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Chemical element with atomic number 70 (Yb)
Ytterbium is a chemical element; it has symbol Yb and atomic number 70. It is a metal, the fourteenth element in the lanthanide series, which is the basis
Ytterbium
Chemical compounds containing the element ytterbium
Ytterbium compounds are compounds formed by the lanthanide element ytterbium (Yb). Ytterbium commonly occurs in the +3 oxidation state, with the 4f13 electronic
Ytterbium_compounds
Naturally occurring ytterbium (70Yb) is composed of seven stable isotopes: 168Yb, 170Yb–174Yb, and 176Yb, with 174Yb being the most abundant (31.90% natural
Isotopes_of_ytterbium
Index of chemical compounds with the same name
Ytterbium sulfide may refer to: Ytterbium(II) sulfide (Ytterbium monosulfide), YbS Ytterbium(III) sulfide (Ytterbium sesquisulfide), Yb2S3 This set index
Ytterbium_sulfide
Index of chemical compounds with the same name
Ytterbium chloride may refer to either of these ytterbium compounds: Ytterbium(II) chloride, YbCl2 Ytterbium(III) chloride, YbCl3 This set index article
Ytterbium_chloride
Index of chemical compounds with the same name
Ytterbium fluoride may refer to: Ytterbium(II) fluoride (ytterbium difluoride), YbF2 Ytterbium(III) fluoride (ytterbium trifluoride), YbF3 This set index
Ytterbium_fluoride
Index of chemical compounds with the same name
Ytterbium iodide may refer to: Ytterbium(II) iodide (ytterbium diiodide), YbI2 Ytterbium(III) iodide (ytterbium triiodide), YbI3 This set index article
Ytterbium_iodide
Chemical compound
Ytterbium(II) oxide is a binary inorganic compound of ytterbium and oxygen with the formula YbO. It is a metastable rare-earth monoxide containing ytterbium
Ytterbium(II)_oxide
Chemical compound
Ytterbium disilicide is a binary inorganic compound of ytterbium and silicon with the chemical formula YbSi2. An attempt to produce ytterbium disilicide
Ytterbium_disilicide
erbium, ytterbium Greek dysprósitos 'hard to get' Neo-Latin Holmia 'Stockholm' Ytterby, where it was found; see yttrium, terbium, ytterbium Thule, the
List_of_chemical_elements
Chemical compound
Ytterbium(II) bromide is an inorganic compound with the chemical formula YbBr2. Ytterbium(II) bromide can be produced by the reduction reaction of ytterbium(III)
Ytterbium(II)_bromide
Chemical compound
Ytterbium(III) sulfide is a binary inorganic compound of ytterbium and sulfur with the chemical formula Yb2S3. It is a yellow solid of rhombic symmetry
Ytterbium(III)_sulfide
Chemical compound
Ytterbium(III) acetylacetonate is a coordination compound with the chemical formula Yb(C5H7O2)3(H2O)2. Its structure is different from the acetylacetone
Ytterbium(III) acetylacetonate
Ytterbium(III)_acetylacetonate
Tabular arrangement of the chemical elements
4f orbitals are low enough in energy to participate in chemistry. At ytterbium, the seven 4f orbitals are completely filled with fourteen electrons;
Periodic_table
Chemical compound
Ytterbium(II) sulfide is a binary inorganic compound of ytterbium and sulfur with the chemical formula YbS. Synthesis of ytterbium(II) sulfide can be via
Ytterbium(II)_sulfide
Chemical compound
Ytterbium(III) bromate is an inorganic compound with the chemical formula Yb(BrO3)3. It can be produced by the reaction of ytterbium(III) sulfate and barium
Ytterbium(III)_bromate
Chemical compound
Ytterbium(III) phosphate is an inorganic compound of ytterbium and phosphate with the chemical formula YbPO4. Hydrated forms are also known. Hydrated ytterbium(III)
Ytterbium(III)_phosphate
Chemical compound
Ytterbium(III) hydroxide is an inorganic compound with the chemical formula Yb(OH)3. Ytterbium(III) hydroxide dissolves in acid to form a ytterbium salt:
Ytterbium(III)_hydroxide
Chemical compound
Ytterbium(III) nitride is a binary inorganic compound of ytterbium and nitrogen with the chemical formula YbN. Ytterbium(III) nitride can be prepared from
Ytterbium(III)_nitride
Chemical compound
Ytterbium(III) iodide is one of ytterbium's iodides, with the chemical formula of YbI3. Ytterbium(III) iodide can be prepared by reacting metallic ytterbium
Ytterbium(III)_iodide
Art and practice of creating images by recording light
Australia. They used an electric field to trap an "Ion" of the element, Ytterbium. The image was recorded on a CCD, an electronic photographic film. Wildlife
Photography
Chemical compound
Ytterbium(III) arsenate is an inorganic compound of ytterbium in the +3 oxidation state and the arsenate ion, with the formula YbAsO4. It is a colorless
Ytterbium(III)_arsenate
Chemical compound
Ytterbium(III) perchlorate is an inorganic compound of ytterbium in the +3 oxidation state and the perchlorate ion, with the formula Yb(ClO4)3. It forms
Ytterbium(III)_perchlorate
Chemical compound
Ytterbium monotelluride is an inorganic compound, one of the tellurides of ytterbium, with the chemical formula YbTe. Ytterbium monotelluride can be produced
Ytterbium_monotelluride
Chemical element with atomic number 71 (Lu)
Charles James. All of these researchers found lutetium as an impurity in ytterbium. The dispute on the priority of the discovery occurred shortly after,
Lutetium
Chemical compound
Ytterbium(III) oxalate is the oxalate of ytterbium, with the chemical formula Yb2(C2O4)3. Ytterbium(III) oxalate hydrate can be prepared by reacting an
Ytterbium(III)_oxalate
Chemical compound
Ytterbium(II) hydride is the hydride of ytterbium with the chemical formula YbH2. In this compound, the ytterbium atom has an oxidation state of +2 and
Ytterbium(II)_hydride
Chemical compound
Ytterbium(II) fluoride is a binary inorganic compound of ytterbium and fluorine with the chemical formula YbF2. Ytterbium(II) fluoride can be obtained
Ytterbium(II)_fluoride
Chemical compound
Ytterbium(II) iodide is an iodide of ytterbium, with the chemical formula of YbI2. It is a yellow solid. Ytterbium(II) iodide can be prepared by heating
Ytterbium(II)_iodide
Chemical compound
Ytterbium(III) fluoride (YbF 3) is an inorganic chemical compound that is insoluble in water. Like other Ytterbium compounds, it is a rather unremarkable
Ytterbium(III)_fluoride
Chemical compound
Ytterbium(II) chloride (YbCl2) is an inorganic chemical compound. It was first prepared in 1929 by W. K. Klemm and W. Schuth, by reduction of ytterbium(III)
Ytterbium(II)_chloride
Chemical compound
Ytterbium(III) cyanide is an inorganic compound with the chemical formula Yb(CN)3. Ytterbium(III) cyanide can be obtained by reacting ytterbium n-butylide
Ytterbium(III)_cyanide
Chemical element with atomic number 102 (No)
experiments have confirmed that nobelium behaves as a heavier homolog to ytterbium in the periodic table. The chemical properties of nobelium are not completely
Nobelium
Chemical compound
Ytterbium(III) phosphide is an inorganic compound of ytterbium and phosphorus with the chemical formula YbP. This is one of the phosphides of ytterbium
Ytterbium(III)_phosphide
Village in Sweden
world; the chemical elements yttrium (Y), terbium (Tb), erbium (Er), and ytterbium (Yb) are all named after Ytterby, and the elements holmium (Ho), scandium
Ytterby
Chemical compound
Ytterbium(III) oxide is the chemical compound with the formula Yb2O3. It is one of the more commonly encountered compounds of ytterbium. It occurs naturally
Ytterbium(III)_oxide
Chemical compound
Ytterbium(III) bromide is an inorganic chemical compound with the formula YbBr3. It exists in the anhydrous solid. From aqueous solution, a hydrated form
Ytterbium(III)_bromide
Chemical compound
Ytterbium(III) acetate is an inorganic salt of ytterbium and acetic acid, with a chemical formula of Yb(CH3COO)3. It has colorless crystals that are soluble
Ytterbium(III)_acetate
Inorganic compound
Lanthanum ytterbium oxide is a solid inorganic compound of lanthanum, ytterbium and oxygen with the chemical formula of LaYbO3. This compound adopts the
Lanthanum_ytterbium_oxide
Nuclide that does not undergo radioactive decay
Thulium-169 (α) Ytterbium-168 (α, 2E)* Ytterbium-170 (α) Ytterbium-171 (α) Ytterbium-172 (α) Ytterbium-173 (α) Ytterbium-174 (α) Ytterbium-176 (α, 2B)* Lutetium-175
Stable_isotope
Chemical compound
Ytterbium(III) iodate is an inorganic compound with the chemical formula Yb(IO3)3. Its dihydrate can be prepared by reacting ytterbium sulfate and iodic
Ytterbium(III)_iodate
Chemical compound
Ytterbium(III) sulfate (ytterbium sulphate) is a ytterbium salt of sulfuric acid, with formula Yb2(SO4)3. It is used mostly for research. This compound's
Ytterbium(III)_sulfate
Chemical compound
Ytterbium(III) nitrate is an inorganic compound, a salt of ytterbium and nitric acid with the chemical formula Yb(NO3)3. The compound forms colorless crystals
Ytterbium(III)_nitrate
Chemical compound
Ytterbium(III) chloride (YbCl3) is an inorganic compound. It is a paramagnetic Lewis acid, like many of the lanthanide chlorides. This gives rise to pseudocontact
Ytterbium(III)_chloride
Chemical compound
Ytterbium(III) selenate is an inorganic compound of ytterbium and the selenate ion, with the chemical formula Yb2(SeO4)3. Both anhydrous and hydrated
Ytterbium(III)_selenate
Chemical element with atomic number 69 (Tm)
thulium, respectively. His example of thulium oxide contained impurities of ytterbium oxide. A relatively pure sample of thulium oxide was first obtained in
Thulium
Triflate salts of the lanthanides
considerably. Clark et al. report 90% conversion using just 1 mol% of ytterbium triflate in weak nitric acid, generating only a small volume of acidic
Lanthanide trifluoromethanesulfonates
Lanthanide_trifluoromethanesulfonates
Chemical element with atomic number 39 (Y)
rose-colored erbium oxide (called 'terbia' at the time). A fourth oxide, ytterbium oxide, was isolated in 1878 by Jean Charles Galissard de Marignac. New
Yttrium
Laser using an optical fiber as the active gain medium
medium is an optical fiber doped with rare-earth elements such as erbium, ytterbium, neodymium, dysprosium, praseodymium, thulium and holmium. They are related
Fiber_laser
Phosphate mineral
of separation. The rare-earth elements dysprosium, erbium, terbium and ytterbium, as well as metal elements such as thorium and uranium (all replacing
Xenotime
Crystallographic system where the unit cell is in the shape of a cube
249–251. doi:10.1107/s0021889879012309. Okamoto, H. (1999). "Bi-Yb (bismuth-ytterbium)". Journal of Phase Equilibria. 20 (4): 453. doi:10.1361/105497199770335640
Cubic_crystal_system
Chemical element with atomic number 47 (Ag)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Silver
Chemical element with atomic number 94 (Pu)
strontium, and barium of the alkaline earth metals; and europium and ytterbium of the rare earth metals. Partial exceptions include the refractory metals
Plutonium
Column of elements in the periodic table of the chemical elements
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Group_(periodic_table)
Chemical element with atomic number 65 (Tb)
impurity in yttrium oxide (Y2O3). Yttrium and terbium, as well as erbium and ytterbium, are named after the village of Ytterby in Sweden. Terbium was not isolated
Terbium
Austrian scientist and inventor (1858–1929)
the element lutetium (which he named cassiopeium), separating it from ytterbium in 1907, setting off the longest priority dispute in the history of chemistry
Carl_Auer_von_Welsbach
Set of adjacent groups
5th rows. The f-block elements come in two series: lanthanum through ytterbium in period 6, and actinium through nobelium in period 7. All are metals
Block_(periodic_table)
Chemical element with atomic number 80 (Hg)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Mercury_(element)
capture to erbium isotopes, and the primary mode after is beta emission to ytterbium isotopes. All isotopes of thulium are either radioactive or, in the case
Isotopes_of_thulium
Decrease of ionic radii across the lanthanide series
density and melting point from lanthanum to lutetium (with europium and ytterbium being the most notable exceptions; in the metallic state, they are divalent
Lanthanide_contraction
U.S. fiber laser company
2006-04-01. Retrieved 2018-10-30. Gapontsev, Valentin (2004). Ultra high power Ytterbium fiber lasers. Pacific International Conference on Applications of Lasers
IPG_Photonics
Variant of the Latin alphabet
"oxygen"). However, the <y> is retained in ytriu ("yttrium") and yterbiu ("ytterbium"), probably because of the element symbols Y and Yb. In cases where the
Romanian_alphabet
Chemical element with atomic number 57 (La)
paramagnetic later lanthanides (with the exceptions of the last two, ytterbium and lutetium, where the 4f shell is completely full). However, the 4f
Lanthanum
Chemical element with atomic number 29 (Cu)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Copper
Group of chemical elements
overlooks the problem on the other end: that the f-shells complete filling at ytterbium and nobelium (matching the Sc-Y-Lu-Lr form), not at lutetium and lawrencium
Group_3_element
Chemical compound
Ytterbium dirhodium disilicide (YbRh2Si2), also abbreviated YRS, is a heavy fermion solid state compound of ytterbium, rhodium and silicon. It becomes
Ytterbium dirhodium disilicide
Ytterbium_dirhodium_disilicide
Chemical element with atomic number 74 (W)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Tungsten
electron capture (with some alpha and positron emission), leading to ytterbium or less often thulium isotopes, and the primary mode after is beta emission
Isotopes_of_lutetium
Chemical element with atomic number 21 (Sc)
PMID 37758953. Mathur, Lakshya; Jeon, Sang-Yun (2024). "Ternary co-doped ytterbium-scandium stabilized zirconia electrolyte for solid oxide fuel cells".
Scandium
Chemical element with atomic number 20 (Ca)
as well as the alkali metals and the divalent lanthanides europium and ytterbium, calcium metal dissolves directly in liquid ammonia to give a dark blue
Calcium
Elements with atomic numbers 57-70
lanthanum through lutetium. In the periodic table, the first fourteen (up to ytterbium) fill the 4f orbitals. Lutetium (element 71) is also often considered
Lanthanide
Chemical element with atomic number 82 (Pb)
depositing lead atoms on the surface of an icosahedral silver-indium-ytterbium quasicrystal. Its conductivity was not recorded. Diamond cubic structures
Lead
Chemical element with atomic number 15 (P)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Phosphorus
Laser which uses a solid gain medium
is added a "dopant" such as neodymium, chromium, erbium, thulium, or ytterbium. Many of the common dopants are rare-earth elements, because the excited
Solid-state_laser
Physics professor
solid-state and semiconductor lasers; specifically the development of ytterbium-doped silica fibre lasers and Vertical External-Cavity Surface-Emitting
Anne_Tropper
Chemical element with atomic number 67 (Ho)
727 °C; 4,940 °F), holmium is the sixth most volatile lanthanide after ytterbium, europium, samarium, thulium and dysprosium. At standard temperature and
Holmium
Chemical element with atomic number 77 (Ir)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Iridium
Chemical element with atomic number 35 (Br)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Bromine
Chemical element with atomic number 101 (Md)
the metallic state, can exist as either divalent (such as europium and ytterbium) or trivalent (most other lanthanides) metals. The former have fns2 configurations
Mendelevium
Chemical element with atomic number 6 (C)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Carbon
Topics referred to by the same term
Berhormat, Malay for The Honorable, styled before Members of Parliament Ytterbium, symbol Yb, a chemical element YB, vehicle registration prefix for rickshaws
Yb
Chemical element with atomic number 50 (Sn)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Tin
Chemical element with atomic number 100 (Fm)
The electrode potential has been estimated to be similar to that of the ytterbium(III)/(II) couple, or about −1.15 V with respect to the standard hydrogen
Fermium
Swedish chemist (1757–1824)
extracted from ytterbite: terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium, and yttrium. Arrhenius was born in Stockholm on 29 March 1757
Carl_Axel_Arrhenius
Chemical compound
used in organic synthesis in the preparation of samarium(II) iodide or ytterbium(II) iodide in an inert solvent such as THF. Sm + ICH2CH2I → SmI2 + H2C=CH2
1,2-Diiodoethane
Class of chemical compounds
Haschke, John M. (April 1975). "Preparation and some properties of ytterbium carbide hydrides". Inorganic Chemistry. 14 (4): 779–783. doi:10.1021/ic50146a016
Carbohydride
Volcano in south west Tanzania
Erbium Er2O3 0.05 0.14 0.06 Heavy RE Thulium Tm2O3 0.00 0.01 0.00 Heavy RE Ytterbium Yb2O3 0.02 0.07 0.02 Heavy RE Lutetium Lu2O3 0.00 0.01 0.00 Other Yttrium
Ngualla
Chemical data page
This page provides supplementary chemical data on Ytterbium(III) chloride This box: view edit Except where noted otherwise, data relate to Standard
Ytterbium(III) chloride (data page)
Ytterbium(III)_chloride_(data_page)
French chemist
priority to Urbain as the first to describe the separation of lutetium from ytterbium. Urbain's "lutecia" was adapted to "lutetium". Urbain's name "neoytterbium"
Georges_Urbain
Chemical element with atomic number 118 (Og)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Oganesson
Device used to regulate the power of a nuclear reactor
europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, and lutetium. Alloys or compounds may also be used, such as high-boron
Control_rod
Chemical element with atomic number 38 (Sr)
as well as the alkali metals and the divalent lanthanides europium and ytterbium, strontium metal dissolves directly in liquid ammonia to give a dark blue
Strontium
Any of the fifteen lanthanides plus scandium and yttrium
erbium group (dysprosium, holmium, erbium, and thulium) and the ytterbium group (ytterbium and lutetium), but today the main grouping is between the cerium
Rare-earth_element
Element whose atomic number is greater than 92
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Transuranium_element
a solid-state laser whose active laser medium is erbium-doped glass. Ytterbium (Yb) is sometimes added to these lasers to improve their efficiency. Er:glass
Er:glass_laser
Isotope of thulium
thulium-169 Thulium-170 is an isotope of thulium Heavier: thulium-171 Decay product of: — Decay chain of thulium-170 Decays to: erbium-170 ytterbium-170
Thulium-170
Chemical element with atomic number 87 (Fr)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Francium
Chemical element with atomic number 10 (Ne)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Neon
Physical phenomenon due to impurities
those involving rare earth elements such as cerium, praseodymium, and ytterbium, and actinide elements such as uranium. The Kondo effect has also been
Kondo_effect
Chemical element with atomic number 98 (Cf)
Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold
Californium
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