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Ca 20

Calcium (Ca)

alkaline-earth-metal
Periode: 4 Gruppe: 2 Block: s

Solid

Standardatomgewicht

40,078 u

Elektronenkonfiguration

[Ar] 4s2

Schmelzpunkt

841,85 °C

Siedepunkt

1483,85 °C

Dichte

1540 kg/m³

Oxidationszustände

+1, +2

Elektronegativität (Pauling)

1

Ionisierungsenergie (1.)

6,113155 eV

Entdeckungsjahr

1808

Atomradius

180 pm

Details

Namensherkunft Latin: calx, calcis (lime).
Entdeckungsland England
Entdecker Sir Humphrey Davy

Calcium is an alkaline earth metal and the fifth most abundant element in Earth’s crust by mass. It is highly reactive as a free metal but widespread in stable minerals, especially carbonates, sulfates, phosphates, and silicates. Calcium chemistry is dominated by the Ca²⁺ ion, which is hard, strongly hydrated, and central to limestone formation, cement chemistry, seawater buffering, bones, teeth, shells, and many cellular signaling processes.

The metal has a silvery color, is rather hard, and is prepared by electrolysis of fused chloride and calcium fluoride (to lower the melting point).

Chemically it is one of the alkaline earth elements; it readily forms a white coating of nitride in air, reacts with water, burns with a yellow-red flame.

The name derives from the Latin calx for "lime" (CaO) or "limestone" (CaCO3) in which it was found. It was first isolated by British chemist Humphry Davy in 1808 with help from the Swedish chemist Jöns Jacob Berzelius and the Swedish court physician M. M. af Pontin.

Although calcium is the fifth most abundant element in the earth's crust, it is never found free in nature since it easily forms compounds by reacting with oxygen and water. Metallic calcium was first isolated by Sir Humphry Davy in 1808 through the electrolysis of a mixture of lime (CaO) and mercuric oxide (HgO). Today, metallic calcium is obtained by displacing calcium atoms in lime with atoms of aluminum in hot, low-pressure containers. About 4.2% of the earth's crust is composed of calcium.

From the Latin word calx, lime. Though lime was prepared by the Romans in the first century under the name calx, the metal was not discovered until 1808. After learning that Berzelius and Pontin prepared calcium amalgam by electrolyzing lime in mercury, Davy was able to isolate the impure metal.

Bilder

Eigenschaften

Physikalisch

Atomradius (empirisch)
180 pm Vergleiche Atomradius (empirisch) aller Elemente →
Kovalenzradius
176 pm Vergleiche Kovalenzradius aller Elemente →
Van-der-Waals-Radius
231 pm Vergleiche Van-der-Waals-Radius aller Elemente →
Metallradius
174 pm Vergleiche Metallradius aller Elemente →
Dichte
1540 kg/m³ Vergleiche Dichte aller Elemente →
Molares Volumen
0,0299 L/mol
Aggregatzustand bei Standardbedingungen
Fest Vergleiche Aggregatzustand bei Standardbedingungen aller Elemente →
Schmelzpunkt
841,85 °C Vergleiche Schmelzpunkt aller Elemente →
Siedepunkt
1483,85 °C Vergleiche Siedepunkt aller Elemente →
Spezifische Wärmekapazität
0,647 J/(g·K) Vergleiche Spezifische Wärmekapazität aller Elemente →
Molare Wärmekapazität
25,929 J/(mol·K) Vergleiche Molare Wärmekapazität aller Elemente →
Kristallstruktur
Flächenzentriert kubisch Vergleiche Kristallstruktur aller Elemente →

Chemisch

Elektronegativität (Pauling)
1 Vergleiche Elektronegativität (Pauling) aller Elemente →
Elektronegativität (Allen)
1,034
Elektronenaffinität
0,0245 eV
Ionisierungsenergie (1.)
6,113155 eV Vergleiche Ionisierungsenergie (1.) aller Elemente →
Ionisierungsenergie (2.)
11,87176 eV Vergleiche Ionisierungsenergie (2.) aller Elemente →
Ionisierungsenergie (3.)
50,913335 eV Vergleiche Ionisierungsenergie (3.) aller Elemente →
Ionisierungsenergie (4.)
67,273432 eV Vergleiche Ionisierungsenergie (4.) aller Elemente →
Ionisierungsenergie (5.)
84,34029 eV Vergleiche Ionisierungsenergie (5.) aller Elemente →
Oxidationszustände
+1, +2 Vergleiche Oxidationszustände aller Elemente →
Valenzelektronen
2 Vergleiche Valenzelektronen aller Elemente →
Elektronenkonfiguration
[Ar] 4s2

Thermodynamisch

Schmelzwärme
0,08851117 eV Vergleiche Schmelzwärme aller Elemente →
Verdampfungswärme
1,603358 eV Vergleiche Verdampfungswärme aller Elemente →
Sublimationswärme
1,846919 eV
Atomisierungswärme
1,846919 eV
Atomisierungsenthalpie
1,842773 eV

Nuklear

Protonen
20 Vergleiche Protonen aller Elemente →
Neutronen
24 Vergleiche Neutronen aller Elemente →
Bekannte Isotope
29 Vergleiche Bekannte Isotope aller Elemente →
Stabile Isotope
4 Vergleiche Stabile Isotope aller Elemente →
Stabilstes Isotop
Ca-44
Entdeckungsjahr
1808

Häufigkeit

Häufigkeit (Erdkruste)
4,15e+4 mg/kg Vergleiche Häufigkeit (Erdkruste) aller Elemente →
Häufigkeit (Ozean)
412 mg/L Vergleiche Häufigkeit (Ozean) aller Elemente →

Kristallstruktur

Gitterkonstante a
558 pm

Elektronische Struktur

Elektronen pro Schale
2, 8, 8, 2 Vergleiche Elektronen pro Schale aller Elemente →

Identifikatoren

CAS-Nummer
7440-70-2 Vergleiche CAS-Nummer aller Elemente →
Termsymbol
1S0
InChI
InChI=1S/Ca
InChI-Key
OYPRJOBELJOOCE-UHFFFAOYSA-N

Elektronenkonfiguration Gemessen

Ionenladung
Protonen 20
Elektronen 20
Ladung Neutral
Konfiguration Ca: 4s²
Elektronenkonfiguration
Gemessen
[Ar] 4s²
1s² 2s² 2p⁶ 3s² 3p⁶ 4s²
Orbitaldiagramm
1s
2/2
2s
2/2
2p
6/6
3s
2/2
3p
6/6
4s
2/2
Gesamtelektronen: 20 Ungepaart: 0

Atommodell

Protonen 20
Neutronen 24
Elektronen 20
Massenzahl 44
Stabilität Stabil

Isotope ändern die Neutronenzahl, Masse und Stabilität — nicht die Elektronenkonfiguration eines neutralen Atoms.

Schematisches Atommodell, nicht maßstabsgetreu.

Atomarer Fingerabdruck

Emissions- / Absorptionsspektrum

25 / 50 (50 50 mit Intensität)
Gemessen
Emission Sichtbar: 380–750 nm

Isotopenverteilung

442,0860%420,6470%430,1350%460,0040%MassenzahlNatürliche Häufigkeit (%)
MassenzahlAtommasse (u)Natürliche HäufigkeitHalbwertszeit
42 Stabil41,95861783 ± 0,000000160,6470%Stabil
43 Stabil42,95876644 ± 0,000000240,1350%Stabil
44 Stabil43,95548156 ± 0,000000352,0860%Stabil
46 Stabil45,953689 ± 0,00000240,0040%Stabil
Gemessen

Phase / Zustand

1 atm / 101.325 kPa
Fest 25 °C (298,15 K)

Grund: 816,9 °C unter Schmelzpunkt (841,85 °C)

Schmelzpunkt 841,85 °C
Siedepunkt 1483,85 °C
Unter Schmelzpunkt um 816,9 °C
0 K Aktuelle Temperatur: 25 °C 6000 K
Phasenzeitlinie

Schematisch, nicht maßstabsgetreu

Fest
Flüssig
Gas
Schmelzen
Sieden
25°C
Fest
Flüssig
Gas
Aktuell

Phasenübergangspunkte

Schmelzpunkt Literatur
841,85 °C
Siedepunkt Literatur
1483,85 °C
Aktuelle Phase Berechnet
Fest

Übergangsenergien

Schmelzwärme Literatur
0,08851117 eV

Energie benötigt, um 1 mol am Schmelzpunkt zu schmelzen

Verdampfungswärme Literatur
1,603358 eV

Energie benötigt, um 1 mol am Siedepunkt zu verdampfen

Sublimationswärme Literatur
1,846919 eV

Energie benötigt, um 1 mol am Sublimationspunkt zu sublimieren

Dichte

Referenzdichte Literatur
1540 kg/m³

Bei Standardbedingungen

Aktuelle Dichte Berechnet
1540 kg/m³

Bei Standardbedingungen

Atomspektren

10 von 20 angezeigt. Sortiert nach Ionenladung (aufsteigend).

Liniendaten ?

IonLadungGesamtlinienÜbergangswahrscheinlichkeitenNiveau-Bezeichnungen
Ca I 0206136137
Ca II +11499999
Ca III +2676530676
Ca IV +34033
Ca V +4531818
Ca VI +5201820
Ca VII +6181818
Ca VIII +7666
Ca IX +8262626
Ca X +9252525
NIST Liniendaten →

Niveaudaten ?

IonLadungNiveaus
Ca I 0787
Ca II +172
Ca III +2182
Ca IV +371
Ca V +440
Ca VI +532
Ca VII +627
Ca VIII +738
Ca IX +872
Ca X +952
NIST Niveaudaten →
20 Ca 40.078

Calcium — Atomorbital-Visualisierer

[Ar]4s2
Energieniveaus 2 8 8 2
Oxidationszustände +1, +2
HOMO 4s n=4 · l=0 · m=0
Calcium — Atomorbital-Visualisierer Vorschau
Three.js lädt nur auf Anfrage
20 Ca 40.078

Calcium — Kristallstruktur-Visualisierer

Face-Centered Cubic · Pearson cF4
Experimentell
Pearson cF4
Koordinationszahl 12
Packungsdichte 74.000%
Calcium — Kristallstruktur-Visualisierer Vorschau
Three.js lädt nur auf Anfrage

Ionenradien

LadungKoordinationSpinRadius
+26N/A100 pm
+27N/A106 pm
+28N/A112.00000000000001 pm
+29N/A118 pm
+210N/A123 pm
+212N/A134 pm

Verbindungen

Ca+2
40,080 u
Ca
40,080 u
Ca
39,963 u
Ca
44,956 u
Ca
46,955 u
Ca
40,962 u
Ca
41,959 u
Ca
42,959 u
Ca
47,953 u
Ca
43,955 u
Ca+2
44,956 u
Ca
45,954 u
Ca
48,956 u
Ca+2
46,955 u
Ca+2
42,959 u

Isotope (4)

MassenzahlAtommasse (u)Natürliche HäufigkeitHalbwertszeitZerfallsart
42 Stabil41,95861783 ± 0,000000160,6470% ± 0,0230%Stabil
stable
43 Stabil42,95876644 ± 0,000000240,1350% ± 0,0100%Stabil
stable
44 Stabil43,95548156 ± 0,000000352,0860% ± 0,1100%Stabil
stable
46 Stabil45,953689 ± 0,00000240,0040% ± 0,0030%Stabil
stable
42 Stabil
Atommasse (u) 41,95861783 ± 0,00000016
Natürliche Häufigkeit 0,6470% ± 0,0230%
Halbwertszeit Stabil
Zerfallsart
stable
43 Stabil
Atommasse (u) 42,95876644 ± 0,00000024
Natürliche Häufigkeit 0,1350% ± 0,0100%
Halbwertszeit Stabil
Zerfallsart
stable
44 Stabil
Atommasse (u) 43,95548156 ± 0,00000035
Natürliche Häufigkeit 2,0860% ± 0,1100%
Halbwertszeit Stabil
Zerfallsart
stable
46 Stabil
Atommasse (u) 45,953689 ± 0,0000024
Natürliche Häufigkeit 0,0040% ± 0,0030%
Halbwertszeit Stabil
Zerfallsart
stable

Spektrallinien

50 von 247 angezeigt. Standardmäßig werden nur Spektrallinien mit gemessener Intensität angezeigt.

Wellenlänge (nm)IntensitätIonenstufeTypÜbergangGenauigkeitQuelle
408.1762 nm1000Ca IIIemission3s2.3p5.4s 1P* → 3s2.3p5.4p 3SGemessenNIST
449.9885 nm1000Ca IIIemission3s2.3p5.(2P*<1/2>).4d 2[5/2]* → 3s2.3p5.(2P*<1/2>).4f 2[7/2]GemessenNIST
420.7216 nm800Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[3/2]* → 3s2.3p5.(2P*<3/2>).4f 2[5/2]GemessenNIST
430.2803 nm800Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<3/2>).4f 2[9/2]GemessenNIST
439.9584 nm800Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<3/2>).4f 2[9/2]GemessenNIST
423.3736 nm700Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[9/2] → 3s2.3p5.(2P*<3/2>).5g 2[11/2]*GemessenNIST
440.6286 nm700Ca IIIemission3s2.3p5.(2P*<1/2>).4d 2[5/2]* → 3s2.3p5.(2P*<1/2>).4f 2[7/2]GemessenNIST
451.6586 nm700Ca IIIemission3s2.3p5.(2P*<1/2>).4d 2[3/2]* → 3s2.3p5.(2P*<1/2>).4f 2[5/2]GemessenNIST
457.2125 nm700Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<3/2>).4f 2[7/2]GemessenNIST
424.0742 nm600Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[9/2] → 3s2.3p5.(2P*<3/2>).5g 2[11/2]*GemessenNIST
443.129 nm600Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<3/2>).4f 2[7/2]GemessenNIST
415.3566 nm500Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[1/2]* → 3s2.3p5.(2P*<3/2>).4f 2[3/2]GemessenNIST
418.42 nm500Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[1/2]* → 3s2.3p5.(2P*<3/2>).4f 2[3/2]GemessenNIST
428.4388 nm500Ca IIIemission3s2.3p5.(2P*<1/2>).4f 2[7/2] → 3s2.3p5.(2P*<1/2>).5g 2[9/2]*GemessenNIST
432.9182 nm490Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[7/2] → 3s2.3p5.(2P*<3/2>).5g 2[9/2]*GemessenNIST
433.3566 nm480Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[7/2] → 3s2.3p5.(2P*<3/2>).5g 2[9/2]*GemessenNIST
416.4302 nm430Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[3/2] → 3s2.3p5.(2P*<3/2>).5g 2[5/2]*GemessenNIST
417.565 nm410Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<3/2>).4f 2[7/2]GemessenNIST
427.189 nm410Ca IIIemission3s2.3p5.(2P*<1/2>).4f 2[5/2] → 3s2.3p5.(2P*<1/2>).5g 2[7/2]*GemessenNIST
435.8366 nm410Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[3/2]* → 3s2.3p5.(2P*<1/2>).4f 2[5/2]GemessenNIST
421.3132 nm400Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[1/2]* → 3s2.3p5.(2P*<3/2>).4f 2[3/2]GemessenNIST
413.6247 nm390Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[3/2] → 3s2.3p5.(2P*<3/2>).5g 2[5/2]*GemessenNIST
427.9722 nm360Ca IIIemission3s2.3p5.(2P*<1/2>).4f 2[7/2] → 3s2.3p5.(2P*<1/2>).5g 2[9/2]*GemessenNIST
430.1494 nm290Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[3/2]* → 3s2.3p5.(2P*<3/2>).4f 2[3/2]GemessenNIST
429.0071 nm280Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[5/2] → 3s2.3p5.(2P*<3/2>).5g 2[7/2]*GemessenNIST
427.8215 nm270Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<3/2>).4f 2[7/2]GemessenNIST
430.101 nm240Ca IIIemission3s2.3p5.(2P*<1/2>).4f 2[5/2] → 3s2.3p5.(2P*<1/2>).5g 2[7/2]*GemessenNIST
393.3663 nm230Ca IIemission3p6.4s 2S → 3p6.4p 2P*GemessenNIST
394.9609 nm230Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<1/2>).4f 2[7/2]GemessenNIST
396.8469 nm220Ca IIemission3p6.4s 2S → 3p6.4p 2P*GemessenNIST
427.3875 nm200Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<3/2>).4f 2[7/2]GemessenNIST
527.1979 nm170Ca IIIemission3s2.3p5.(2P*<3/2>).5p 2[5/2] → 3s2.3p5.(2P*<3/2>).5d 2[7/2]*GemessenNIST
403.8502 nm160Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[1/2]* → 3s2.3p5.(2P*<3/2>).4f 2[5/2]GemessenNIST
382.376 nm150Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<1/2>).4f 2[7/2]GemessenNIST
448.4948 nm150Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<3/2>).4f 2[5/2]GemessenNIST
470.8836 nm150Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<3/2>).4f 2[5/2]GemessenNIST
471.6287 nm130Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<3/2>).4f 2[9/2]GemessenNIST
606.9998 nm110Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[7/2]* → 3s2.3p5.(2P*<3/2>).5p 2[5/2]GemessenNIST
524.7373 nm100Ca IIIemission3s2.3p5.(2P*<3/2>).5p 2[5/2] → 3s2.3p5.(2P*<3/2>).5d 2[7/2]*GemessenNIST
393.0884 nm90Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[5/2]* → 3s2.3p5.(2P*<1/2>).4f 2[5/2]GemessenNIST
485.9165 nm90Ca IIIemission3s2.3p5.(2P*<3/2>).5p 2[5/2] → 3s2.3p5.(2P*<3/2>).6s 2[3/2]*GemessenNIST
500.8939 nm90Ca IIIemission3s2.3p5.(2P*<3/2>).5p 2[1/2] → 3s2.3p5.(2P*<3/2>).5d 2[1/2]*GemessenNIST
532.1287 nm90Ca IIIemission3s2.3p5.(2P*<3/2>).5p 2[3/2] → 3s2.3p5.(2P*<3/2>).5d 2[5/2]*GemessenNIST
434.0345 nm80Ca IIIemission3s2.3p5.(2P*<3/2>).4f 2[7/2] → 3s2.3p5.(2P*<3/2>).5g 2[7/2]*GemessenNIST
441.3732 nm80Ca IIIemission3s2.3p5.(2P*<1/2>).4d 2[5/2]* → 3s2.3p5.(2P*<1/2>).4f 2[5/2]GemessenNIST
450.8788 nm80Ca IIIemission3s2.3p5.(2P*<1/2>).4d 2[3/2]* → 3s2.3p5.(2P*<1/2>).4f 2[7/2]GemessenNIST
463.2855 nm80Ca IIIemission3s2.3p5.(2P*<1/2>).5p 2[3/2] → 3s2.3p5.(2P*<1/2>).5d 2[3/2]*GemessenNIST
501.9971 nm80Ca IIemission3p6.5p 2P* → 3p6.6d 2DGemessenNIST
505.0089 nm80Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[3/2]* → 3s2.3p5.(2P*<3/2>).4f 2[5/2]GemessenNIST
557.0601 nm80Ca IIIemission3s2.3p5.(2P*<3/2>).4d 2[3/2]* → 3s2.3p5.(2P*<3/2>).5p 2[3/2]GemessenNIST

Erweiterte Eigenschaften

Kovalente Radien (Erweitert)

Kovalenzradius (Pyykkö)
171 pm
Kovalenzradius (Pyykkö, doppelt)
147 pm
Kovalenzradius (Pyykkö, dreifach)
133 pm
Kovalenzradius (Bragg)
170 pm

Van-der-Waals-Radien

Truhlar
231 pm
Batsanov
240 pm
Alvarez
262 pm
UFF
339,9 pm
MM3
281 pm

Atom- & Metallische Radien

Atomradius (Rahm)
270 pm
Metallradius (C12)
197 pm

Nummerierungsskalen

Mendeleev
7
Pettifor
16
Glawe
16

Elektronegativitätsskalen

Ghosh
0
Miedema
3
Gunnarsson–Lundqvist
3
Robles–Bartolotti
2

Polarisierbarkeit & Dispersion

Dipolpolarisierbarkeit
160,8 a.u.
Dipolpolarisierbarkeit (Uns.)
4 a.u.
C₆
2163 Ha·Bohr6
C₆ (Gould–Bučko)
2230 Ha·Bohr6

Miedema-Parameter

Miedema-Molvolumen
26,2 cm3/mol
Miedema-Elektronendichte
1

Lieferrisiko & Wirtschaftlichkeit

Produktionskonzentration
65
Relatives Lieferrisiko
6
Politische Stabilität (Top-Produzent)
24

Phasenübergänge & Allotrope

Schmelzpunkt1115,15 K
Siedepunkt1757,15 K

Oxidationszustands-Kategorien

+1 extended
+2 main

Erweiterte Referenzdaten

Abschirmkonstanten (6)
nOrbitalσ
1s0,527
2p3,9586
2s6,2236
3p11,3417
3s10,3985
4s15,602
Kristallradien-Details (6)
LadungCNSpinrcrystal (pm)Herkunft
2VI114
2VII120
2VIII126
2IX132
2X137calculated,
2XII148calculated,
Isotopenzerfallsarten (50)
IsotopModusIntensität
33p—
342p—
35B+100%
35B+p95,8%
352p4,2%
36B+100%
36B+p51,2%
37B+100%
37B+p76,8%
38B+100%
Röntgenstreufaktoren (504)
Energie (eV)f₁f₂
10—0,0428
10,1617—0,04527
10,3261—0,04788
10,4931—0,05063
10,6628—0,05355
10,8353—0,05663
11,0106—0,05989
11,1886—0,06334
11,3696—0,06634
11,5535—0,06922

Zusätzliche Daten

Sources

Sources of this element.

Calcium, a metallic element, is fifth in abundance in the earth's crust, of which it forms more than 3%. It is an essential constituent of leaves, bones, teeth, and shells. Never found in nature uncombined, it occurs abundantly as limestone, gypsum, and fluorite. Apatite is the fluorophosphate or chlorophosphate of calcium.

Referenzen (1)

Referenzen

(9)
2 Atomic Mass Data Center (AMDC), International Atomic Energy Agency (IAEA)
Ca

The half-life and atomic mass data was provided by the Atomic Mass Data Center at the International Atomic Energy Agency.

3 IUPAC Commission on Isotopic Abundances and Atomic Weights (CIAAW)
Calcium

Element data are cited from the Atomic weights of the elements (an IUPAC Technical Report). The IUPAC periodic table of elements can be found at https://iupac.org/what-we-do/periodic-table-of-elements/. Additional information can be found within IUPAC publication doi:10.1515/pac-2015-0703 Copyright © 2020 International Union of Pure and Applied Chemistry.

4 IUPAC Periodic Table of the Elements and Isotopes (IPTEI)

The information are cited from Pure Appl. Chem. 2018; 90(12): 1833-2092, https://doi.org/10.1515/pac-2015-0703.

Lizenzhinweis: Copyright (c) 2020 International Union of Pure and Applied Chemistry. The International Union of Pure and Applied Chemistry (IUPAC) contribution within Pubchem is provided under a CC-BY-NC-ND 4.0 license, unless otherwise stated.
5 Jefferson Lab, U.S. Department of Energy
Calcium

Thomas Jefferson National Accelerator Facility (Jefferson Lab) is one of 17 national laboratories funded by the U.S. Department of Energy. The lab's primary mission is to conduct basic research of the atom's nucleus using the lab's unique particle accelerator, known as the Continuous Electron Beam Accelerator Facility (CEBAF). For more information visit https://www.jlab.org/

Lizenzhinweis: Please see citation and linking information: https://education.jlab.org/faq/index.html
6 Los Alamos National Laboratory, U.S. Department of Energy
Calcium

The periodic table at the LANL (Los Alamos National Laboratory) contains basic element information together with the history, source, properties, use, handling and more. The provenance data may be found from the link under the source name.

7 NIST Physical Measurement Laboratory
Calcium

The periodic table contains NIST's critically-evaluated data on atomic properties of the elements. The provenance data that include data for atomic spectroscopy, X-ray and gamma ray, radiation dosimetry, nuclear physics, and condensed matter physics may be found from the link under the source name. Ref: https://www.nist.gov/pml/atomic-spectra-database

8 PubChem Elements
Calcium

This section provides all form of data related to element Calcium.

9 PubChem Elements
Calcium

The element property data was retrieved from publications.

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