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CIA-UAP-015, Project Blue Book Special Report No. 14 (Analysis of Reports of Unidentified Aerial Objects)

Central Intelligence Agency · 312 pages · text from the file's own layer

This CIA archives copy, released in 2026, holds Project Blue Book Special Report No. 14 (Analysis of Reports of Unidentified Aerial Objects). The Air Technical Intelligence Center at Wright-Patterson Air Force Base issued it on 5 May 1955. The study reduced about 4,000 sighting reports from 1947 to 1952 to IBM punched cards, with 3,201 cases charted, and applied chi square tests to compare known and unknown sightings. It concludes that it is highly improbable the reports represent technological developments beyond present-day scientific knowledge.

From the source:Release of 2026-06-12 This is the USAF Project Blue Book with a CIA cover sheet stating the document is "Official Record Copy." With the exception of the handwritten note on the first page, the content of this document has been available on CIA's public website.

  • p. 78 …Apparently these are harder to identify. I (3} Shape IIn this case, there is a higher…
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I UNKNOWNS in each characteristic group showed the same general trend.
In other words, on the basis of these graphs, it looked as though there was
a good possibility that the UNKNOWNS were no different from the KNOWNS,
at least in the aggregate. It was decided to investigate this by the use of a
I statistical procedure called the "Chi Square Test".
The Chi Square Test is a statistical test of the likelihood that two
I distributions come from the same population, that is, it gives the proba
bility that there is no difference in the make-up of the two distributions
I being measured.
The method is outlined as follows:
I
I ( 1) Adjust the distributions by multiplying the KNOWNS in each
characteristic group by the ratio of the total number of
UNKNOWNS to the total number of KNOWNS. (The Chi
Square Test is applicable only to distributions which have
I the same total number of elements.)
(2) Take the difference between the number of UNKNOWNS and
I the adjusted number of KNOWNS in each characteristic
group.
I (3) Square the remainder from Step 2.
I ( 4) Divide the result of Step 3 by the corresponding number of
adjusted KNOWNS.
I This is the chi square for the particular group. Summing the indi
vidual chi squares over the groups of a characteristic gives the chi square
I for that characteristic. This number is then compared with a table of the
distribution of chi square which can be found in many texts on elementary
s tatis tics.
I
I It will be noted that chi square is tabulated in terms of degrees of
freedom which in this case is one less than the number of groups of sight
ings for each characteristic.
I The tabulations of KNOWNS and UNKNOWNS against the six char
acteristics and the Chi Square Test as it was applied are shown in Tables
II through VII. In each case, the number of degrees of freedom is given,
I as is the value of chi squares corresponding to probabilities of 5 per cent
I and 1 per cent that two distributions with this number of degrees of freedom
come from the same population. Since the greater the value of chi square
the smaller the probability of homogeneity of two distributions, a calculated
I value of chi square greater than either the 5 per cent or 1 per cent values
will indicate a probability less than 5 per cent or 1 per cent, respectively,
that the two distributions are homogeneous. The term homogeneity is used
here to indicate that two distributions could have come from the same
population.
I 61
I

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Case file, from the pursue collection. The PDF is mirrored here; the original link is above. 312 pages are in the text index: search them above, or from the library's search.