Alec Fitting Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Alec Fitting's research investigates the stability and behavior of brines on the Martian surface. His work utilizes thermodynamic modeling to understand how different salt compositions, specifically perchlorate/chloride and perchlorate/chlorate mixtures, interact with environmental conditions relevant to Mars. Fitting's publications focus on the limited stability of these multicomponent brines under simulated Martian temperatures. He has co-authored four publications with V. F. Chevrier of the University of Arkansas at Fayetteville, indicating a collaborative research network within the institution. Fitting has a recent publication record, with his most recent work appearing in 2022, and is considered recently active.
Metrics
- h-index: 2
- Publications: 4
- Citations: 28
Selected Publications
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Limited stability of multi-component brines on the surface of Mars (2022)
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Limited stability of multi-component brines on the surface of Mars (2022)
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Thermodynamic modelling of perchlorate/chloride and perchlorate/chlorate deliquescence at Mars-relevant temperatures (2022)
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Limited Stability of Multicomponent Brines on the Surface of Mars (2022)
Collaboration Network
Top Collaborators
- Limited Stability of Multicomponent Brines on the Surface of Mars
- Thermodynamic modelling of perchlorate/chloride and perchlorate/chlorate deliquescence at Mars-relevant temperatures
- Limited stability of multi-component brines on the surface of Mars
- Limited stability of multi-component brines on the surface of Mars
- Limited Stability of Multicomponent Brines on the Surface of Mars
- Thermodynamic modelling of perchlorate/chloride and perchlorate/chlorate deliquescence at Mars-relevant temperatures
- Limited stability of multi-component brines on the surface of Mars
- Limited stability of multi-component brines on the surface of Mars
- Thermodynamic modelling of perchlorate/chloride and perchlorate/chlorate deliquescence at Mars-relevant temperatures
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