![Assertion :Quartz glass is crystalline solid and quartz is an amorphous solid. Reason: Quartz glass has long range order.Both Assertion and Reason are correct and Reason is the correct explanation AssertionBoth Assertion Assertion :Quartz glass is crystalline solid and quartz is an amorphous solid. Reason: Quartz glass has long range order.Both Assertion and Reason are correct and Reason is the correct explanation AssertionBoth Assertion](https://search-static.byjusweb.com/question-images/toppr_ext/questions/931697_937130_ans_ec135877ba0f423ba3c64e931a57c28c.jpg)
Assertion :Quartz glass is crystalline solid and quartz is an amorphous solid. Reason: Quartz glass has long range order.Both Assertion and Reason are correct and Reason is the correct explanation AssertionBoth Assertion
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Materials | Free Full-Text | Study of the Microstructure of Amorphous Silica Nanostructures Using High-Resolution Electron Microscopy, Electron Energy Loss Spectroscopy, X-ray Powder Diffraction, and Electron Pair Distribution Function
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Materials | Free Full-Text | Study of the Microstructure of Amorphous Silica Nanostructures Using High-Resolution Electron Microscopy, Electron Energy Loss Spectroscopy, X-ray Powder Diffraction, and Electron Pair Distribution Function
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Atomic structure of amorphous silica. (a) Schematic representation of... | Download Scientific Diagram
![Figure 2 from Amorphous SiO2 surface models: energetics of the dehydroxylation process, strain, ab initio atomistic thermodynamics and IR spectroscopic signatures. | Semantic Scholar Figure 2 from Amorphous SiO2 surface models: energetics of the dehydroxylation process, strain, ab initio atomistic thermodynamics and IR spectroscopic signatures. | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/5d1adb408d5e17354ecab9e2a16c8b3819a59915/3-Figure2-1.png)
Figure 2 from Amorphous SiO2 surface models: energetics of the dehydroxylation process, strain, ab initio atomistic thermodynamics and IR spectroscopic signatures. | Semantic Scholar
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A study on crystallization of amorphous nano silica particles by mechanical activation at the presence of pure aluminum - ScienceDirect
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