Periodic Table

Periodic Table of Elements
Click table for larger view

The periodic table is a tabular arrangement of the chemical elements, organized on the basis of their atomic numbers, electron configurations, and recurring chemical properties. Elements are presented in order of increasing atomic number (the number of protons in the nucleus). The standard form of the table consists of a grid of elements laid out in 18 columns and 7 rows, with a double row of elements below that. The table can also be deconstructed into four rectangular blocks: the s-block to the left, the p-block to the right, the d-block in the middle, and the f-block below that.


The rows of the table are called periods; the columns are called groups, with some of these having names such as halogens or noble gases. Since, by definition, a periodic table incorporates recurring trends, any such table can be used to derive relationships between the properties of the elements and predict the properties of new, yet to be discovered or synthesized, elements. As a result, a periodic table—whether in the standard form or some other variant—provides a useful framework for analyzing chemical behavior, and such tables are widely used in chemistry and other sciences.

 DIMendeleevCabAlthough precursors exist, Dmitri Mendeleev is generally credited with the publication, in 1869, of the first widely recognized periodic table. He developed his table to illustrate periodic trends in the properties of the then-known elements. Mendeleev also predicted some properties of then-unknown elements that would be expected to fill gaps in this table. Most of his predictions were proved correct when the elements in question were subsequently discovered. Mendeleev’s periodic table has since been expanded and refined with the discovery or synthesis of further new elements and the development of new theoretical models to explain chemical behavior.

All elements from atomic numbers 1 (hydrogen) to 118 (ununoctium) have been discovered or reportedly synthesized, with elements 113, 115, 117 and 118 having yet to be confirmed. The first 98 elements exist naturally although some are found only in trace amounts and were initially discovered by synthesis in laboratories. Elements with atomic numbers from 99 to 118 have only been synthesized, or claimed to be so, in laboratories. Production of elements having higher atomic numbers is being pursued, with the question of how the periodic table may need to be modified to accommodate any such additions being a matter of ongoing debate. Numerous synthetic radionuclides of naturally occurring elements have also been produced in laboratories

With thanks to the University of Nottingham for their excellent youtube videos and Loretta Steyn for the marvellous graphic table above.

A Deskarati work in progress

8 Responses to Periodic Table

  1. Anonymous says:

    Thanks for stealing my idea Mendeleyev!!!

  2. lhukil says:


  3. Dr. Eric Scerri says:

    A very stylish periodic table that I have never seen before. Where can I git one?

    Incidentally, there is now good evidence for making group 3 of the periodic table
    Sc, Y, Lu and Lr rather than Sc, Y, La and Ac.

    eric scerri

    For resources on the periodic table see,

  4. Anonymous says:

    i love periodci tables

  5. kai says:

    I am the Periodic Table’s biggest fan yo. 118 elements make so many compounds.

  6. Anonymous says:

    Why there are only 109 elements, there should be 118 of them. Other than the number, the periodic table is great artistically. Very attractive! 🙂

    • Deskarati says:

      This table is quite old now. It was designed in 2003, I think. Probably the new elements have been added since.

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