Position line certificate easily

Aug 6th, 2022
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How to position line certificate

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so lets talk about how we find our position based on latitude and longitude so well use the numbers that we were playing with in the last last video perhaps if you watched it but were going to use the numbers were going to find a position and the position is a position that was given to us by the Coast Guard or we took off our GPS or whatever but Im going to use the numbers we use before and we use the numbers of 73 oh to point five thats technically 0 7 3 and were going to use the number that we found before of 4103 point 4 so how do we find where are we how do we find where we are or there are a couple of ways a couple of ways to use the tools okay one of the ways to use the tool is to merely take my my parallel rule of my weeps plot or in this case my rolling plotter line up on a parallel line in this case the parallel line is the 41 line and were gonna line that up were gonna make our line match its line were gonna just simply roll up to that position of 41 oh three poin

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It is quite evident that (100) silicon should have a peak at 69.25 deg which corresponds to (400).
As far I know, the main diffraction peak on Si(111) is ~ 28.44.
The peaks at 28.48, 47.3, 56.08, 69.12, 76.22, 87.86, 94.8 and 106.56 correspond to those from standard silicon.
Diffraction peaks are associated with planes of atoms. Miller indices (hkl) are used to identify different planes of atoms. Observed diffraction peaks can be related to planes of atoms to. assist in analyzing the atomic structure and microstructure of a. sample.
Amorphous SiO2 particles were characterized by XRD, FT-IR, FE-SEM, EDS and microelectrophoresis. The amorphous peak was located at 2 = 21.8 in the XRD pattern. Primary SiO2 particles were ~ 15 to ~ 30 nm in size and they aggregated into bigger particles.
Phase transformation of amorphous silica was proved by XRD. Characteristic peaks of -cristobalite was identified at 21.83, 28.33, 31.29, and 36.00 (JCPDS PDF No. 39-1425). [22] Phase transformation of amorphous silica was also demonstrated by FTIR spectra with a peak at 620 cm-1 and a knee at 1200 cm-1.

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