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Material: Primary - Purity:14KStone Type_1:Center Stone Mounting(s)Stone Type_2:Diamond, Lab GrownStone Quantity_1:1Stone Quantity_2:42Plating:RhodiumBand Width:5 to 2.8 mm (tapered)Stone Weight_1:0.5 ctStone Weight_2:0.01 ctStone Clarity_2:VS2/SI1 (VS)Size (Minimum):6Size (Maximum):8Sizing Adjustment Increment:0.25Feature:SolidHead Height:5.5 mmManufacturing Process:CastedMaterial: Primary:GoldCompleteness:Semi Mount (center stones not included)Sizeable:YesStone Shape_1:Octagon / EmeraldStone Shape_2:RoundStone Size_1:6 x 4 mmStone Size_2:1.3 mmThickness:1.6 mmEngravable:Not RecommendedPackaging:Gift BoxedProduct Type:JewelryJewelry Type:RingsSold By Unit:EachHead Type:Emerald (4 Prong)Material: Primary - Color:WhiteRing Type:EngagementRing Top Length:7 mmRing Top Width:9 mmFeature 2:Open BackStone Creation Method_2:Lab GrownStone Color Grade_2:D-E-F
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True Origin™ Collection Lab-Grown diamonds are man-made diamonds that are chemically, physically, and optically identical to diamonds originating from nature. Both have the same chemical composition and atomic structure, producing the very same durability, fire, and sparkle.
Laboratory grown diamonds are a testament to the use of technology and human achievement. “Lab-Grown” most accurately describes the man-made diamond production process in which the crystal structure is grown from the seed diamond. Lab grown diamonds are the result of an extemporaneous crystallization process rather than a synthesis of compounds.
Lab-Grown diamonds utilize a Chemical Vapor Deposition (CVD) process or a High Pressure High Temperature (HPHT) method that cause carbon atoms to crystallize into the structure that renders them harder than any other form of carbon and harder than any other material. Both processes require advanced technological equipment and both produce rough diamonds that are then cleaned, cut, and polished in the very same way that naturally-occurring, mined diamond rough is processed.
Diamond growth can be initiated only when a pre-existing diamond seed or a sliver of diamond substrate is present for the carbon atoms to attach to and “learn” the diamond’s strong tetrahedral crystal lattice. The “seed” essentially serves as a blue print for the ...
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