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  2. Boron group - Wikipedia

    en.wikipedia.org/wiki/Boron_group

    The elements in group 13 are also capable of forming stable compounds with the halogens, usually with the formula MX 3 (where M is a boron-group element and X is a halogen.) [14] Fluorine, the first halogen, is able to form stable compounds with every element that has been tested (except neon and helium), [15] and the boron group is no exception.

  3. Template:Periodic table (Chinese names) - Wikipedia

    en.wikipedia.org/wiki/Template:Periodic_table...

    Primordial From decay Synthetic Border shows natural occurrence of the element Template documentation [ view ] [ edit ] [ history ] [ purge ] Hans is the code for the Simplified Chinese script.

  4. Group (periodic table) - Wikipedia

    en.wikipedia.org/wiki/Group_(periodic_table)

    An exception is the "iron group", which usually refers to group 8, but in chemistry may also mean iron, cobalt, and nickel, or some other set of elements with similar chemical properties. In astrophysics and nuclear physics , it usually refers to iron, cobalt, nickel, chromium , and manganese .

  5. Boron - Wikipedia

    en.wikipedia.org/wiki/Boron

    At higher temperatures boron burns to form boron trioxide: [51] 4 B + 3 O 2 → 2 B 2 O 3 Ball-and-stick model of tetraborate anion, [B 4 O 5 (OH) 4] 2−, as it occurs in crystalline borax, Na 2 [B 4 O 5 (OH) 4]·8H 2 O. Boron atoms are pink, with bridging oxygens in red, and

  6. Electron configurations of the elements (data page) - Wikipedia

    en.wikipedia.org/wiki/Electron_configurations_of...

    However there are numerous exceptions; for example the lightest exception is chromium, which would be predicted to have the configuration 1s 2 2s 2 2p 6 3s 2 3p 6 3d 4 4s 2, written as [Ar] 3d 4 4s 2, but whose actual configuration given in the table below is [Ar] 3d 5 4s 1.

  7. Periodic table (electron configurations) - Wikipedia

    en.wikipedia.org/wiki/Periodic_table_(electron...

    3 8 O 2 4 9 F 2 5 10 Ne 2 6 [Ne] 3s: 3p: 11 Na 1 - 12 Mg 2 - 13 Al 2 1 14 Si 2 2 15 P 2 3 16 S 2 4 17 Cl 2 5 18 Ar 2 6 [Ar] 4s: 3d: 4p: 19 K 1-- 20 Ca 2-- 21 Sc 2 1 - 22 Ti 2 2 - 23 V 2 3 - 24 Cr 1 5 - 25 Mn 2 5 - 26 Fe 2 6 - 27 Co 2 7 - 28 Ni 2 8 - 29 Cu 1 10 - 30 Zn 2 10 - 31 Ga 2 10 1 32 Ge 2 10 2 33 As 2 10 3 34 Se 2 10 4 35 Br 2 10 5 36 Kr ...

  8. Group 3 element - Wikipedia

    en.wikipedia.org/wiki/Group_3_element

    The abundance of elements in Earth's crust for group 3 is quite low—all the elements in the group are uncommon, the most abundant being yttrium with abundance of approximately 30 parts per million (ppm); the abundance of scandium is 16 ppm, while that of lutetium is about 0.5 ppm. For comparison, the abundance of copper is 50 ppm, that of ...

  9. Allotropes of boron - Wikipedia

    en.wikipedia.org/wiki/Allotropes_of_boron

    [3] [2] [4] [5] Whereas the β-rhombohedral phase is the most stable and the others are metastable, the transformation rate is negligible at room temperature, and thus all five phases can exist at ambient conditions. Amorphous powder boron and polycrystalline β-rhombohedral boron are the most common forms