trustme.bro/r/…
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the claim
Water undergoes phase transitions that depend on temperature, pressure, and the presence of nucleation sites.
the verdict
COMMON KNOWLEDGE
no citation needed for this one
refutedsupported
the weight of evidence
no sources on either side

The statement that water undergoes phase transitions dependent on temperature, pressure, and nucleation is a fundamental physical fact of thermodynamics that requires no citation, though various retrieved studies touch on related thermodynamic, cavitation, and nucleation behaviors.

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The analysis

The claim describes basic thermodynamic properties of water (phase transitions depending on temperature, pressure, and nucleation), which is common knowledge by everyday observation and physical definition. None of the retrieved papers specifically test or focus on this broad introductory textbook statement about water, making them tangential. Therefore, the balance verdict is COMMON_KNOWLEDGE with no required citations.

Everything we examined (12)
We also searched for evidence AGAINST this claim, not only for it.
  1. Effects of phase transition and thermodynamics on the dynamics of cavitation bubbles collapsing near a solid boundary and the associated 3D flow.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  2. New Considerations Around the Singular Water Temperature Explaining the Anomalous Behavior of Liquid Phase.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  3. Unifying Environmental Stress Cracking and Mechano-Sorptive Creep Under the Umbrella of Mechano-Sorptive Phenomena.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  4. Interfacial Thermodynamics of Ti<sub>3</sub>C<sub>2</sub>T <sub><i>x</i></sub> MXene-PVDF-PTFE Triple Interface Systems for Hierarchical Membrane Distillation.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  5. Silicon allotropes by large-volume high-pressure techniques: crystal growth mechanisms, phase diagrams and hexagonal nanostructured Si-6H by in situ X-ray diffraction and computational methods.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  6. Calculation Method for Hydrogen Evolution and Adsorption on Ir, Pt, and Ir-Pt Nanocatalysts Supported on Porous Carbon Electrodes in Water Electrolysis.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  7. The quest for electrokinetic control over bulk zeolite synthesis: trials, challenges and effects.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  8. Study on the Hydration Kinetics Characteristics of Low-Calcium Cementitious Materials Based on Alkali-Activated CWM.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  9. Thermophysical and Rheological Characteristics of CO<sub>2</sub> Hydrate Slurries for Cold Thermal Energy Storage Applications and Engineering Perspectives.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  10. Size of Biomolecular Condensates Dictates Fate in Liquid-Solid Phase Transitions through Amorphous-Amyloid Competition.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  11. Influence of Polycarboxylate Superplasticizer on Rheological Behavior and Early Interfacial Evolution of Phosphogypsum-Based Supersulfated Cement.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  12. Interfacial chemistry of biochar-modified cementitious materials: mechanisms of pore structure refinement, chloride immobilization, and carbon sequestration.peer-reviewedno side takennot shown: read and judged not to bear on this claim
The paper trail · every fact has a biography
first checked06 Aug 2026
judged → COMMON KNOWLEDGE · 006 Aug 2026
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