Iodine has 53 electrons in its orbitals while fluorine only has nine. This does not even count the proton/neutron variance.
Bromine has a SMALLER atomic radius because it has one more electron shell than Iodine. On the periodic table, atomic radius of an atom decreases across a period and increases down a group. Since Bromine and Iodine are in the same group, you know Bromine has a smaller atomic radius because it is in a lower period.
Bromine has the largest atomic radius among fluorine, chlorine, and bromine. Atomic radius generally increases as you move down a group in the periodic table.
Bromine has the largest atomic radius among fluorine, chlorine, and bromine. Atomic radius increases down a group on the periodic table, so bromine, located at the bottom, has the largest atomic radius of the three elements.
Fluorine is larger than hydrogen because it has more protons, neutrons, and electrons in its atomic structure. This results in fluorine having a higher atomic mass and a larger atomic radius compared to hydrogen.
The smallest atom is lithium, as it has a smaller atomic radius compared to fluorine. This is because as you move across a period on the periodic table, atomic radius decreases due to increased nuclear charge pulling the electrons closer to the nucleus.
Fluorine has the smallest atomic radius among fluorine, chlorine, bromine, iodine, and astatine.
Iodine is the biggest atom among bromine, fluorine, chlorine and iodine as it has the highest atomic number and atomic radius.
Smaller
An atom of fluorine
Iodine is the largest atom among bromine, fluorine, iodine, and chlorine. It has more electron shells and a larger atomic radius compared to the other three elements.
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.
The atomic radius of iodine is larger than the atomic radius of potassium. This is because as you move down a group in the periodic table, atomic size increases due to the addition of more electron shells. Iodine is located below potassium in the periodic table, hence it has a larger atomic radius.
Potassium has the largest atomic radius. It is in the 1st group of the periodic table. Fluorine has the least atomic radius.
Fluorine is more reactive than iodine because it has a smaller atomic radius, which leads to higher electron density and greater electronegativity. This makes fluorine more likely to attract electrons, resulting in strong bonds and high reactivity. Additionally, fluorine only needs one electron to complete its outer electron shell, making it more energetically favorable for fluorine to gain electrons through reactions.
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Yes, oxygen has a larger atomic radius than fluorine. Atomic radius decreases as you move across a period in the periodic table from left to right, due to increasing nuclear charge which draws the electrons closer. Oxygen is located to the left of fluorine in the periodic table, so it has a larger atomic radius.
Fluorine has more electronegativity, meaning it is more "desperate" to obtain electrons. Its nucleus is the most attractive of all elements.