Thalassogenic Atmosphere: Difference between revisions
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Cdjensen94 (talk | contribs) (Created page with "{{DISPLAYTITLE:Thalassogenic Atmosphere}} {{Atmosphere | name = Thalassogenic Atmosphere | image = Thalassogenic_Sky.png | universe = Continuum Universes | type = Marine Vapor Envelope | classification = Hydrosaline Atmosphere | contents = H₂O 45%, N₂ 40%, CO₂ 10%, NaCl (aq) 5% | pressure = 1.3 atm | temperature = 285–310 K | molar_mass = 28–31 g/mol | compounds = Water, Sodium Chlo...") |
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{{Atmosphere | {{Atmosphere | ||
| name = Thalassogenic Atmosphere | | name = Thalassogenic Atmosphere | ||
| image = | | image = Thalassogenic Atmosphere_Sky.png | ||
| universe = | | universe = Continuum Universes | ||
| type = Marine Vapor Envelope | | type = Marine Vapor Envelope | ||
| classification = Hydrosaline Atmosphere | | classification = Hydrosaline Atmosphere | ||
| Line 12: | Line 12: | ||
| compounds = [[Water]], [[Sodium Chloride Aerosol]], [[Carbon Dioxide]] | | compounds = [[Water]], [[Sodium Chloride Aerosol]], [[Carbon Dioxide]] | ||
| effects = Promotes saline precipitation; conductive weather; corrosive to metals | | effects = Promotes saline precipitation; conductive weather; corrosive to metals | ||
| worlds = [[Thalassogenic]], [[Mycomorph]], [[Lucidmist]] | | worlds = [[Thalassogenic]], [[Mycomorph]], [[Lucidmist Atmosphere]] | ||
| related = [[Water]], [[Sodium Chloride Aerosol]], [[Carbon Dioxide]] | | related = [[Water]], [[Sodium Chloride Aerosol]], [[Carbon Dioxide]] | ||
}} | }} | ||
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== Composition and Behavior == | == Composition and Behavior == | ||
Dominated by vaporized [[Water|H₂O]] and suspended [[Sodium Chloride Aerosol]], Thalassogenic air conducts both electricity and psionic charge efficiently. | Dominated by vaporized [[Water|H₂O]] and suspended [[Sodium Chloride Aerosol]], Thalassogenic Atmosphere air conducts both electricity and psionic charge efficiently. | ||
[[Carbon Dioxide]] regulates greenhouse temperature, while [[Nitrogen]] provides inert buffer stability. | [[Carbon Dioxide]] regulates greenhouse temperature, while [[Nitrogen]] provides inert buffer stability. | ||
Lightning strikes across such worlds are unusually structured — fractal and rhythmic — indicating partial self-organization within the storm system. | Lightning strikes across such worlds are unusually structured — fractal and rhythmic — indicating partial self-organization within the storm system. | ||
== Environmental Characteristics == | == Environmental Characteristics == | ||
* | * '''Pressure:''' 1.3 atm | ||
* | * '''Temperature:''' 285–310 K (warm to tropical) | ||
* | * '''Visuals:''' Dense, silver clouds; light refracts in mist halos; occasional rainbows visible beneath overcast skies. | ||
* | * '''Acoustics:''' Sound carries farther than normal — thunder rolls for minutes. | ||
* | * '''Chemical Stability:''' Self-repairing water cycle; metallic corrosion constant. | ||
== Phenomena == | == Phenomena == | ||
During ion surges, saline vapor precipitates as | During ion surges, saline vapor precipitates as '''glass rain''' — crystallized salt lattices that fall as translucent sheets, dissolving back into mist. | ||
This phenomenon powers “hydrophonic resonance,” an acoustic charging effect used by aquatic Continuum species for long-range psionic communication. | This phenomenon powers “hydrophonic resonance,” an acoustic charging effect used by aquatic Continuum species for long-range psionic communication. | ||
== Interactions == | == Interactions == | ||
Exposure to Thalassogenic air increases hydration of tissues but corrodes most synthetic alloys. | Exposure to Thalassogenic Atmosphere air increases hydration of tissues but corrodes most synthetic alloys. | ||
Breathing the air induces mild electrostatic charge on the skin; during dream cycles, the body may float microscopically, buoyed by charge differentials. | Breathing the air induces mild electrostatic charge on the skin; during dream cycles, the body may float microscopically, buoyed by charge differentials. | ||