Applications focused on AAS - page 1
Linearity Limits for Several Trace Metals Currently Determined by Electrothermal Atomic Absorption Spectrometry
Technical notes
| 2010 | Agilent Technologies
AAS
Manufacturer
Agilent Technologies
Improvements in Detection Limits in Atomic Absorption Spectroscopy using the new digitally controlled Graphite Furnace - GFA-7000
Technical notes
| N/A | Shimadzu
AAS
What are the benefits and considerations of upgrading to ICP-MS from GF-AA?
Technical notes
| 2016 | Thermo Fisher Scientific
AAS, ICP/MS
Instrumentation
AAS, ICP/MS
Manufacturer
Thermo Fisher Scientific
What are the benefits and considerations of upgrading to ICP-OES from AAS?
Technical notes
| 2016 | Thermo Fisher Scientific
ICP-OES, AAS
Instrumentation
ICP-OES, AAS
Manufacturer
Thermo Fisher Scientific
Characteristic Mass in Graphite Furnace Atomic Absorption Spectrometry
Technical notes
| 2019 | Agilent Technologies
AAS
Manufacturer
Agilent Technologies
Optimizing GFAAS Ashing and Atomizing Temperatures using Surface Response Methodology
Technical notes
| 2018 | Agilent Technologies
AAS
Manufacturer
Agilent Technologies
Features and Operation of Hollow Cathode Lamps and Deuterium Lamps
Technical notes
| 2010 | Agilent Technologies
AAS
Manufacturer
Agilent Technologies
Sensitivity Enhancement for Flame Atomic Absorption Spectrometry Using an Atom Concentrator Tube, the ACT 80
Technical notes
| 2010 | Agilent Technologies
AAS
Manufacturer
Agilent Technologies
Benefits of Transitioning From Flame AAS to the 4210 MP-AES
Technical notes
| 2020 | Agilent Technologies
AAS, GD/MP/ICP-AES
Instrumentation
AAS, GD/MP/ICP-AES
Manufacturer
Agilent Technologies
Evaluation of the Mark-VI Spray Chamber for Flame Atomic Absorption Spectrometry
Technical notes
| 2010 | Agilent Technologies
AAS
Manufacturer
Agilent Technologies