Periodic table
Every element with its standard atomic weight, electron configuration, natural isotopes and physical data. Colour the table by any property.
- 1HHydrogen120
- 2HeHelium140
- 3LiLithium182
- 4BeBeryllium153
- 5BBoron192
- 6CCarbon170
- 7NNitrogen155
- 8OOxygen152
- 9FFluorine135
- 10NeNeon154
- 11NaSodium227
- 12MgMagnesium173
- 13AlAluminum184
- 14SiSilicon210
- 15PPhosphorus180
- 16SSulfur180
- 17ClChlorine175
- 18ArArgon188
- 19KPotassium275
- 20CaCalcium231
- 21ScScandium211
- 22TiTitanium187
- 23VVanadium179
- 24CrChromium189
- 25MnManganese197
- 26FeIron194
- 27CoCobalt192
- 28NiNickel163
- 29CuCopper140
- 30ZnZinc139
- 31GaGallium187
- 32GeGermanium211
- 33AsArsenic185
- 34SeSelenium190
- 35BrBromine183
- 36KrKrypton202
- 37RbRubidium303
- 38SrStrontium249
- 39YYttrium219
- 40ZrZirconium186
- 41NbNiobium207
- 42MoMolybdenum209
- 43TcTechnetium209
- 44RuRuthenium207
- 45RhRhodium195
- 46PdPalladium202
- 47AgSilver172
- 48CdCadmium158
- 49InIndium193
- 50SnTin217
- 51SbAntimony206
- 52TeTellurium206
- 53IIodine198
- 54XeXenon216
- 55CsCesium343
- 56BaBarium268
- 57LaLanthanum240
- 58CeCerium235
- 59PrPraseodymium239
- 60NdNeodymium229
- 61PmPromethium236
- 62SmSamarium229
- 63EuEuropium233
- 64GdGadolinium237
- 65TbTerbium221
- 66DyDysprosium229
- 67HoHolmium216
- 68ErErbium235
- 69TmThulium227
- 70YbYtterbium242
- 71LuLutetium221
- 72HfHafnium212
- 73TaTantalum217
- 74WTungsten210
- 75ReRhenium217
- 76OsOsmium216
- 77IrIridium202
- 78PtPlatinum209
- 79AuGold166
- 80HgMercury209
- 81TlThallium196
- 82PbLead202
- 83BiBismuth207
- 84PoPolonium197
- 85AtAstatine202
- 86RnRadon220
- 87FrFrancium348
- 88RaRadium283
- 89AcActinium260
- 90ThThorium237
- 91PaProtactinium243
- 92UUranium240
- 93NpNeptunium221
- 94PuPlutonium243
- 95AmAmericium244
- 96CmCurium245
- 97BkBerkelium244
- 98CfCalifornium245
- 99EsEinsteinium245
- 100FmFermium—
- 101MdMendelevium—
- 102NoNobelium—
- 103LrLawrencium—
- 104RfRutherfordium—
- 105DbDubnium—
- 106SgSeaborgium—
- 107BhBohrium—
- 108HsHassium—
- 109MtMeitnerium—
- 110DsDarmstadtium—
- 111RgRoentgenium—
- 112CnCopernicium—
- 113NhNihonium—
- 114FlFlerovium—
- 115McMoscovium—
- 116LvLivermorium—
- 117TsTennessine—
- 118OgOganesson—
Eu Europium
- Atomic number
- 63
- Category
- Lanthanide
- Period
- 6
- Electron configuration
- [Xe] 4f7 6s2
- Oxidation states
- +3, +2
- Standard state
- Solid
- Density
- 5.24 g/cm³
- First ionization energy
- 5.67 eV
- van der Waals radius
- 233 pm
- Discovered
- 1901
Natural isotopes
| Isotope | Exact mass, u | Abundance, % |
|---|---|---|
| 151Eu | 150.9198578 | 47.81 |
| 153Eu | 152.921238 | 52.19 |
More data
- Standard atomic weight
- 151.964
- Monoisotopic mass
- 152.921238 u153Eu, the most abundant isotope
- Melting point
- 1095 K
- Boiling point
- 1802 K
- Full electron configuration
- 1s2 2s2 2p6 3s2 3p6 3d10 4s2 4p6 4d10 4f7 5s2 5p6 6s2
- Electrons per shell
- 2, 8, 18, 25, 8, 2
- CPK colour
- #61FFC7
Where the numbers come from
Standard atomic weights and isotopic compositions are those of the NIST Physical Measurement Laboratory (Atomic Weights and Isotopic Compositions for All Elements). For the twelve elements whose weight IUPAC gives as an interval (H, Li, B, C, N, O, Mg, Si, S, Cl, Br, Tl) the table uses the IUPAC conventional value. The cells round a weight to at most five significant figures, as the IUPAC periodic table does; the details show every digit. A weight in brackets means the element has no stable isotopes; the number is the mass number of its longest-lived isotope, from americium on that of the isotope PubChem lists, since NIST gives none.
Every other property comes from the PubChem periodic table (National Center for Biotechnology Information): electronegativity on the Pauling scale, the van der Waals radius, the first ionization energy, the electron affinity, oxidation states, melting and boiling points, density, the standard state and the year of discovery. PubChem gives temperatures in kelvin; the table shows °C = K − 273.15 and keeps the kelvin values in the details. Densities of solids and liquids are in g/cm³, those of gases in g/L at 0 °C and 1 atm.
How the table is laid out
The 18-column form recommended by IUPAC, with the lanthanides (La to Lu) and actinides (Ac to Lr) as two rows of fifteen below the main table. The category colours follow PubChem, which counts hydrogen with the nonmetals and lanthanum and actinium with the lanthanides and actinides. Electron configurations of the superheavy elements are predicted and marked as such; subshells are written in order of shell, as NIST does.
With the keyboard, tab into the table and move with the arrow keys, Home and End. Typing a symbol jumps to it, Enter or Space opens the details and Escape in the details goes back to the element.
How the heat maps are coloured
Each property is scaled linearly between the lowest and the highest known value, which the legend names. Elements without a reliable value stay grey rather than being guessed. Elements known since antiquity share the colour of the earliest dated discovery.