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roswell

Office of the Secretary of Defense · 993 pages · text from the file's own layer

The Roswell Report: Fact versus Fiction in the New Mexico Desert was published in 1995 by Headquarters United States Air Force. It was written in response to Representative Steven H. Schiff's request and a General Accounting Office audit, and it contains Col. Richard L. Weaver's report and 1st Lt. James McAndrew's synopsis, along with attachments, appendices and photographs. The report says researchers found no evidence of an extraterrestrial craft or crew. It concludes that the 1947 debris came from a Project MOGUL balloon train.

  • p. 129 …6099 2 HQ AMC WRIGHT PAT 342-seA-6191 CAMBRIDGE LABS 342-A~ AMC HQ WRIGHT…
  • p. 228 …overhead and followed the balloons out to sea. I have no idea about the results that…
  • p. 235 …the regular 334 that we had at sea level. From that they could deduce the temperature…
  • p. 279 …actually located on the jurisdictional lines between Sea Girt and Springlake, New Jersey. It was an…
  • p. 280 …The Sea Girt Inn? A: Exactly. That's where John had his office, and I was…
  • p. 400 …alone 1a about 24,000.m1lea at sea level, aDd about '500 allea at 45,000…
  • p. 407 …five (25) feet at their ls.rgest sea-level diameter. The sonic unit was a combination…
  • p. 466 …hour when one-fifth inf~ated at sea level). One other type of balloon which has…
  • p. 490 …Let us, then, compare the rate of leakage at any given altitude with leakage at sea…
  • p. 492 …The leakage at any altitude may be expressed as a function of leakage at sea level…
  • p. 493 Comparing rete of leakage at 40,000 feet with leakage at sea level: ~ 188 .u§. - 0…
  • p. 495 …It a 20-foot diameter balloon~ full were tested at 10 sea level and found to…
  • p. 496 …At sea level this is equivalent to 5.32 ~r. for a 20-foot diameter balloon…
  • p. 502 …Using the rules of subsonic aerodynamics, Picard suggests that air at sea level escaping at 1333…
  • p. 503 …sea level (psi) escape velocity of air to produce back pressure of 1 atmosphere at sea…
  • p. 520 …to about 20 millibars and increased to sea-level pressure at different temperatures. The most comprehensive…
  • p. 654 …The height above mean sea level as determined fram pressure measurements used in this work with…
  • p. 686 …to a thtmble a.nd attached to re1n forced pCltches at alterna.te .sea.m.s…
  • p. 688 …lQr9e Ba.lloo n ~hould trQin de .sea nd to 101000'. 6 each.-Gene ral M1lls…
  • p. 736 …point at which the radiosonde reaches the sea surface. 2. Earlier attempts There have been numerous…
  • p. 737 …The balloons floated between the surface and 30,000 ft above sea level; those which reached…
  • p. 801 …Vet Gifford ;.;ho has 0 0' sea rescue boat this project is planning to use. Stayed…
  • p. 816 …Worzel working on gravity at sea. Saw Geo Woollard and the Ryders. Woollard after Guggenheim fellowship…
  • p. 887 …the launching site is markedly different from sea level, a shift in this curve is needed…
  • p. 925 …balloon at all times with respect to sea level. On this curve also it is customary…
  • p. 933 …The height above ~ean sea level as determined from pressure measurements used in this work with…
t.mperature recording is confined to the lo'tier
2 inches of the drum so as to interfere as little as
poasible with the pressure record when the bel loon
float• above 30,000 teet.
Recording is accomplished by three pens which scratch
carbon from a smoked aluminum toil. This method
eliminates the need :for liquid ink and applies a
minimwn of pressure to the recording drum.
The recording dr~ rotates once in twelve hours.
Therefore, it a :flight lasts over twelve hours, the
trace will overlap. Such a record is shown in
Figure 36. The clock runs for 36 to 40 hours on
one winding.
Preparation of the barograph :for use on a balloon
a~ension requires the followinga
(a) Place an aluminum :foil about 10 inches long by
3 3/4", .002" thick on the drum. Care should
be taken to have the overlapping edge of the
:foil :face in the direction of rotation of the
drum so the. t the stylus &lides ott the edge in-
stead ot catching and tearing the :foil. A few
drops of rubber cement along each edge or the
:foil are sufficient to :fasten the roil to the drum
and will not interfere with removal of the foil
after reoovery or the barograph.
(b) Wind the clock. The clock should not be wound
tightly since at the low temperatures encountered
in the upper atmosphere the clock spring may
snap. However, if the clock is wound an hour
or so before release, it·will be sufficiently
relaxed by the time the low temperatures are
reached.
(c) Check pressure of the marking pens. Too much
pressure of the pens on the drum will introduce
an error due to the frictional lag. When the
drum is removed :from the clock mechanism, and the
pen lifter released, the stylus points should
touch the clock housing lightly.
(d) Smoke the drum. A very thin, tine-grained carbon
film should be deposited on the aluminum foil.
The best result will be obtained by use of a
bright yellow gas flame, although a kerosene flame
gives a satisfactory coating. Solid or liquid
-66-

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FOIA release, from the osd collection. The PDF is mirrored here; the original link is under it. 993 pages are in the text index: search them above, or from the library's search.