The second energy level contains eight valance electrons when it's full.
The second energy level can hold a maximum of 8 electrons. Magnesium has 12 electrons, so in its second energy level, there will be 8 electrons (2 in the first energy level and 8 in the second energy level).
In the second energy level, eight electrons are allowed at most.
first energy level contains only S shell that can accomadate 2 electrons where as 2nd energy level contains S shell and P shell as well which can accomadate 2 and 6(3X2) electrons respectively..so the answer is 8 for 2nd energy level. (or) No.of electrons in any main energy level = 2n2 Here n = orbit (or energy level) number In our question , n = 2 No.of electrons in 2nd energy level = 2(2)2 = 8
The second energy level of atoms can hold a maximum of 8 electrons.
2nd energy level, the electron arrangement is 2,1 at ground state
Phosphorus has 5 electrons in its outermost principal energy level.
The valance energy level contains 4 electrons in carbon.
The second principle energy level is designated as the n=2 energy level in an atom. Electrons in this energy level have higher energy than those in the first energy level. The second energy level can hold up to 8 electrons.
The second energy level can hold a maximum of 8 electrons. Magnesium has 12 electrons, so in its second energy level, there will be 8 electrons (2 in the first energy level and 8 in the second energy level).
In the second energy level of an atom, there can be a maximum of 8 electrons. Magnesium has 12 electrons in total, with 2 electrons in the first energy level and 8 electrons in the second energy level.
The second energy level (n =2 ) has 1 s orbtial, and 3 p orbitals. The s contains 2 electrons, and each p contains 2 electrons (for a total of 6 electrons in the 3 p orbitals). Thus, the second energy level can hold a maximum of EIGHT (8) electrons.
An atom with seven electrons will have five electrons in the second energy level.
hello it has 5 electrons on the outer shell
A boron atom has three electrons in its second energy level.
The energy level mentioned can accommodate a maximum of 8 electrons because it corresponds to the second principal energy level, known as n=2 in the Bohr model. According to the rules governing electron distribution in atomic orbitals, the second energy level contains a total of 8 electrons spread across its sublevels, including the s and p orbitals.
More energy have the electrons in the second level of energy.
More energy have the electrons in the second level of energy.