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Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia1.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia2.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia3.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia4.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia5.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia6.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia7.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia8.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia9.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

absorbancia11.jpg

Quartz can be used in applications with working temperatures of up to 1100°C, conduction of UV and IR light, high resistance to mechanical and atmospheric pressure.

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