2s, 2p. 2s contains 1 orbital, the 2p sublevel contains 3 orbitals 2px 2py, 2pz where the suffix is the direction the orbital lies in, 2px lies on the x axis.
They are both capable of holding a maximum of 10
The energy sublevel.
The next highest energy atomic sublevel after 4p is the 5s sublevel. In the electron configuration of an atom, energy levels increase with increasing principal quantum number (n), so the 5s sublevel is higher in energy than the 4p sublevel.
One electron occupies the highest energy sublevel of alkali metals. Alkali metals have one electron in their outermost energy level, making them highly reactive.
The shape of an electron cloud depends on the energy sublevel. Each electron cloud is different, so there is no definitive shape.
energy sublevel
They are both capable of holding a maximum of 10
The energy sublevel.
The 3d sublevel is not filled until after the 4s sublevel, because the 3d sublevel has more energy than the 4s sublevel, and less energy than the 4p sublevel.
The next highest energy atomic sublevel after 4p is the 5s sublevel. In the electron configuration of an atom, energy levels increase with increasing principal quantum number (n), so the 5s sublevel is higher in energy than the 4p sublevel.
The shape of an electron cloud is determined by the probability of finding an electron in a specific region around the nucleus of an atom. This probability is described by the electron's wave function, which is influenced by the atom's structure and the interactions between electrons and the nucleus. The electron cloud takes on various shapes, such as spherically symmetric for an s orbital or more complex for p, d, and f orbitals.
B. 1s22s22p63s23p64s23d5----Chromium: [Ar]1s22s22p63s23p63d54s1Manganese: [Ar]1s22s22p63s23p63d54s2
One electron occupies the highest energy sublevel of alkali metals. Alkali metals have one electron in their outermost energy level, making them highly reactive.
The correct electron configuration would be 3d5 as each orbital in the 3d sublevel can hold up to 2 electrons, and we have 5 electrons to place in this sublevel.
1s2 2s2 2p6 3s2 3p6 4s2 3d5
The shape of an electron cloud depends on the energy sublevel. Each electron cloud is different, so there is no definitive shape.
The letter that signifies the fourth sublevel is "f". It corresponds to the fourth energy level (n=4) in an electron configuration.