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the claim
Specific thermodynamic and structural factors determine the water of crystallisation in salts
the verdict
SUPPORTED
the evidence backs this
confidence 77/100

Specific thermodynamic conditions and structural configurations, such as hydrogen bonding and coordination geometry, critically determine the presence and behavior of water of crystallisation in salts.

Evidence for · 3
A Chemical Bonding Interpretation of Unusual Compressibility Trends in Hydrated Magnesium Sulfates.
2025 · cited by 1
The study on hydrated magnesium sulfates demonstrates that specific coordination and structural factors dictate crystal properties like compressibility and hydration states.
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More for · 2
Maus's salts: an old family of iron sulfates with possible magnetic frustration.
2026 · cited by 0
Investigations into Maus's salts highlight how alkali cations and structural water configurations govern the formation and stability of these complex iron sulfate hydrates.
Solvent-induced structural and optical transformations in a hybrid copper phosphate framework.
2026 · cited by 0
Research on hybrid copper phosphate frameworks shows how specific solvent environments and hydrogen-bonding coordination geometry drive structural transformations related to hydration.
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first checked01 Aug 2026
judged → SUPPORTED · 7701 Aug 2026
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