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Cs 55

Cesium (Cs)

alkali-metal
Periode: 6 Gruppe: 1 Block: s

Solid

Standardatomgewicht

132,905452 u

Elektronenkonfiguration

[Xe] 6s1

Schmelzpunkt

28,44 °C

Siedepunkt

670,85 °C

Dichte

1930 kg/m³

Oxidationszustände

−1, +1

Elektronegativität (Pauling)

0,79

Ionisierungsenergie (1.)

3,893906 eV

Entdeckungsjahr

1860

Atomradius

260 pm

Details

Namensherkunft Latin: coesius (sky blue); for the blue lines of its spectrum.
Entdeckungsland Germany
Entdecker Gustov Kirchoff, Robert Bunsen

Cesium is a soft alkali metal with very low ionization energy and an unusually low melting point for a metal. It occurs naturally as the single stable isotope ¹³³Cs, chiefly in rare granitic pegmatite minerals. Chemically it is the heaviest stable group 1 element and forms almost exclusively Cs⁺ salts. Its best-known technological role is in the definition of the second, based on the microwave transition of the ¹³³Cs atom.

The metal is characterized by a spectrum containing two bright lines in the blue along with several others in the red, yellow, and green wavelengths. It is silvery white, soft, and ductile. It is the most electropositive and most alkaline element.

Cesium, gallium, and mercury are the only three metals that are liquid at room temperature. Cesium reacts explosively with cold water, and reacts with ice at temperatures above -116C. Cesium hydroxide, the strongest base known, attacks glass.

The name derives from the Latin caesius for "sky blue", which was the colour of the caesium line in the spectroscope. Caesium was discovered by the German chemist Robert Wilhelm Bunsen and the German physicist Gustav Robert Kirchhoff in 1860. It was first isolated by the German chemist Carl Setterberg in 1882.

Cesium was discovered by Robert Wilhelm Bunsen and Gustav Robert Kirchhoff, German chemists, in 1860 through the spectroscopic analysis of Durkheim mineral water. They named cesium after the blue lines they observed in its spectrum. Today, cesium is primarily obtained from the mineral pollucite (CsAlSi2O6). Obtaining pure cesium is difficult since cesium ores are frequently contaminated with rubidium, an element that is chemically similar to cesium. To obtain pure cesium, cesium and rubidium ores are crushed and heated with sodium metal to 650°C, forming an alloy that can then be separated with a process known as fractional distillation. Metallic cesium is too reactive to easily handle and is usually sold in the form of cesium azide (CsN3). Cesium is recovered from cesium azide by heating it.

From the Latin word caesius, sky blue. Cesium was discovered spectroscopically in 1860 by Bunsen and Kirchhoff in mineral water from Durkheim.

Bilder

Eigenschaften

Physikalisch

Atomradius (empirisch)
260 pm Vergleiche Atomradius (empirisch) aller Elemente →
Kovalenzradius
244 pm Vergleiche Kovalenzradius aller Elemente →
Van-der-Waals-Radius
343 pm Vergleiche Van-der-Waals-Radius aller Elemente →
Metallradius
235 pm Vergleiche Metallradius aller Elemente →
Dichte
1930 kg/m³ Vergleiche Dichte aller Elemente →
Molares Volumen
0,07 L/mol
Aggregatzustand bei Standardbedingungen
Fest Vergleiche Aggregatzustand bei Standardbedingungen aller Elemente →
Schmelzpunkt
28,44 °C Vergleiche Schmelzpunkt aller Elemente →
Siedepunkt
670,85 °C Vergleiche Siedepunkt aller Elemente →
Wärmeleitfähigkeit
35,9 W/(m·K) Vergleiche Wärmeleitfähigkeit aller Elemente →
Spezifische Wärmekapazität
0,242 J/(g·K) Vergleiche Spezifische Wärmekapazität aller Elemente →
Molare Wärmekapazität
32,21 J/(mol·K) Vergleiche Molare Wärmekapazität aller Elemente →
Kristallstruktur
Raumzentriert kubisch Vergleiche Kristallstruktur aller Elemente →

Chemisch

Elektronegativität (Pauling)
0,79 Vergleiche Elektronegativität (Pauling) aller Elemente →
Elektronegativität (Allen)
0,659
Elektronenaffinität
0,4716 eV
Ionisierungsenergie (1.)
3,893906 eV Vergleiche Ionisierungsenergie (1.) aller Elemente →
Ionisierungsenergie (2.)
23,15753 eV Vergleiche Ionisierungsenergie (2.) aller Elemente →
Ionisierungsenergie (3.)
33,195114 eV Vergleiche Ionisierungsenergie (3.) aller Elemente →
Ionisierungsenergie (4.)
43,000148 eV Vergleiche Ionisierungsenergie (4.) aller Elemente →
Ionisierungsenergie (5.)
56,000193 eV Vergleiche Ionisierungsenergie (5.) aller Elemente →
Oxidationszustände
−1, +1 Vergleiche Oxidationszustände aller Elemente →
Valenzelektronen
1 Vergleiche Valenzelektronen aller Elemente →
Elektronenkonfiguration
[Xe] 6s1

Thermodynamisch

Kritischer Punkt (Temperatur)
1665 °C
Kritischer Punkt (Druck)
9,4e+6 Pa
Schmelzwärme
0,0216614 eV Vergleiche Schmelzwärme aller Elemente →
Verdampfungswärme
0,67367985 eV Vergleiche Verdampfungswärme aller Elemente →
Sublimationswärme
0,79286936 eV
Atomisierungswärme
0,79286936 eV
Atomisierungsenthalpie
0,79286936 eV

Nuklear

Protonen
55 Vergleiche Protonen aller Elemente →
Neutronen
78 Vergleiche Neutronen aller Elemente →
Bekannte Isotope
42 Vergleiche Bekannte Isotope aller Elemente →
Stabile Isotope
1 Vergleiche Stabile Isotope aller Elemente →
Stabilstes Isotop
Cs-133
Entdeckungsjahr
1860

Häufigkeit

Häufigkeit (Erdkruste)
3 mg/kg Vergleiche Häufigkeit (Erdkruste) aller Elemente →
Häufigkeit (Ozean)
3 × 10−4 mg/L Vergleiche Häufigkeit (Ozean) aller Elemente →

Kristallstruktur

Gitterkonstante a
605 pm

Elektronische Struktur

Elektronen pro Schale
2, 8, 18, 18, 8, 1 Vergleiche Elektronen pro Schale aller Elemente →

Identifikatoren

CAS-Nummer
7440-46-2 Vergleiche CAS-Nummer aller Elemente →
Termsymbol
2S1/2
InChI
InChI=1S/Cs
InChI-Key
TVFDJXOCXUVLDH-UHFFFAOYSA-N

Elektronenkonfiguration Gemessen

Ionenladung
Protonen 55
Elektronen 55
Ladung Neutral
Konfiguration Cs: 6s¹
Elektronenkonfiguration
Gemessen
[Xe] 6s¹
1s² 2s² 2p⁶ 3s² 3p⁶ 3d¹⁰ 4s² 4p⁶ 4d¹⁰ 5s² 5p⁶ 6s¹
Orbitaldiagramm
1s
2/2
2s
2/2
2p
6/6
3s
2/2
3p
6/6
4s
2/2
3d
10/10
4p
6/6
5s
2/2
4d
10/10
5p
6/6
6s
1/2 1↑
Gesamtelektronen: 55 Ungepaart: 1 ?

Atommodell

Protonen 55
Neutronen 78
Elektronen 55
Massenzahl 133
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

Monoisotopisches Element
Einziges natürlich vorkommendes Isotop: 133 — 100,0000%
133100,0000%MassenzahlNatürliche Häufigkeit (%)
MassenzahlAtommasse (u)Natürliche HäufigkeitHalbwertszeit
133 Stabil132,905451961 ± 0,000000008100,0000%Stabil
Gemessen

Phase / Zustand

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

Grund: 3,4 °C unter Schmelzpunkt (28,44 °C)

Schmelzpunkt 28,44 °C
Siedepunkt 670,85 °C
Unter Schmelzpunkt um 3,4 °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
28,44 °C
Siedepunkt Literatur
670,85 °C
Aktuelle Phase Berechnet
Fest

Übergangsenergien

Schmelzwärme Literatur
0,0216614 eV

Energie benötigt, um 1 mol am Schmelzpunkt zu schmelzen

Verdampfungswärme Literatur
0,67367985 eV

Energie benötigt, um 1 mol am Siedepunkt zu verdampfen

Sublimationswärme Literatur
0,79286936 eV

Energie benötigt, um 1 mol am Sublimationspunkt zu sublimieren

Dichte

Referenzdichte Literatur
1930 kg/m³

Bei Standardbedingungen

Aktuelle Dichte Berechnet
1930 kg/m³

Bei Standardbedingungen

Erweitert

Kritischer Punkt Literatur
1665 °C

Atomspektren

10 von 55 angezeigt. Sortiert nach Ionenladung (aufsteigend).

Liniendaten ?

IonLadungGesamtlinienÜbergangswahrscheinlichkeitenNiveau-Bezeichnungen
Cs I 023042228
Cs II +1175721737
Cs III +2101010101010
Cs IV +32070207
Cs V +41430143
Cs VI +567067
Cs VII +61850185
Cs VIII +711113111
Cs IX +8501650
Cs X +9868686
NIST Liniendaten →

Niveaudaten ?

IonLadungNiveaus
Cs I 0179
Cs II +1316
Cs III +2174
Cs IV +3116
Cs V +450
Cs VI +532
Cs VII +679
Cs VIII +755
Cs IX +869
Cs X +979
NIST Niveaudaten →
55 Cs 132.90545196

Cesium — Atomorbital-Visualisierer

[Xe]6s1
Energieniveaus 2 8 18 18 8 1
Oxidationszustände -1, +1
HOMO 6s n=6 · l=0 · m=0
Cesium — Atomorbital-Visualisierer Vorschau
Three.js lädt nur auf Anfrage
55 Cs 132.90545196

Cesium — Kristallstruktur-Visualisierer

Raumzentriert Kubisch · Pearson cI2
Experimentell
Pearson cI2
Koordinationszahl 8
Packungsdichte 68.000%
Cesium — Kristallstruktur-Visualisierer Vorschau
Three.js lädt nur auf Anfrage

Ionenradien

LadungKoordinationSpinRadius
+16N/A167 pm
+18N/A174 pm
+19N/A178 pm
+110N/A181 pm
+111N/A185 pm
+112N/A188 pm

Verbindungen

Cs
132,905 u
Cs
136,907 u
Cs+
132,905 u
Cs
130,905 u
Cs
133,907 u
Cs
134,906 u
Cs
128,906 u
Cs
143,932 u
Cs
131,906 u
Cs
135,907 u
Cs
126,907 u
Cs
124,910 u
Cs
137,911 u
Cs
129,907 u
Cs
138,913 u
Cs+
136,907 u
Cs
142,927 u
Cs
140,920 u
Cs+
133,907 u
Cs+
131,906 u
Cs+
130,905 u

Isotope (1)

Cesium has more isotopes than any element32with masses ranging from 114 to 145.

MassenzahlAtommasse (u)Natürliche HäufigkeitHalbwertszeitZerfallsart
133 Stabil132,905451961 ± 0,000000008100,0000%Stabil
stable
133 Stabil
Atommasse (u) 132,905451961 ± 0,000000008
Natürliche Häufigkeit 100,0000%
Halbwertszeit Stabil
Zerfallsart
stable

Spektrallinien

50 von 728 angezeigt. Standardmäßig werden nur Spektrallinien mit gemessener Intensität angezeigt.

Wellenlänge (nm)IntensitätIonenstufeTypÜbergangGenauigkeitQuelle
460.37908 nm10000000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
522.70372 nm7500000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[1/2]GemessenNIST
592.56312 nm5100000Cs IIemission5p5.(2P*<3/2>).5d 2[7/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
556.3024 nm3900000Cs IIemission5p5.(2P*<3/2>).5d 2[3/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
495.28523 nm3700000Cs IIemission5p5.(2P*<3/2>).5d 2[1/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
695.54998 nm3700000Cs IIemission5p5.(2P*<3/2>).5d 2[7/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
524.93849 nm2900000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
504.38026 nm2700000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
483.01864 nm2500000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
583.11404 nm2400000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
537.09876 nm2200000Cs IIemission5p5.(2P*<3/2>).5d 2[1/2]* → 5p5.(2P*<3/2>).6p 2[1/2]GemessenNIST
452.67416 nm2000000Cs IIemission5p5.(2P*<3/2>).5d 2[1/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
487.00392 nm1900000Cs IIemission5p5.(2P*<1/2>).6s 2[1/2]* → 5p5.(2P*<1/2>).6p 2[3/2]GemessenNIST
427.71303 nm1800000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
697.96684 nm1600000Cs IIemission5p5.(2P*<3/2>).5d 2[5/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
426.470255 nm1400000Cs IIemission5p5.(2P*<3/2>).6p 2[5/2] → 5p5.(2P*<3/2>).6d 2[7/2]*GemessenNIST
721.9603 nm1400000Cs IIIemission5s2.5p5 2P* → 5s2.5p5 2P*GemessenNIST
714.95415 nm1300000Cs IIemission5p5.(2P*<1/2>).5d 2[5/2]* → 5p5.(2P*<1/2>).6p 2[3/2]GemessenNIST
450.15517 nm1200000Cs IIemission5p5.(2P*<3/2>).6s 2[3/2]* → 5p5.(2P*<3/2>).6p 2[1/2]GemessenNIST
527.40539 nm1100000Cs IIemission5p5.(2P*<3/2>).5d 2[1/2]* → 5p5.(2P*<3/2>).6p 2[1/2]GemessenNIST
534.91319 nm1000000Cs IIemission5p5.(2P*<1/2>).6s 2[1/2]* → 5p5.(2P*<1/2>).6p 2[3/2]GemessenNIST
653.6445 nm1000000Cs IIemission5p5.(2P*<3/2>).5d 2[3/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
612.86072 nm980000Cs IIemission5p5.(2P*<3/2>).5d 2[3/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
672.44659 nm960000Cs IIemission5p5.(2P*<1/2>).5d 2[5/2]* → 5p5.(2P*<1/2>).6p 2[3/2]GemessenNIST
664.65663 nm880000Cs IIemission5p5.(2P*<1/2>).5d 2[3/2]* → 5p5.(2P*<1/2>).6p 2[1/2]GemessenNIST
400.65447 nm860000Cs IIIemission5s2.5p4.(3P<2>).6s 2[2] → 5s2.5p4.(3P<2>).6p 2[3]*GemessenNIST
649.55329 nm830000Cs IIemission5p5.(2P*<3/2>).5d 2[7/2]* → 5p5.(2P*<3/2>).6p 2[5/2]GemessenNIST
497.25963 nm820000Cs IIemission5p5.(2P*<3/2>).6p 2[5/2] → 5p5.(2P*<3/2>).7s 2[3/2]*GemessenNIST
403.985602 nm800000Cs IIemission5p5.(2P*<3/2>).6p 2[5/2] → 5p5.(2P*<3/2>).6d 2[7/2]*GemessenNIST
436.329875 nm760000Cs IIemission5p5.(2P*<3/2>).6p 2[3/2] → 5p5.(2P*<3/2>).6d 2[5/2]*GemessenNIST
388.83763 nm740000Cs IIIemission5s2.5p4.(3P<1>).5d 2[3] → 5s2.5p4.(3P<2>).6p 2[3]*GemessenNIST
441.02226 nm720000Cs IIIemission5s2.5p4.(3P<2>).5d 2[3] → 5s2.5p4.(3P<2>).6p 2[2]*GemessenNIST
450.67197 nm720000Cs IIIemission5s2.5p4.(3P<2>).5d 2[3] → 5s2.5p4.(3P<2>).6p 2[2]*GemessenNIST
476.36362 nm700000Cs IIemission5p5.(2P*<1/2>).6s 2[1/2]* → 5p5.(2P*<1/2>).6p 2[1/2]GemessenNIST
520.95813 nm650000Cs IIemission5p5.(2P*<1/2>).6s 2[1/2]* → 5p5.(2P*<1/2>).6p 2[3/2]GemessenNIST
392.55957 nm620000Cs IIIemission5s2.5p4.(3P<2>).5d 2[3] → 5s2.5p4.(3P<2>).6p 2[3]*GemessenNIST
442.56759 nm560000Cs IIIemission5s2.5p4.(3P<2>).6s 2[2] → 5s2.5p4.(3P<2>).6p 2[2]*GemessenNIST
428.837507 nm510000Cs IIemission5p5.(2P*<3/2>).6p 2[3/2] → 5p5.(2P*<3/2>).6d 2[5/2]*GemessenNIST
488.00516 nm490000Cs IIemission5p5.(2P*<1/2>).6s 2[1/2]* → 5p5.(2P*<1/2>).6p 2[1/2]GemessenNIST
581.41641 nm450000Cs IIemission5p5.(2P*<3/2>).5d 2[3/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
395.95055 nm420000Cs IIemission5p5.(2P*<3/2>).5d 2[1/2]* → 5p5.(2P*<3/2>).6p 2[1/2]GemessenNIST
461.61693 nm420000Cs IIemission5p5.(2P*<1/2>).6s 2[1/2]* → 5p5.(2P*<1/2>).6p 2[1/2]GemessenNIST
453.896566 nm410000Cs IIemission5p5.(2P*<3/2>).6p 2[3/2] → 5p5.(2P*<3/2>).6d 2[3/2]*GemessenNIST
440.525568 nm390000Cs IIemission5p5.(2P*<3/2>).6p 2[1/2] → 5p5.(2P*<3/2>).7s 2[3/2]*GemessenNIST
437.30356 nm370000Cs IIemission5p5.(2P*<3/2>).5d 2[1/2]* → 5p5.(2P*<3/2>).6p 2[3/2]GemessenNIST
452.28578 nm350000Cs IIIemission5s2.5p4.(3P<2>).6s 2[2] → 5s2.5p4.(3P<2>).6p 2[2]*GemessenNIST
389.698641 nm340000Cs IIemission5p5.(2P*<3/2>).6p 2[1/2] → 5p5.(2P*<3/2>).6d 2[1/2]*GemessenNIST
404.34262 nm310000Cs IIIemission5s2.5p4.(1D<2>).6s 2[2] → 5s2.5p4.(1D<2>).6p 2[3]*GemessenNIST
645.6318 nm310000Cs IIIemission5s2.5p4.(3P<2>).7p 2[3]* → 5s2.5p4.(3P<2>).7d 2[4]GemessenNIST
607.9854 nm300000Cs IIIemission5s2.5p4.(3P<2>).5f 2[2]* → 5s2.5p4.(3P<2>).5g 2[3]GemessenNIST

Erweiterte Eigenschaften

Kovalente Radien (Erweitert)

Kovalenzradius (Pyykkö)
232 pm
Kovalenzradius (Pyykkö, doppelt)
209 pm
Kovalenzradius (Bragg)
237 pm

Van-der-Waals-Radien

Truhlar
343 pm
Batsanov
300 pm
Alvarez
348 pm
UFF
451,7 pm
MM3
344 pm

Atom- & Metallische Radien

Atomradius (Rahm)
249 pm
Metallradius (C12)
267 pm

Nummerierungsskalen

Mendeleev
5
Pettifor
8
Glawe
8

Elektronegativitätsskalen

Ghosh
0
Miedema
2
Gunnarsson–Lundqvist
2
Robles–Bartolotti
1

Polarisierbarkeit & Dispersion

Dipolpolarisierbarkeit
400,9 a.u.
Dipolpolarisierbarkeit (Uns.)
0,7 a.u.
C₆ (Gould–Bučko)
6660 Ha·Bohr6

Miedema-Parameter

Miedema-Molvolumen
69,23 cm3/mol
Miedema-Elektronendichte
0

Phasenübergänge & Allotrope

Schmelzpunkt301,65 K
Siedepunkt944,15 K
Kritischer Punkt (Temperatur)1938,15 K
Kritischer Punkt (Druck)9,4 MPa

Oxidationszustands-Kategorien

−1 extended
+1 main

Erweiterte Referenzdaten

Abschirmkonstanten (12)
nOrbitalσ
1s1,0957
2p4,1804
2s14,4884
3d14,0194
3p18,4222
3s18,6226
4d32,1616
4p29,1424
4s27,9576
5p41,349
Kristallradien-Details (6)
LadungCNSpinrcrystal (pm)Herkunft
1VI181
1VIII188
1IX192
1X195
1XI199
1XII202
Isotopenzerfallsarten (74)
IsotopModusIntensität
111p—
112p100%
112A0,3%
113p100%
114B+100%
114A0%
114B+p8,7%
114B+A0,2%
115B+100%
115B+p0,1%
Röntgenstreufaktoren (508)
Energie (eV)f₁f₂
10—0,04294
10,1617—0,04199
10,3261—0,04106
10,4931—0,04015
10,6628—0,03925
10,8353—0,03838
11,0106—0,04186
11,1886—0,04987
11,3696—0,06291
11,5535—0,06823

Zusätzliche Daten

Sources

Sources of this element.

Cesium, an alkali metal, occurs in lepidolite, pollucte (a hydrated silicate of aluminum and cesium), and in other sources. One of the world's richest sources of cesium is located at Bernic Lake, Manitoba. The deposits are estimated to contain 300,000 tons of pollucite, averaging 20% cesium.

It can be isolated by elecytrolysis of the fused cyanide and by a number of other methods. Very pure, gas-free cesium can be prepared by thermal decomposition of cesium azide.

Referenzen (1)

Referenzen

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

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)
Caesium

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
Cesium

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
Cesium

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
Cesium

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
Cesium

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

9 PubChem Elements
Cesium

The element property data was retrieved from publications.

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