The distance between the nuclei of bromine atoms in a bromine molecule (Br2) is approximately 228 picometers (pm), or 0.228 nanometers (nm). This distance represents the bond length in the diatomic bromine molecule, where two bromine atoms are covalently bonded. The bond length can vary slightly depending on factors like temperature and molecular environment.
228
The distance between the nuclei of bromine atoms in a bromine molecule (Br2) is approximately 228 picometers (pm) or 0.228 nanometers (nm). This distance can vary slightly depending on factors such as temperature and molecular interactions. In general, the bond length in diatomic molecules like bromine is a key parameter in understanding their chemical behavior and bonding characteristics.
228, and um...... enrich said that the chart showed the atomic radius, and if Bromine's atomic radius is 114, then if I added together, then it would be 228
The distance between nuclei in a hydrogen molecule (HBr) is approximately 1 angstrom (10^-10 meters) when the bond is formed. This distance is the equilibrium distance at which the attractive and repulsive forces between the atoms are balanced.
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The distance between nuclei of a bromine molecule is approximately 1.92 angstroms.
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.
The distance between nuclei of a bromine molecule is approximately 2.91 angstroms (0.291 nanometers).
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The distance between nuclei of a bromine molecule is approximately 228 picometers (pm).
228
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.
The bond length between the nuclei in a bromine molecule (Br2) is approximately 228 picometers (pm) or 2.28 angstroms (Å). This distance represents the equilibrium distance at which the attractive and repulsive forces between the two bromine atoms are balanced.
The distance between the nuclei of bromine atoms in a bromine molecule (Br2) is approximately 228 picometers (pm) or 0.228 nanometers (nm). This distance can vary slightly depending on factors such as temperature and molecular interactions. In general, the bond length in diatomic molecules like bromine is a key parameter in understanding their chemical behavior and bonding characteristics.
228, and um...... enrich said that the chart showed the atomic radius, and if Bromine's atomic radius is 114, then if I added together, then it would be 228
The distance between nuclei in a hydrogen molecule (HBr) is approximately 1 angstrom (10^-10 meters) when the bond is formed. This distance is the equilibrium distance at which the attractive and repulsive forces between the atoms are balanced.
Bromine has more nuclear charge as compared to iodine. So, bromine easily attracts an electron and hence more reactive.