Carbon
The element that has a single electron in the 2p sublevel is boron. The electron configuration of Boron is 1s22s22p1.
An element cannot have 4 electrons in the 2 s level. The s subshell can hold only TWO electrons. Carbon has 4 electrons in the 2p level, however, if that's what you meant.
Carbon is the group 14, period 2 chemical element. Its electron configuration is 1s2 2s2 2p2. Thus, carbon has 2 electrons in its 2p subshell.
the total electron distribution in such an atom is 1s--2 2s--2 2p--6 3s--2 3p--5 so, total number of electrons comes out to be 17. so, the element is chlorine. symbol is Cl.
To find the element with a 3p4 valence configuration, look in period 3 and group XVI, and that is ...S, sulfur.
The 2p sublevel is completed with six electrons and is found in elements from carbon (C) onwards. The seventh element, nitrogen (N), is the element that completes the 2p sublevel.
The element that has a single electron in the 2p sublevel is boron. The electron configuration of Boron is 1s22s22p1.
An element cannot have 4 electrons in the 2 s level. The s subshell can hold only TWO electrons. Carbon has 4 electrons in the 2p level, however, if that's what you meant.
Carbon is the group 14, period 2 chemical element. Its electron configuration is 1s2 2s2 2p2. Thus, carbon has 2 electrons in its 2p subshell.
Aluminum is the group 12, period three chemical element. It has an electron configuration of 1s2 2s2 2p6 3s2 3p1. That means that its 2p subshell is full, having 6 electrons.
the total electron distribution in such an atom is 1s--2 2s--2 2p--6 3s--2 3p--5 so, total number of electrons comes out to be 17. so, the element is chlorine. symbol is Cl.
To find the element with a 3p4 valence configuration, look in period 3 and group XVI, and that is ...S, sulfur.
Fluorine is the group 17, period 2, halogen. Thus, its electron configuration is 1s2 2s2 2p5. So, as you can see, there are 5 electrons is fluorine's 2p subshell.
The maximum number of electrons in the 2p sublevel is 6. The p sublevel has three orbitals, each of which can take two electrons.
If the s and p sublevels are filled in an atom of an element in period 3, then the orbitals filled in this atom would be 1s, 2s, 2p, 3s, and 3p. Each s sublevel can hold a maximum of 2 electrons, while each p sublevel can hold a maximum of 6 electrons.
Aufbau says that the sublevels fill 1s2, 2s2, 2p6. That would mean that you must have filled 1 and 2 s (=4) and 3 more. Last I checked, 3 + 4 = 7. Which element has 7 electrons? I'll give you a hint: its atomic number is 7. Another hint: its symbol is N.
There are a total of 6 electrons in the 2p sublevel of a chlorine atom in the ground state. This is because the 2p sublevel can hold a maximum of 6 electrons, with each p orbital capable of holding up to 2 electrons.