74 pm from nuclei to nuclei.
Two atoms bonded together
Two atoms bonded together
228
69 units
atomic radius
Two atoms bonded together
The distance between nuclei of a bromine molecule is approximately 1.92 angstroms.
Two atoms bonded together
The distance between nuclei of a bromine molecule is approximately 2.91 angstroms (0.291 nanometers).
The distance between nuclei of a bromine molecule (Br2) is approximately 228 picometers (pm). This distance is based on experimental measurements of the bond length in the Br2 molecule.
228
228
The distance between nuclei of a bromine molecule is approximately 228 picometers (pm).
The distance between nuclei in a bromine molecule is approximately 228 picometers (pm). Bromine typically exists as a diatomic molecule with a covalent bond between the two atoms.
69 units
The atomic size of hydrogen peroxide (H2O2) can be determined by measuring the distance between the nuclei of the hydrogen and oxygen atoms in the molecule. The size is influenced by the arrangement of the atoms in the molecule and the bond lengths between them. The atomic size of hydrogen peroxide is relatively small compared to larger molecules, such as proteins or DNA.
The distance between nuclei can be measured using techniques such as X-ray crystallography, NMR spectroscopy, or electron microscopy. These methods rely on the interaction of radiation or particles with the atomic structure of the molecules to determine the distance between nuclei. The data obtained from these experiments can then be used to calculate the distances between nuclei in a molecule.