00:01
Okay, so i've just tried to recreate the sketch of your mass spectrometer here.
00:15
And the answer to you know, what i'm thinking about here is that what you have going on here is actually uranium.
00:28
So this particular compound here or similar coordination complex.
00:40
So going back to the mass spectrometer, you have the mass of the strontmeter, you have the mass of charge ratio on the x -axis, you have the abundant, relative abundance, intensity and the y -axis.
00:55
There's a very large peak at m over z.
00:59
That's that 308.
01:02
And the x -axis is 380, which is the base peak, you know, 100 % percent.
01:08
Relative intensity.
01:10
Smaller peaks appear around 381, 382, you know, and 383, things of that sort.
01:23
So this pattern is characteristic of an element or compound containing bromine or chlorine, bromine or chlorine, due to the distinct isotopic distribution.
01:34
However, this one, my opinion, best matches much as best with brain you.
01:44
Right? again, or a similar coordination complex.
01:49
And again, it's because, for example, reasons why is you have this peak here at 380 here, right? the peak here is at 380.
02:03
And i forget, again, this is going to be a molecular ion peak corresponding to mono -isotopic mass or one, of the most abundant isotopes, right? and so you have isotopic pattern suggested ranium.
02:23
Ranium has those two isotopes, and the isotopes would be, you know, uranium 185 and rhenium 187.
02:31
So those are the two isotopes for rhenium...