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DEBYE MODEL OF SPECIFIC HEAT OF SOLIDS | DEBYE T3 LAW | DEBYE THEORY | PART - 2 | WITH EXAM NOTES |
21:17
YouTubePankaj Physics Gulati
DEBYE MODEL OF SPECIFIC HEAT OF SOLIDS | DEBYE T3 LAW | DEBYE THEORY | PART - 2 | WITH EXAM NOTES |
DEBYE MODEL OF SPECIFIC HEAT OF SOLIDS | DEBYE T3 LAW | DEBYE THEORY ...
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Scherrer equation X-ray diffraction
SOLVED:The full width at half maximum data of a powder X-ray ( = 1.542 A) diffraction peak of a substance are given below20*)Observed EWHM 0.270Instrumental FWHM 09065.13Using Scherrer' equation estimate the crystallite size of the specimen
SOLVED:The full width at half maximum data of a powder X-ray ( = 1.542 A) diffraction peak of a substance are given below20*)Observed EWHM 0.270Instrumental FWHM 09065.13Using Scherrer' equation estimate the crystallite size of the specimen
numerade.com
Sep 17, 2021
18. X-Ray Diffraction Techniques | Introduction to Solid State Chemistry | Materials Science and Engineering | MIT OpenCourseWare
18. X-Ray Diffraction Techniques | Introduction to Solid State Chemistry | Materials Science and Engineering | MIT OpenCourseWare
mit.edu
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vt.physics on Instagram: "This Tiny Magnet Can Turn Your Tap On Neodymium magnets are the strongest type of permanent magnets known today and they are very different from ordinary iron magnets. Regular magnets are usually made of iron or ferrite, where the atoms only loosely align in one direction. Neodymium magnets, on the other hand, are made from a mix of neodymium, iron, and boron. This combination creates a special crystal structure that locks the atoms into a stronger and more uniform alig
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