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Rapid and highly reproducible analysis of rare earth elements by multiple collector inductively coupled plasma mass spectrometry
Joel Baker
*
,
Tod Waight
, David Ulfbeck
*
Corresponding author for this work
Geology
65
Citations (Scopus)
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Dive into the research topics of 'Rapid and highly reproducible analysis of rare earth elements by multiple collector inductively coupled plasma mass spectrometry'. Together they form a unique fingerprint.
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Earth & Environmental Sciences
rare earth element
84%
mass spectrometry
84%
plasma
77%
analysis
26%
dilution
22%
isotope
19%
anomaly
18%
digestion
12%
recycling
10%
hydrofluoric acid
9%
oceanic lithosphere
7%
nitric acid
7%
dehydration
6%
ionization
6%
partial melting
6%
ion exchange
6%
metamorphism
5%
spectrometer
5%
oxide
4%
sedimentation
4%
mantle
4%
chemical
3%
rock
3%
material
2%
effect
1%
method
1%
Chemical Compounds
Inductively Coupled Plasm Mass Spectrometry (ICPMS)
100%
Lanthanoid Atom
75%
Isotope
24%
Dilution
23%
Weighing
8%
Inductively Coupled Plasma
7%
Quadrupole
6%
Sedimentation
6%
Cation Exchange
6%
Recycling
6%
Melting
6%
Dehydration
6%
Ionization
5%
Error
5%
Column Like Crystal
4%
Oxide
3%
Amount
3%