Synthetic Diamond Wiki : Diamonds are for everything - Professor Julie Macpherson
The bulk mineral and trace coloring elements are the same in both. In general, all are less hard than diamond. It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond. The more perfect the crystal structure, the harder the diamond becomes. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire.
Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire.
The more perfect the crystal structure, the harder the diamond becomes. The bulk mineral and trace coloring elements are the same in both. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire. In general, all are less hard than diamond. It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond.
The bulk mineral and trace coloring elements are the same in both. In general, all are less hard than diamond. The more perfect the crystal structure, the harder the diamond becomes. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire. It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond.
Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire.
In general, all are less hard than diamond. The more perfect the crystal structure, the harder the diamond becomes. The bulk mineral and trace coloring elements are the same in both. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire. It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond.
In general, all are less hard than diamond. The more perfect the crystal structure, the harder the diamond becomes. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire. The bulk mineral and trace coloring elements are the same in both. It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond.
It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond.
It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond. The more perfect the crystal structure, the harder the diamond becomes. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire. In general, all are less hard than diamond. The bulk mineral and trace coloring elements are the same in both.
Synthetic Diamond Wiki : Diamonds are for everything - Professor Julie Macpherson. Moissanite actually has a higher refractive index than diamond, and when presented beside an equivalently sized and cut diamond will show more fire. In general, all are less hard than diamond. It has been reported that hpht single crystals and nanocrystalline diamond aggregates (aggregated diamond nanorods) can be harder than natural diamond. The bulk mineral and trace coloring elements are the same in both. The more perfect the crystal structure, the harder the diamond becomes.
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