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Lapis lazuli
Lapis lazuli

Chrome Diopside
Chrome Diopside



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Lapis lazuli
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Chrome Diopside

Lapis lazuli Vs Chrome Diopside

1 Astrology
1.1 Origin
Afghanistan
Russia, green, violet, Yellow, blue, green, violet, Yellow, blue
1.2 Color
Violet, Blue, White
Black, Violet, Blue, Green
1.3 Streak
Blue
Not Available
1.4 For which Rashi?
Sagittarius
Gemini, Virgo, Gemini, Virgo, Gemini, Virgo
1.5 Planet
Venus
Mercury
1.6 Element of Planets
Water
Earth
1.7 How to Wear?
1.7.1 Finger
Not Available
Not Available
1.7.2 Ring Metal
Not Available
Not Available
1.8 Energy
Receptive
Receptive
1.9 Deities
Venus
Gia
1.10 Not to wear with
Not Available
Not Available
1.11 Powers
Protection, Courage
Not Available
1.12 Birthstone
1.12.1 Planetary
Not Available
Not Available
1.12.2 Talisman
Not Available
Not Available
2 Physical Properties
2.1 Tenacity
Not Available
Not Available
2.2 Solubility
Not Available
Not Available
2.3 Durability
Not Available
Not Available
2.4 Specific Gravity
2.50-3.003.22-3.40
Amber
1 7.18
2.5 Fracture
Uneven-Conchoidal, ConchoidalWalter Schumann, Gemstones of the world (2001)
ConchoidalArthur Thomas, Gemstones (2009), ConchoidalArthur Thomas, Gemstones (2009)
2.6 Cleavage
3,6
1,2 prismatic.
2.7 Mohs Hardness
5.55-6
Amber
2 10
2.8 Chemical Composition
The chief constituent Lapis Lazuli is Lazurite, with the following chemical formula: (Na,Ca)8Al6Si6O24(S,SO)4
(Ca,Cr)MgSi 2O 6Gemdat.org , Management Team (2012)
3 Optical Properties
3.1 Luster
Vitreous, Greasy
Vitreous
3.2 Pleochroism
AbsentWalter Schumann
Common trichroism: light green
3.3 Dispersion
NoneNA
Fluorite
0.007 1
3.4 Transparency
Opaque
Gems, Sixth Edition (2006)
3.5 Refractive Index
1.500-1.6701.668-1.703
Agate Opal
1 3.25
3.6 Optic Character
Not Available
Not Available
3.7 Crystal System
Trigonal
monoclinic
3.8 Birefringence
Not Available0.024-0.030
Achroite
0 0.296
3.9 Clarity
Gemstones of the world (2001)
Gems
4 Benefits
4.1 Physical
4.1.1 Neurological
Not Available
Not Available
4.1.2 Cardiovascular
Not Available
Not Available
4.1.3 Respiratory
Not Available
Not Available
4.1.4 Reproductive
Not Available
Not Available
4.1.5 Digestive
Not Available
Not Available
4.2 Psychology
Not Available
Not Available
4.3 Healing
Not Available
Not Available
4.4 Qualities Associated
Not Available
Not Available

Lapis lazuli Vs Chrome Diopside Fracture

Fracture is an important parameter when you compare Lapis lazuli and Chrome Diopside Physical Properties. It is necessary to understand the significance of these properties, before you compare Lapis lazuli Vs Chrome Diopside fracture. Whenever a gemstone chip breaks, it leaves a characteristic line along its breakage. Such lines are known as fracture and are used to identify the gemstones in their initial stages of production when they are in the form of rough minerals. Fracture is usually described with the terms “fibrous” and “splintery” to denote a fracture that usually leaves elongated and sharp edges. Fracture observed in Lapis lazuli is ConchoidalWalter Schumann, Gemstones of the world (2001) and Uneven-Conchoidal. Chrome Diopside fracture is ConchoidalArthur Thomas, ConchoidalArthur Thomas, Gemstones (2009) and Gemstones (2009).

Lapis lazuli Vs Chrome Diopside Luster

A primary knowledge about Lapis lazuli vs Chrome Diopside luster is useful in apparent identifications of these gemstones. Luster is the measure of light that gets reflected when incident on a finished cut gemstone. There are two major types of lusters: Silky and Adamantine. Since luster varies between two crystals of even the same gemstone, luster is limited to basic identification criteria. Lapis lazuli exhibits Greasy and Vitreous luster. Chrome Diopside, on other hand, exhibits Vitreous luster.