hdip mass spectrometry data analysis software (Teledyne Technologies)
86
Structured Review
Teledyne Technologies
hdip mass spectrometry data analysis software
Hdip Mass Spectrometry Data Analysis Software, supplied by Teledyne Technologies, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/hdip+software/chromotography+gas+gcms+mass+qp2010+spectrometry+ultra/bio_rxiv__64898__2026__05__13__723926-227-5-11
Average 86 stars, based on 1 article reviews
Hdip Mass Spectrometry Data Analysis Software, supplied by Teledyne Technologies, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/hdip+software/chromotography+gas+gcms+mass+qp2010+spectrometry+ultra/bio_rxiv__64898__2026__05__13__723926-227-5-11
Average 86 stars, based on 1 article reviews
hdip mass spectrometry data analysis software - by Bioz Stars,
2026-09
86/100 stars
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Software:Article Title: Quantitative mapping of mercury and selenium in mushroom fruit bodies with laser ablation-inductively coupled plasma-mass spectrometry. Article Snippet: ICP-MS data were recorded with MassHunter v4.4 software, version C.01.04 (Agilent Technologies). .. Article Title: Trace element composition in olivine from the 2022 Meradalir eruption of the Fagradalsfjall Fires, SW-Iceland (Short Communication) Article Snippet: .. The elemental contents were quantified using artificial glass standards SRM NIST 610 and 612, and Si as the internal reference element after baseline correction and integration of the peak area using Article Title: Globally distributed iridium layer preserved within the Chicxulub impact structure Article Snippet: Following conventional tuning (Th/U ~ 1, UO/U < 0.15%) using standard reference material NIST612 of the National Institute of Standards and Technology, precise and accurate trace element concentration data were obtained on the basis of external calibration, using a combination of MPI-DING and USGS glass reference materials ATHO-G, BHVO-2G, GOR 128-G, GOR 132-G, GSD-1G, GSE-1G, KL2-G, ML3B-G, StHS6/80-G, and T1-G and total oxide normalization to 100 wt %. .. The Article Title: Quantitative mapping of mercury and selenium in mushroom fruit bodies with laser ablation–inductively coupled plasma-mass spectrometry Article Snippet: ICP-MS data were recorded with MassHunter v4.4 software, version C.01.04 (Agilent Technologies). .. Article Title: The impact of corrosion on the adsorption of gaseous Hg0 onto the surface of steels: Implications for decommissioning in the oil and gas industry. Article Snippet: Helium was used as carrier gas (99.999% purity, Messer Austria GmbH) with a flow rate of 0.65 L/min (0.35 L/min cell gas, 0.3 L/min ablation cup gas). .. Image construction was performed using Article Title: Trace element composition of micas from rare-metal granites of different geochemical affiliations Article Snippet: About 2600 spot analyses of mica (combined electron microprobe and laser ablation ICP-MS) from 120 samples from eight rare-metal granite (RMG) plutons of different geochemical affiliations were performed to characterize the contents of major (Si, Ti, Al, Fe, Mn, Mg, Ca, Na, K, F), minor (Li, Rb, Zn), and trace elements (Sc, Nb, Sn, Cs, Ta, W).. This allowed to constrain changes in mica chemistry during magma fractionation and to characterize the relation between the trace-element spectra in mica and geochemical specializations of parental granites.. The studied samples covered metaluminous to peralkaline A-type granites of the Madeira pluton (Brazil), metaluminous to peraluminous A-type granites (Kimi, Finland; Orlovka, Russia; Cínovec, Czech Republic) and strongly peraluminous S-type granites (Panasqueira and Argemela, Portugal; Beauvoir, France; Nejdek, Czech Republic). Targeted Proteomics:Article Title: Trace element composition in olivine from the 2022 Meradalir eruption of the Fagradalsfjall Fires, SW-Iceland (Short Communication) Article Snippet: .. The elemental contents were quantified using artificial glass standards SRM NIST 610 and 612, and Si as the internal reference element after baseline correction and integration of the peak area using Article Title: Trace element composition of micas from rare-metal granites of different geochemical affiliations Article Snippet: About 2600 spot analyses of mica (combined electron microprobe and laser ablation ICP-MS) from 120 samples from eight rare-metal granite (RMG) plutons of different geochemical affiliations were performed to characterize the contents of major (Si, Ti, Al, Fe, Mn, Mg, Ca, Na, K, F), minor (Li, Rb, Zn), and trace elements (Sc, Nb, Sn, Cs, Ta, W).. This allowed to constrain changes in mica chemistry during magma fractionation and to characterize the relation between the trace-element spectra in mica and geochemical specializations of parental granites.. The studied samples covered metaluminous to peralkaline A-type granites of the Madeira pluton (Brazil), metaluminous to peraluminous A-type granites (Kimi, Finland; Orlovka, Russia; Cínovec, Czech Republic) and strongly peraluminous S-type granites (Panasqueira and Argemela, Portugal; Beauvoir, France; Nejdek, Czech Republic). Spectroscopy:Article Title: Trace element composition of micas from rare-metal granites of different geochemical affiliations Article Snippet: About 2600 spot analyses of mica (combined electron microprobe and laser ablation ICP-MS) from 120 samples from eight rare-metal granite (RMG) plutons of different geochemical affiliations were performed to characterize the contents of major (Si, Ti, Al, Fe, Mn, Mg, Ca, Na, K, F), minor (Li, Rb, Zn), and trace elements (Sc, Nb, Sn, Cs, Ta, W).. This allowed to constrain changes in mica chemistry during magma fractionation and to characterize the relation between the trace-element spectra in mica and geochemical specializations of parental granites.. The studied samples covered metaluminous to peralkaline A-type granites of the Madeira pluton (Brazil), metaluminous to peraluminous A-type granites (Kimi, Finland; Orlovka, Russia; Cínovec, Czech Republic) and strongly peraluminous S-type granites (Panasqueira and Argemela, Portugal; Beauvoir, France; Nejdek, Czech Republic). |