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Earth and planetary science letters, ISSN 0012-821X, 12/2010, Volume 300, Issue 3-4, pp. 343 - 350
Accurate determination of the absolute ages of the oldest Solar System objects — chondrules and Ca–Al-rich inclusions (CAIs), requires knowledge of their 238U/... 
refractory inclusions | absolute age | chondrules | uranium isotopes | chondrites | U–Pb | Chondrules | Chondrites | Refractory inclusions | Absolute age | U-Pb | Uranium isotopes
Journal Article
Chemical geology, ISSN 0009-2541, 01/2008, Volume 247, Issue 1-2, pp. 100 - 118
We describe an in situ method for simultaneous measurement of U–Pb–Hf isotopes and trace element compositions of zircons using a quadrupole and... 
Trace elements | Hf isotopes | Laser ablation | ICP-MS | Zircon | U–Pb dating | U-Pb dating | Physical Sciences | Science & Technology | Geochemistry & Geophysics | Zirconium | Analysis
Journal Article
1982, Cambridge earth science series, ISBN 0521247284, xi, 131
Book
Chemical geology, ISSN 0009-2541, 04/2004, Volume 205, Issue 1-2, pp. 115 - 140
Precise isotope dilution–thermal ionisation mass spectrometry (ID–TIMS) documentation is given for two new Palaeozoic zircon standards (TEMORA 2 and R33).... 
SHRIMP | Reference standards | U–Pb geochronology | ELA–ICP–MS | Matrix effect | Oxygen isotopes | Zircon | U-Pb geochronology | ELA-ICP-MS
Journal Article
Geochemistry Geophysics Geosystems, ISSN 1525-2027, 08/2007, Volume 8, Issue 8, pp. Q08006 - n/a
A comprehensive treatment of the derivation of U‐Pb isotope ratios and their corresponding uncertainties from isotope dilution thermal ionization mass... 
General or miscellaneous | Geochronology | Radioisotope geochronology | Instruments and techniques | error | geochronology | U‐Pb | Error | U-Pb
Journal Article
Earth and planetary science letters, ISSN 0012-821X, 04/2008, Volume 268, Issue 3-4, pp. 476 - 486
Large deviations in e{open} from bulk silicate Earth seen in > 4 Ga detrital zircons from Jack Hills, Western Australia, have been interpreted as reflecting a... 
zircon | Hadean | U-Pb | Lu-Hf
Journal Article
Lithos, ISSN 0024-4937, 2007, Volume 97, Issue 1, pp. 140 - 160
The Tien Shan (Tianshan) orogen formed during Late Palaeozoic collision between the Karakum–Tarim continent and the Paleo-Kazakhstan continent, a Caledonian... 
Tien Shan | Post-collisional magmatism | A-type granite | U–Pb zircon | U-Pb zircon
Journal Article
Chemical geology, ISSN 0009-2541, 05/2009, Volume 262, Issue 3-4, pp. 229 - 245
During the Mesozoic–Cenozoic, northward Neotethyan subduction and subsequent India–Asia collision gave rise to the extensive Transhimalayan magmatism that... 
Gangdese batholith | U–Pb age | Hf isotope | Tibet | Petrogenesis | Zircon | U-Pb age | Physical Sciences | Science & Technology | Geochemistry & Geophysics | Magmatism | Earth | Geochronology | Zirconium | Tracers (Biology) | Analysis | Geophysics | Batholiths | Sediments (Geology) | Age
Journal Article
Lithos, ISSN 0024-4937, 07/2013, Volume 172-173, pp. 1 - 16
The Cretaceous Xigaze ophiolite is best exposed at the central Yarlung Zangbo Suture Zone (YZSZ, Tibet) which also includes the Gangdese arc and the Xigaze... 
Xigaze ophiolite | Geochemistry | Zircon U–Pb geochronology | Supra-subduction zone | Slab rollback | Zircon U-Pb geochronology | Earth | Geochronology | Meteorites | Rocks, Igneous | Analysis | Mantle | Mid-ocean ridges
Journal Article
Precambrian research, ISSN 0301-9268, 05/2014, Volume 245, pp. 13 - 28
•Amphibolites in the Ailaoshan tectonic zone give U–Pb age of 815–800Ma.•They originated from a metasomatised source or slab-melt modified wedge.•The formation... 
Amphibolite | Zircon U–Pb dating | Neoproterozoic subduction | Ailaoshan zone | Petrogenesis | Zircon U-Pb dating | Geosciences, Multidisciplinary | Physical Sciences | Geology | Science & Technology | Mines and mineral resources | Tectonics (Geology) | Chemical properties
Journal Article