yes
Phosphorus (1.23 Å) has an atomic radius smaller than that of tellurium (1.42 Å).
Phosphorus has larger ionic radius than sulfur. There is more nuclear attraction in sulfur.
Bromine's atomic radii is larger than that of chlorine.
Fluorine has the smallest atomic radius among fluorine, oxygen, and chlorine. Oxygen has a larger atomic radius than fluorine but smaller than chlorine. Chlorine has the largest atomic radius among the three elements.
A chloride ion is larger than a chlorine atom because it has gained an electron, leading to increased electron-electron repulsion and a larger ionic radius compared to the atomic radius of a chlorine atom.
Phosphorus (1.23 Å) has an atomic radius smaller than that of tellurium (1.42 Å).
Phosphorus has larger ionic radius than sulfur. There is more nuclear attraction in sulfur.
Bromine has a larger radius (not raduis) than chlorine.
Bromine's atomic radii is larger than that of chlorine.
Fluorine has the smallest atomic radius among fluorine, oxygen, and chlorine. Oxygen has a larger atomic radius than fluorine but smaller than chlorine. Chlorine has the largest atomic radius among the three elements.
Bromine has a larger atomic radius than chlorine. This is because as you move down a group on the periodic table, the atomic radius generally increases due to the addition of more electron shells. Bromine is lower in the same group as chlorine (Group 17 or 7A), so it has a larger atomic radius.
A chloride ion is larger than a chlorine atom because it has gained an electron, leading to increased electron-electron repulsion and a larger ionic radius compared to the atomic radius of a chlorine atom.
The chlorine atom becomes an ion with a larger radius when it forms an ionic bond with sodium. This is because it gains an electron and becomes a negatively charged ion, causing the electron cloud to expand.
The radius of any anion is larger than the original neutral atom. So phosphide (P^3-) which as gained 3 electrons, has a larger radius than phosphorous (P).
Chlorine has a larger atomic radius than Fluorine. This is because as you move down a group in the periodic table, atomic radius tends to increase due to the addition of more electron shells.
Carbon has a larger atomic radius than nitrogen. The radii of these compounds are 67pm and 56pm, respectively. This occurs because the electrons in nitrogen are more attracted to the nucleus than electrons in carbon.
The chlorine atom is bigger in size than the aluminum atom. This is because the atomic radius of chlorine is larger than that of aluminum due to the additional electron shells present in the chlorine atom.