Phil Holman said:T/E Ratio - legal ratio 4:1 or less
13C/12C - a normal ratio -21.3 to -24.4/1000 (delta 13C/1000 range)
Typical user ratio -27.43 +/- 0.76/1000 (mean and SD).
Following on from a previous discussion on the accuracy of the testing,
the 13C/12C ratio is very sensitive to error of measured values. This
isn't a case of categorical data (it's either synthetic or it isn't);
the determination is made from what should be very precise quantitive
data.
We know what Floyd's T/E ratio is; I've seen all the reports and it
ranges from 5:1 to 11:1 (LOL). I do hope we get a reliable report on his
delta 13C value.
I lack the informational base to understand what you are saying above.
A ratio of two positive counts can't be negative, so I'm going to
assume that's the log of the ratio. I'm going to try to put what you
said above in different terms, so you can see where I'm likely lost.
Let's suppose there are 10,000,000,000,000 carbon 12 atoms observed
(1*10^13).
If we observed 5617 carbon 13 atoms, this would be a ratio of 5617/
10,000,000,000,000, which is a tiny number. The natural log of this
ratio would be -21.3.
If we observed 253 carbon 13 atoms, this would be a ratio of 253/
10,000,000,000,000, which is a tiny number. The natural log of this
ratio would be -24.4.
In the typical drug case, there is a ratio of -27.43 which would be 12
carbon13 atoms out of 10,000,000,000,000.
If we go down 3 standard deviations on this ratio (-27.43 +3*.76 =
-25.15), this would be 119 atoms.
Since I didn't make use of the "/1000" above I think I've misunderstood
something. Also, this sounds like a lot of carbon atoms for a urine
sample that's mostly water, but I'm again ignorant.
It's also not clear from your post whether the measurement error is
already factored into the normal range. In other words, is that
normal ratio based on "normal measurements given this amount of urine
tested under these conditions" -- in which case the applicable
measurement error is already factored in -- or is it the normal ratio
based on idealized information, in which case measurement error would
be an additional source of error?
This isn't a criticism; just wondering. This isn't stuff I ever
figured I'd want/need to know about.