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the claim
The entropy of all pure crystalline systems is zero at absolute zero temperature
the verdict
SUPPORTED
the evidence backs this
refutedsupported
the weight of evidence
8 sources for · 0 against
AS REPORTEDno primary record reached; this is what the reporting says

Multiple standard references and the third law of thermodynamics confirm that the entropy of a pure crystalline substance approaches or equals zero at absolute zero temperature.

Evidence for · 8
cited by 0
Reference article covering this claim directly
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The analysis

Judged against the evidence record for claims of this kind.

More for · 7
cited by 0
Reference article covering this claim directly
2020 · cited by 0
States that the entropy of a pure crystalline substance is zero at absolute zero.
cited by 0
Defines the entropy of a pure crystalline solid as zero at absolute zero.
cited by 0
Identical to item 6, stating the entropy of a pure crystalline solid is zero at absolute zero.
2002 · cited by 0
Identical to item 6, stating the entropy of a pure crystalline solid is zero at absolute zero.
1999 · cited by 0
Identical to item 6, stating the entropy of a pure crystalline solid is zero at absolute zero.
2002 · cited by 0
Confirms by definition that the entropy of a pure crystalline solid is zero at absolute zero.
Everything we examined (32) — 23 independent sources
This check searched the claim as stated. It did not run a separate search for evidence against it.
  1. Wikipedia: Third law of thermodynamicsreferencesame source L1supports
  2. Wikipedia: Absolute zeroreferencesame source L1supports
  3. Book: Modern Thermodynamics for Chemists and Biochemistsreferenceno side takennot shown: read and judged not to bear on this claim
  4. Book: Fundamentals of Engineering Thermodynamicsreferencesame source L3supports
  5. Book: Thermodynamics for Engineersreferencesame source L3no side takennot shown: read and judged not to bear on this claim
  6. Book: Principles and Applications of Geochemistryreferenceno side takennot shown: read and judged not to bear on this claim
  7. Holt, Rinehart and Winston: Modern chemistryreferencesame source L5supports
  8. Holt, Rinehart and Winston: Modern chemistryreferencesame source L5supports
  9. Holt, Rinehart and Winston: Modern chemistryreferencesame source L5supports
  10. Holt, Rinehart and Winston: Modern chemistryreferencesame source L5supports
  11. Holt, Rinehart & Winston: Modern Chemistry Annotated Teacher's Edition Texas Editionreferencesupports
  12. OpenAIRE: Investigation of the Corrosion Electrochemistry of a Ni Based High Entropy Alloy in Chloride Containing Solutionspeer-reviewedno side takennot shown: read and judged not to bear on this claim
  13. OpenAIRE: Event Horizon Area Equation Re-engineering: From Hawking-Bekenstein to the Hamzah Age-Area Inversion.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  14. OpenAIRE: The Ontology of the Ground State - Pure Reflection, Shape, and Base-Free Symmetry in Mathematical Physicspeer-reviewedno side takennot shown: read and judged not to bear on this claim
  15. OpenAIRE: Algorithmic Induction via Structural Weight Transferpeer-reviewedno side takennot shown: read and judged not to bear on this claim
  16. OpenAIRE: The Stroboscopic Core: The Necessity of Imperfection in a Split-Personality Universepeer-reviewedno side takennot shown: read and judged not to bear on this claim
  17. Nature: A quantum processor based on coherent transport of entangled atom arrayspeer-reviewedno side takennot shown: read and judged not to bear on this claim
  18. Science: Controlling quantum many-body dynamics in driven Rydberg atom arrayspeer-reviewedno side takennot shown: read and judged not to bear on this claim
  19. Rept.Prog.Phys.: Symmetry breaking and quantum correlations in finite systems: Studies of quantum dots and ultracold Bose gases and related nuclear and chemical methodspeer-reviewedno side takennot shown: read and judged not to bear on this claim
  20. Rept.Prog.Phys.: Quantum frustration in organic Mott insulators: from spin liquids to unconventional superconductorspeer-reviewedno side takennot shown: read and judged not to bear on this claim
  21. Nature Commun.: Long-lived topological time-crystalline order on a quantum processorpeer-reviewedno side takennot shown: read and judged not to bear on this claim
  22. NASA Technical Reports Server: Entropy, lattice parameters and high- temperature phenomena of metals.primary-datasame source L17no side takennot shown: read and judged not to bear on this claim
  23. NASA Technical Reports Server: Magnetization and magnetic entropy of Dy2Ti2O7primary-datasame source L17no side takennot shown: read and judged not to bear on this claim
  24. NASA Technical Reports Server: Effect of dissociation on thermodynamic properties of pure diatomic gasesprimary-datasame source L17no side takennot shown: read and judged not to bear on this claim
  25. NASA Technical Reports Server: On the maximum-entropy/autoregressive modeling of time seriesprimary-datasame source L17no side takennot shown: read and judged not to bear on this claim
  26. NASA Technical Reports Server: Table and charts of equilibrium normal shock and shock tube properties for pure argon with velocities to 18 km/secprimary-datasame source L17no side takennot shown: read and judged not to bear on this claim
  27. Materials: A Comparative Study of Thermal Oxidization Resistance of a High-Entropy Metal Boride and a High-Entropy Metal Carbidepeer-reviewedno side takennot shown: read and judged not to bear on this claim
  28. OSTI: High hardness and oxidation-resistant Cr-containing medium entropy ZrTaW diboridepeer-reviewedno side takennot shown: read and judged not to bear on this claim
  29. MRS Bulletin: Thermodynamics of grain-boundary phasespeer-reviewedno side takennot shown: read and judged not to bear on this claim
  30. ACS Nano: Solvent-Mediated Control of Nanocellulose Dispersion: An Integrated Computational and Experimental Investigationpeer-reviewedno side takennot shown: read and judged not to bear on this claim
  31. ACS Applied Materials and Interfaces: Designing Thermomechanically Stable Nanocrystalline Alloys for Low Friction and Wear: A Perspectivepeer-reviewedno side takennot shown: read and judged not to bear on this claim
  32. The Entropy of a Crystalline Solution of Silver Bromide and Silver Chloride in Relation to the Third Law of Thermodynamicspeer-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 → SUPPORTED · 7506 Aug 2026
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