In fact it increases down the group because ionization energy decreases down the group
It decreases when going down a group.
Ionization energy generally decreases as you move down a group in the periodic table. This is because as you move down a group, the outermost electrons are farther from the nucleus, resulting in weaker attraction and easier removal of electrons.
The nuclear charge decreases as you move down a group in the periodic table.
The trend of effective nuclear charge down a group in the periodic table generally decreases.
when you go down a group you get more shells and in those shell are electrons the further away the electrons are from the protons and neutrons the less energy you need to pull of the electrons.
ionization energy
It decreases when going down a group.
because down the group the cation becomes gets larger so the hydration energy decreases. so the solubility decreases
It decreases when going down a group.
Hydration Energy Increases Significantly By Moving From Left To Right In A Period As The Charge To Size Ratio Increases.
Ionization energy generally decreases as you move down a group in the periodic table. This is because as you move down a group, the outermost electrons are farther from the nucleus, resulting in weaker attraction and easier removal of electrons.
Ionisation energy decreases down the group. It is easy to remove an electron.
As you move down a column (group) in the periodic table, the electronegativity decreases, the ionization energy decreases, the electron affinity decreases, and the atomic radius increases.
Larger the atomic size lesser the hydration energy or the energy decreases. As the atomic sizes decrease from left to right in a periodic table therefore the heat of hydration increases from left to right. Same is the case with p-block elements .
As we move down a group, electronegativity decreases.
Electronegativity generally decreases from top to bottom on the periodic table. This is because as you move down a group, the valence electrons are in higher energy levels, farther away from the nucleus, which reduces the attraction for additional electrons.
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