It refers to numbers of electrons in the 2p sublevel.
It is 1.02*10^4 in scientific notation
It is: 5.2*10^4
0.000045 in Scientific Notation = 4.5 x 10-5 or 4.5e-5
0.4 = 4x10-1
0.000324 in scientific notation is 3.24 x 10^-4 or 3.24E-4
[He] 2s2 2p4
The electron configuration notation for oxygen is 1s2 2s2 2p4. This indicates that oxygen has 8 electrons, with 2 in the 1s orbital, 2 in the 2s orbital, and 4 in the 2p orbital.
The abbreviated electron configuration of oxygen is [He] 2s^2 2p^4.
The "4" in 2p4 indicates that there are 4 electrons occupying the p orbital in the second energy level of an atom. This notation follows the electron configuration format used to describe the distribution of electrons in an atom's orbitals.
The 4 indicates the number of electrons in the 2p orbital. In the electron configuration 1s2 2s2 2p4, it means there are 4 electrons in the 2p orbital of the atom.
4 is the number of electrons in that sublevel.
If you mean 8 -2p = 4 then the value of p is 2
The element with the electron configuration of 2s2 2p4 is Oxygen (O), which has 8 electrons in total.
4 in Scientific Notation = 4 x 100
standard notation is the answer the standard notation of 4*4 is 16 because its the answer
The exponential notation for 4 is 4.0 × 100
ns2np32nd answer :outer electron configuration is the same as valence electron , you can easily find it in the period table : using the number of the group :Group 1 : one, Group 2 :two , Group 3-12 cannot be found instead d electron count is used , group 13 : three , Group 14 : four ans so on until Group 18 : EightSo oxygen is in group 16 so it has 6 outer electron configuration or look to the Nobel gas notation : [He] 2s2 2p4 so count the power of last orbitals 2s 2p so : 6Read more: What_is_the_outer_electron_configuration_for_aluminum