P3- ion or phosphide ion as the same electron configuration as the noble gas, argon
[Ne]3s^23p^6P3-. P is in group V (group 15 moden periodic table) so gains three electrons, each carrying a 1- charge.
The pseudo-noble gas configuration for calcium is achieved when it loses two electrons to form a Ca2+ ion. This results in the same electron configuration as argon.
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Yes, the electron structure of a zinc ion (Zn2+) achieves a pseudo noble gas configuration by losing two electrons to have a full outer shell, similar to a noble gas configuration. This stable electron configuration is in line with the octet rule, making it an example of pseudo noble gas formation.
When a noble gas loses an electron, it forms a positively charged ion. This ion is more stable compared to other elements because noble gases have a full outer electron shell, making them very unreactive. By losing an electron, the noble gas achieves a full valence shell, similar to the configuration of noble gases, thereby becoming more stable.
P3- or phosphide ion is formed. it has the same number of electrons as the noble gas, argon
[Ne]3s^23p^6P3-. P is in group V (group 15 moden periodic table) so gains three electrons, each carrying a 1- charge.
P 3- is the ion with the noble gas configuration.
The calcium ion formed when it achieves a noble-gas electron configuration is Ca2+, as it loses two electrons to have the same electron configuration as argon, a noble gas.
P3-
K+
When potassium achieves a noble gas electron configuration, it loses one electron to form the K+ ion. The K+ ion has a stable electron configuration similar to that of argon, with 18 electrons.
Sulfur atoms will gain two electrons in order to achieve a noble gas electron configuration. A sulfide ion has the formula S2-.
P-3 ion is formed with 18 electrons.
Potassium loses one electron to form K+ ion that has the noble gas configuration of the element neon.
The pseudo-noble gas configuration for calcium is achieved when it loses two electrons to form a Ca2+ ion. This results in the same electron configuration as argon.
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