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Solution / Brine / Conductivity / Osmosis / Osmotic coefficient / Properties of water / Activity / Salinity / Molality / Chemistry / Physical chemistry / Electrolyte


JOURNAL OF GEOPHYSICAL RESEARCH, VOL. 116, E05004, doi:[removed]2010JE003700, 2011 Physicochemical properties of concentrated Martian surface waters Nicholas J. Tosca,1 Scott M. McLennan,2 Michael P. Lamb,3 and John P. G
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Document Date: 2011-05-21 20:37:00


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City

TOSCA ET / Cambridge / Pasadena / New York / /

Company

Nordstrom / Marion / /

Country

United States / United Kingdom / /

Facility

State University of New York / California Institute of Technology / University of Cambridge / /

IndustryTerm

chemical dissolution / concentrated multicomponent electrolyte solutions / chemical components / chemical systems / dilute solutions / concentrated brine solutions / aqueous electrolyte solution / chemical compositions / chemical composition / chemical properties / electrolyte solution / chemical weathering / chemical framework / multicomponent electrolyte solutions / record abundant chemical information / distinct solutions / likely chemical compositions / gas constant / chemical divide / chemical and physical properties / concentrated solutions / given aqueous solution / concentrated multicomponent solutions / chemical signatures / given solution / solute systems / multicomponent systems / subsequent chemical fractionation / chemical / chemical and physical processes / concentrated electrolyte solutions / chemical sedimentation / multicomponent electrolyte solution / multicomponent electrolyte systems / aqueous solution / /

MusicGroup

Earth / Mars / /

Organization

California Institute of Technology / American Geophysical Union / Division of Geological and Planetary Sciences / Department of Earth Sciences / University of Cambridge / Department of Geosciences / State University of New York / /

Person

Nicholas J. Tosca / /

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Position

RT Ps RT / King / BRINES RT / RT / representative / /

Product

Pentax K-x Digital Camera / /

ProvinceOrState

New Jersey / California / New York / /

PublishedMedium

JOURNAL OF GEOPHYSICAL RESEARCH / /

Technology

thermodynamics / dielectric / crystallization / Simulation / /

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