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As we all know, reading sheet music after analysis is very important. But what conditions are required to master sheet-reading skills? Please discuss this together
Now there are spectra available for reference, and the software can identify them automatically!
Following the example – is the simplest method. For instance, when you are analyzing a certain product and have reached a certain stage in that analysis, you can purchase a standard product from the market and create the same spectrum for it; if the spectra match, then what you have synthesized will be identical or similar to the standard version
When reading a chromatogram, one usually starts by examining the peak shape, followed by the retention time, peak area, peak resolution, and baseline drift. Comparison of before-and-after spectra, and comparison of standard spectra with actually measured spectra. Then, make a judgment – things will be much better that way.
What was mentioned upstairs refers to chromatograms; for mass spectromograms, the software usually compares them automatically with standard spectra to enable automatic identification!
Mass spectrometry also requires a spectrum library, and it has a function for analyzing spectra; since I haven’t worked with mass spectrometry before, I can’t say much about it. The infrared image library is similar to the mass spectrum library.
Of course there are spectrum libraries; otherwise how would one be able to make comparisons, haha! It’s usually automated by software, as manual analysis is too time-consuming and difficult to determine accurately!
There are ready-made software solutions available nowadays; they reduce the workload on people and minimize human errors. As for manually modifying spectra (since modern software includes features for such modifications), this requires a certain level of professionalism, with experience being key.