octahedron, while Y represent the ligands at the faces of the octahedron.
There are two possible structures for an octahedral molecule with a formula of AX4Y2. In one structure, the two Y atoms are adjacent to each other (trans arrangement), while in the other structure, the two Y atoms are across from each other (cis arrangement).
There are two possible structures for a tetrahedral molecule with the formula AHXYZ. One structure is where the central atom (A) is in the center of the tetrahedron, and the other is where A occupies one of the vertices of the tetrahedron.
There's only one. It doesn't matter where you put the Y, you can transform it to any of the other positions by just rotating the molecule, so they're all the same structure. There are two possible structures for AX4Y2, because the Ys can either be next to each other or on opposite sides of the central atom, but for AX5Y there's only one.
2
A molecule with the general formula AX5 suggests that it has five bonding pairs of electrons and one lone pair of electrons. In an octahedral arrangement, the presence of one lone pair distorts the geometry, resulting in a square pyramidal molecular shape. Therefore, the molecular shape of AX5 with octahedral geometry is square pyramidal.
There are two possible structures for a square planar molecule with a formula of AX3Y. In one structure, the Y atom is in the center and the three X atoms are arranged around it. In the other structure, one of the X atoms is in the center and the Y atom and the other two X atoms are arranged around it.
There are multiple possible structures for the formula C2H5ClO depending on the arrangement of atoms within the molecule. Isomers can occur due to different connectivity of atoms or spatial arrangement. Without further information, it is not possible to give an exact number of different structures.
There are two different structures possible for the formula C4H10: n-butane and isobutane.
The structural formula of sulfur hexafluoride (SF₆) features a central sulfur atom surrounded by six fluorine atoms. The geometry of the molecule is octahedral, with each fluorine atom bonded to the sulfur atom through single covalent bonds. This arrangement allows for a symmetrical distribution of the fluorine atoms around the sulfur, contributing to the molecule's stability and inertness.
For a tetrahedral molecule with the formula AX3Y, where A is the central atom, X represents three identical substituents, and Y is a different substituent, there is typically one main structure. The arrangement results in a trigonal pyramidal geometry due to the presence of one lone pair on the central atom A. Thus, while the molecule can have different orientations in three-dimensional space, the basic structure remains the same.
A chemical formula that shows the relative number of each type of atom in a molecule, using the smallest possible ratio - Apex