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Atomic orbitals are commonly designated by a combination of numerals and letters that represent specific properties of the electrons associated with the orbitals\u2014for example, 1s, 2p, 3d, 4f. The numerals, called principal quantum numbers, indicate energy levels as well as relative distance from the nucleus.
The orbital names s, p, d, and f stand for names given to groups of lines originally noted in the spectra of the alkali metals. These line groups are called sharp, principal, diffuse, and fundamental.
Orbital Diagrams The boxes are used to represent the orbitals and to show the electrons placed in them. The order of fill is the same but as you can see from above the electrons are placed singly into the boxes before filling them with both electrons.
1s 2s 2p 3s 3p represents the electron orbital energy levels.
When assigning electrons to orbitals, we must follow a set of three rules: the Aufbau Principle, the Pauli-Exclusion Principle, and Hund's Rule.
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The 3 rules for drawing the orbital diagrams are \u2013 the Aufbau Principle rule, the Pauli-Exclusion Principle, and Hund's rule.
Orbital diagrams are pictorial descriptions of the electrons in an atom.
There is yet another way to writing electron configurations. It is called the "Box and Arrow" (or circle and X) orbital configuration. Sublevels can be broken down into regions called "orbitals". An orbital is defined as the most probable location for finding an electron.
Orbital diagrams are pictorial descriptions of the electrons in an atom. Three rules are useful in forming orbital diagrams. According to the Auf Bau Principle, each electron occupies the lowest energy orbital. The Pauli Exclusion Principle says that only two electrons can fit into an single orbital.
Of the four, s and p orbitals are considered because these orbitals are the most common in organic and biological chemistry. An s-orbital is spherical with the nucleus at its centre, a p-orbitals is dumbbell-shaped and four of the five d orbitals are cloverleaf shaped.

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