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Thomsonite
Thomsonite

Star Ruby
Star Ruby



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Thomsonite
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Star Ruby

Thomsonite and Star Ruby Physical Properties

1 Physical Properties
1.1 Tenacity
Not Available
Not Available
1.2 Solubility
Not Available
Not Available
1.3 Durability
Not Available
Not Available
1.4 Specific Gravity
2.25-2.40
3.95-4.10
1.5 Fracture
UnevenArthur Thomas, Gemstones (2009), UnevenArthur Thomas, Gemstones (2009)
Uneven, Uneven, Gems, Sixth Edition (2006)
1.6 Cleavage
perfect on {010}; good on {100}
Not Available
1.7 Mohs Hardness
5-5.5
Not Available
1.8 Chemical Composition
NaCa 2Al 5Si 5O 20 · 6H 2OMichael O’Donoghue , Gems, Sixth Edition (2006) More from other references
Al 2O 3Michael O’Donoghue , Gems, Sixth Edition (2006)

Thomsonite and Star Ruby Chemical Formula

While comparing Thomsonite and Star Ruby physical properties, the important data you should know is its chemical composition. Since chemical formula defines the molecular structure of the crystal, most of the physical properties like color, tenacity, solubility are governed by Thomsonite and Star Ruby chemical formula.

  • Chemical formula of Thomsonite- NaCa 2Al 5Si 5O 20 · 6H 2OMichael O’Donoghue , Gems, Sixth Edition (2006) More from other references
  • Chemical formula of Star Ruby- Al 2O 3Michael O’Donoghue , Gems, Sixth Edition (2006)

Thomsonite and Star Ruby Specific Gravity

Another important criteria for qualitative analysis of gemstones is Thomsonite and Star Ruby Specific gravity. Specific gravity is the relative density of a gemstone compared with respect to density of water. Gemologists use Thomsonite and Star Ruby Optical Properties during the identification of gemstone. Specific gravity of Thomsonite is 3.95-4.10 whereas that of Star Ruby is 3.95-4.10.

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