non-crystalline structure
showing non-crystalline
non-crystalline phase
became non-crystalline
non-crystalline material
highly non-crystalline
partially non-crystalline
non-crystalline state
with non-crystalline
the polymer exhibited a non-crystalline structure after rapid cooling.
non-crystalline silica is often used in dental applications due to its biocompatibility.
amorphous metals, also known as non-crystalline metals, have unique properties.
the non-crystalline phase of the material resulted in increased transparency.
we analyzed the non-crystalline regions within the partially crystalline sample.
the glass transition temperature is a key characteristic of non-crystalline materials.
non-crystalline forms of iron are used in magnetic recording media.
the rapid solidification process led to the formation of a non-crystalline alloy.
x-ray diffraction patterns confirmed the non-crystalline nature of the sample.
the non-crystalline ceramic showed excellent optical properties.
understanding the non-crystalline behavior is crucial for material design.
non-crystalline structure
showing non-crystalline
non-crystalline phase
became non-crystalline
non-crystalline material
highly non-crystalline
partially non-crystalline
non-crystalline state
with non-crystalline
the polymer exhibited a non-crystalline structure after rapid cooling.
non-crystalline silica is often used in dental applications due to its biocompatibility.
amorphous metals, also known as non-crystalline metals, have unique properties.
the non-crystalline phase of the material resulted in increased transparency.
we analyzed the non-crystalline regions within the partially crystalline sample.
the glass transition temperature is a key characteristic of non-crystalline materials.
non-crystalline forms of iron are used in magnetic recording media.
the rapid solidification process led to the formation of a non-crystalline alloy.
x-ray diffraction patterns confirmed the non-crystalline nature of the sample.
the non-crystalline ceramic showed excellent optical properties.
understanding the non-crystalline behavior is crucial for material design.
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