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The Roswell Report: Fact vs. Fiction in the New Mexico Desert

USAF / The Black Vault · 1995 · 882 pages · text by OCR

The Roswell Report: Fact versus Fiction in the New Mexico Desert was published by Headquarters United States Air Force in 1995. The Black Vault distributes this copy. It reproduces the report by Col. Richard L. Weaver and the synopsis by 1st Lt. James McAndrew, both written after a General Accounting Office inquiry requested by Representative Steven Schiff. The Air Force search found no evidence of an extraterrestrial craft or crew. It concluded that the Roswell debris most likely came from NYU Flight No. 4, a Project MOGUL balloon train.

  • p. 8 …Computer Specialist, Office of the Secretary of the Air Force, Pentagon; George Cully, Historian, 81st Training…
  • p. 20 …FOR THE SECRETARY OF THE AIR FORCE FROM: SAF/AAZ 1720 Air Force Pentagon Washington, DC…
  • p. 56 …SAF/FMPF, Room 4C228, Pentagon SUBJECT: Central Point of Contact, GAO Code 701034 2. You will…
  • p. 58 # DEPARTMENT OF THE AIR FORCE WASHINGTON DC 20330-1000 OFFICE OF THE SECRETARY MEMORANDUM FOR DISTRIBUTION…
  • p. 59 …SAF/AAZ 1720 Air Force Pentagon Washington DC 20330-1720 SUBJECT: GAO Review on Records Management…
  • p. 75 …HQ USAF/XOWP 1490 Air Force Pentagon Washington DC 20330-1490 SUBJECT: GAO Review on Records…
  • p. 77 10 March 1994 SAF/AAIQ 1610 Air Force Pentagon Washington, DC 20330-1610 MEMORANDUM FOR SAF…
  • p. 78 …They noted that the histories for the 509th Bomb Group and Wing for Roswell Army Air…
  • p. 145 …the Pentagon if he had a problem with that he could take it up with the…
  • p. 185 …Perhaps you have it from the Pentagon files already, from the AG files. ## Q: We have…
  • p. 246 …Following that, I spent more than three years on the Air Staff in the Pentagon. Q…
  • p. 268 …Force Pentagon Washington, DC 20330-1720 SUBJECT: Report of Findings on Balloon Research The following report…
the equation 2500 ft. $ ^{3} / 1 \mathrm{b}. $ mol = ae $ ^{50 b} $ where 50 is the expression for altitude in thousands of feet. Similarly, at 70,000 feet, $ 6 4 5 0=a e^{7 0 b}, $ and by solving to eliminate a, we find $ 2. 5 8=e^{2 0 b} $ or 20b = .95, and the constant b is equal to .0475. Thus, the equation may be written:

(3)

$$
y = a e ^ {. 0 4 7 5 z}
$$

y was originally defined as the molar volume, equal (for 98% helium) to:

$$
\frac {\text {Balloon Volume} \times 2 4 . 4}{\text {Gross Load}} = \frac {K}{W}
$$

In turn, $ \frac{K}{W}=a e^{-0. 4 7 5 z} $ , where z is the expression for altitude in thousands of feet. From this relationship, we may solve for W, the gross load.

(4)

$$
W = \frac {K}{a} e ^ {- 0. 4 7 5 z}
$$

(5)

$$
\ln \left(\frac {W a}{K}\right) = - 0. 4 7 5 z
$$

or:

(6)

$$
\ln W + \ln \frac {a}{K} = - 0. 4 7 5 z
$$

Differentiating with respect to W:

$$
\frac {d z}{d W} = - \frac {2 1 . 0 5 2}{W} \frac {f t}{l b}
$$

where W is gross load in lb.

We see that the value of the constant a is unimportant here, and the expression is independent of balloon volume, as long as it does not vary with time. Included is the assumption that over a short period of time buoyancy of lifting gas does not change.

Thus, we have an expression for A, the altitude sensitivity, which is valid between 40,000 and 105,000 feet. Similarly, it is possible to evaluate altitude sensitivity for operation between O and 30,000 feet. A in this range is equal to 31,400 ft./lb.

A plot of altitude sensitivity against load is shown on page 109 of the "Operations" section (Part II of this technical report).

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Report, cited by the archive. The PDF is mirrored here; the original link is under it. The text was read from the page images by an OCR model; expect the odd misread word. 882 pages are in the text index: search them above, or from the library's search.