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In this study, the common complex spectral interferences experienced when measuring REEs were overcome using an Agilent 5800 VDV ICP-OES
- Publication Part Number: 5994-4492EN
- Created: 31 Jan 2022
- 1 MB
This study demonstrates the use of an Agilent ICP-OES for the elemental analysis in accordance with the USP method
- Publication Part Number: 5994-4199en
- Created: 07 Oct 2021
- 989 KB
Metallic impurities in trichlorosilane (TCS), an intermediate product used in the production of photovoltaic (PV) silicon, must be strictly controlled in order to produce...
- Publication Part Number: 5990-8175EN
- Created: 20 Sep 2021
- 427 KB
This study demonstrates how to meet the single- and sub-ppt guideline levels for ASTM/SEMI elements in ultrapure water using an Agilent 8900 ICP-QQQ
- Publication Part Number: 5994-4025en
- Created: 16 Aug 2021
- 724 KB
This study uses ICP-MS and HPLC-ICP-MS to measure metals in baby food to ensure compliance with action levels in US Baby Food Safety Act 2021
- Publication Part Number: 5994-3713en
- Created: 12 Aug 2021
- 1 MB
Application note for elucidating rock and mineral composition with handheld Agilent FTIR analyzers
- Publication Part Number: 5990-7797EN
- Created: 25 Apr 2021
- 586 KB
A study of the use of Agilent’s MP-AES instrument as a high performance, low cost and safe technique for analysing metals in base metal ores
- Publication Part Number: 5991-8120EN
- Created: 21 Apr 2021
- 582 KB
Routine quality control of raw materials used to produce cathode material for lithium ion batteries
- Publication Part Number: 5991-9507en
- Created: 11 Dec 2020
- 2 MB
Routine quality control of raw materials used to produce cathode material for lithium ion batteries
- Publication Part Number: 5944-9507en
- Created: 09 Dec 2020
- 2 MB
Benefit from sample and operational insights with the Agilent 7850 ICP-MS
- Publication Part Number: 5994-2828EN
- Created: 11 Nov 2020
- 240 KB
Measured using the Agilent 280Z graphite furnace atomic absorption spectrometer and Omega platform tube
- Publication Part Number: 5994-1736EN
- Created: 06 Feb 2020
- 623 KB
Method compliant with EU regulations and in accordance with two CEN standards on the analysis of iAs
- Publication Part Number: 5994-1642EN
- Created: 06 Jan 2020
- 918 KB
| Japanese (Japan) | Complete (PDF) |
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Two wheat flour samples using Chinese methods: GB Method 5009.12—2010 for Pb, GB 5009.15—2014 for Cd, GB 5009.123—2014 for Cr, and GB 5009. 138—2003 for Ni.
- Publication Part Number: 5991-8844en
- Created: 07 Mar 2019
- 384 KB
This routine method meets requirements of the world’s first quality and safety standards for e-cigarettes
- Publication Part Number: 5991-8676EN
- Created: 23 Sep 2018
- 782 KB
Cost-effective approach meets requirements of Chinese standard method for 16 elements
- Publication Part Number: 5991-9287EN
- Created: 16 Apr 2018
- 1 MB
Intelligent Rinse function reduced analysis time by 60%, saving 191 L of argon
- Publication Part Number: 5991-9125EN
- Created: 11 Apr 2018
- 483 KB
Example analysis of Pb in water via ISO:15586 method using Agilent's Surface Response Methodology tool and a chemical modifier.
- Publication Part Number: 59919076EN
- Created: 15 Mar 2018
- 692 KB
Application note for the direct determination of cadmium in blood by electrothermal atomization with the Graphite Platform
- Publication Part Number: SI-A-1098
- Created: 09 Mar 2018
- 167 KB
55% faster trace element analysis of water samples that uses 50% less argon via the Synchronous Vertical Dual View Mode of Agilent’s ICP-OES
- Publication Part Number: 5991-4821EN
- Created: 10 Dec 2017
- 333 KB
High sensitivity, detection limits down to sub ppb levels and faster than conventional flame Atomic Absorption (AA). Best of all, the 4210 MP-AES runs on air.
- Publication Part Number: 5991-7237EN
- Created: 22 Aug 2017
- 2 MB