Significance of XRD pattern
XRD pattern refers to the X-ray diffraction pattern that characterizes the crystallographic structure of various materials. It serves as a key tool for analyzing phase composition and crystalline structure in a range of samples, including naga bhasma, synthesized silver nanoparticles, and drug formulations like Telmisartan. The graphical representations obtained from XRD studies help determine whether substances are crystalline or amorphous and provide insights into the structural properties of the materials being examined.
Synonyms: X-ray diffraction pattern, Diffraction pattern
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The concept of XRD pattern in scientific sources
The XRD pattern is crucial for identifying iron oxide types, revealing the presence of αFe2O3 and Fe3O4 through X-ray diffraction analysis, providing insights into the material's structural composition and characteristics.
(1) X-ray diffraction pattern showing the crystalline structure and average sizes of the synthesized silver nanoparticles.[1] (2) X-ray Diffraction pattern used to determine the crystalline or amorphous characteristics of drug formulations.[2] (3) Graphical representations obtained from X-Ray Diffraction studies, used to identify crystalline structures and phases within samples.[3] (4) X-ray diffraction patterns that assist in analyzing the crystallinity and structural features of synthesized materials.[4] (5) X-ray Diffraction pattern, a technique used to analyze the crystalline structure and phase of the synthesized silver nanoparticles.[5]
(1) The result of X-ray diffraction analysis, indicating the presence of iron oxide in forms such as αFe2O3 and Fe3O4.[6]
(1) X-ray diffraction patterns used to analyze the crystalline structure of naga bhasma samples.[7]
(1) X-ray diffraction pattern used to characterize the crystallographic structure of materials, revealing details about phase composition and crystalline structure.[8]