The correct angle is one which minimises the overall energy.
The angle between the sulfur-oxygen bonds in the sulfur trioxide (SO3) molecule is 120 degrees.
The angle between the bonds of a water molecule is approximately 104.5 degrees. This angle is due to the molecular geometry of water, which is bent or V-shaped.
The molecular formula for dry ice is CO2. Its structure is approximated by a 120o angle, with 2 double bonds connecting each oxygen molecule to the carbon molecule. The molecular formula for dry ice is CO2. Its structure is approximated by a 120o angle, with 2 double bonds connecting each oxygen molecule to the carbon molecule.
The NO2 molecule is a bent molecule with a central nitrogen attached to two oxygen atoms. The bond angle between the N-O bonds is 134.30
The bond length is equal to the linear distance between the nuclei of the bonding atoms. The bond angle is equal to the angle between any two consecutive bonds in a molecule or ion. Bond angles of molecules and ions are usually determined by using the VSEPR theory.
Type your answer here... The molecule contains no carbon double bonds.
The bond angle of a tetrahedral molecule is approximately 109.5 degrees. This angle is due to the arrangement of four bonding pairs of electrons around the central atom, which causes the bonds to spread out as far apart as possible to minimize repulsion.
when the molecule contains polar bonds
O-O=O, with an angle between the single and double bonds making the molecule slightly polar. Periodically, the single and double bonds swap.
In a methane (CH4) molecule, the angle between each of the covalent bonds (C-H bonds) is approximately 109.5 degrees. This angle is due to the tetrahedral molecular geometry of methane, where the carbon atom is at the center of a tetrahedron with each hydrogen atom at a corner.
The central oxygen is positively charged, and the molecule is bent at an angle, so it is polar. Since the entire molecule has only oxygens, all bonding is covalent.
The correct Lewis structure for a molecule with no anion would show all the atoms connected by lines to represent bonds, with the appropriate number of valence electrons around each atom.