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29:
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flown the complex profile almost perfectly, but this, combined with additional seconds of thrust from the XLR25 , had carried the X-2 well beyond the envelope of knowledge and into the uncertain stability predicted by the GEDA ." In short, Petty suggests that Apt did his job too well and may have been pushed to exceed Mach 3 by the AFFTC and conflicting priorities within it. Petty quotes Base commander
General Stanley Holtoner: "I think that every supervisory guy from me on down has criticized himself, because if we had told this boy to stop at a specific speed, this wouldn't have happened."
359:
395:
383:
371:
352:. Apt was probably disabled by the severe release forces. As the capsule fell for several minutes to the desert floor, he did not exit so that he could use his personal parachute before ground impact, and was killed. The aircraft continued to fly in a series of glides and stalls before landing and breaking into three pieces (separate from the capsule). A proposal to salvage the aircraft and modify it for a hypersonic test program was not approved. The aircraft was scrapped.
267:
481:
327:
B-50 for his first flight in a rocket airplane. He had been instructed to follow the "optimum maximum energy flight path". With nozzle extenders and a longer than normal motor run, Apt flew an extraordinarily precise profile; he became the first man to exceed Mach 3, reaching Mach 3.2 (2,094 mph, 3,370 km/h) at 65,500 ft (19,960 m).
297:
on 27 June 1952. Ziegler and aircraft #2 (46-675) were subsequently lost on 12 May 1953, in an inflight explosion during a captive flight intended to check the aircraft's liquid oxygen system. A B-50 crew member, Frank Wolko, was also killed during the incident. The wreckage of the aircraft fell into
326:
were assigned the job of "envelope expansion" and, on 7 September 1956, Kincheloe became the first pilot ever to climb above 100,000 ft (30,500 m) as he flew the X-2 to a peak altitude of 126,200 ft (38,470 m). Just 20 days later, on the morning of 27 September, Apt was launched from the
173:
The Bell X-2 had a prolonged development period due to the advances needed in aerodynamic design, control systems, materials that retained adequate mechanical properties at high temperature, and other technologies that had to be developed. Not only did the X-2 push the envelope of manned flight to
417:
The subsequent investigation into the X-2's fatal flight raised numerous contributing factors into the crashβlargely focusing on Apt's decision to turn the aircraft while still above Mach 3. Some cited his lack of experience with rocket planes, but, as historian Chris Petty notes, "he had in fact
330:
The flight had been flawless to this point, but shortly after attaining top speed, Apt attempted a banking turn while the aircraft was still above Mach 3 (lagging instrumentation may have indicated he was flying at a slower speed or perhaps he feared he was straying too far from the safety of his
314:
was demonstrating speeds of Mach 2.2 or 2.3 in a fighter configuration. The X-2 was living up to its promise, but not without difficulties. At high speeds, Everest reported its flight controls were only marginally effective. High speed center of pressure shifts along with fin aeroelasticity were
347:
nearly three years before. Yeager, although exposed to much higher vehicle inertial forces, was able to recover. Apt attempted to recover from a spin, but could not. The rudder lock was still on in the attempted spin recovery. He fired the ejection capsule, which was itself only equipped with a
309:
completed the first powered flight in the #1 airplane (46-674) on 18 November 1955. By the time of his ninth and final flight in late July 1956 the project was years behind schedule, but he had established a new speed record of Mach 2.87 (1,900 mph, 3,050 km/h). About this time, the
425:
reporting on the event, Everest had criticized the relatively new detachable capsule, maintaining that "some safety had been sacrificed in preference to delaying the X-2 flight tests while the escape mechanism was modified." Another NACA research pilot,
445:
could commence detailed flight research with the aircraft. The search for answers to many of the riddles of high-Mach flight had to be postponed until the arrival three years later of the most advanced of all the experimental rocket aircraft, the
266:
315:
major factors. Moreover, simulation and wind tunnel studies, combined with data from his flights, suggested the airplane would encounter very severe stability problems as it approached Mach 3.
433:
While the X-2 had delivered valuable research data on high-speed aerodynamic heat build-up and extreme high-altitude flight conditions (although it is unclear how much, as the unmanned
335:). The X-2 tumbled violently out of control and he found himself struggling with three sequential coupling modes, control coupling, inertial roll coupling and supersonic spinning. "
204:
speeds was only one of the major difficulties facing flight researchers as they approached Mach 3. For, at speeds in that region, they knew they would also begin to encounter a "
370:
231:
2,500 to 15,000 lbf (11 to 67 kN) sea level thrust, continuously throttleable rocket engines, the swept-wing Bell X-2 was designed to probe the supersonic region.
560:
254:
228:
3320:
3433:
2878:
162:
The Bell X-2 was developed to provide a vehicle for researching flight characteristics at speeds and altitudes in excess of the capabilities of the
1262:
441:
were among the winged vehicles operating at comparable or higher velocities in this era), this tragic event terminated the program before the
242:
406:
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442:
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83:
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One point that became clear even before the investigation was that the X-2's escape mechanism was woefully inadequate. According to
150:(NACA) to explore aerodynamic problems of supersonic flight and to expand the speed and altitude regimes obtained with the earlier
33:
Bell X-2 #2 with a collapsed nose landing gear, after landing on the first glide flight, on 27 June 1952 at
Edwards Air Force Base.
3162:
1147:
695:
2871:
2856:
1086:
1027:
806:
382:
3265:
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311:
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1539:
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286:
376:
Two pieces of the X-2 at the crash site, 5 miles (8.0 km) from where the escape capsule landed.
3172:
138:
2β3 range. The X-2 was a rocket-powered, swept-wing research aircraft developed jointly in 1945 by
600:
170:, while investigating aerodynamic heating problems in what was then called the "thermal thicket".
28:
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79:
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in the exhaust plume, characteristic of supersonic conditions from a two-chamber rocket engine.
64:
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1956:
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https://archive.org/details/Aviation_Week_1957-10-21/page/n55?q=aviation+week+thicket+thermal
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465:: seven glide flights, 10 powered flights, crashed 27 September 1956, subsequently scrapped
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8:
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speeds, altitudes and temperatures beyond any other aircraft at the time, it pioneered
16:
Experimental aircraft build to investigate flight characteristics in the Mach 2β3 range
430:, described it more bluntly as a "way to commit suicide to keep from getting killed."
185:
during World War II) and digital flight simulation. The XLR25 rocket engine, built by
3325:
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1120:
458:
Two aircraft completed a total of 20 flights (27 June 1952 β 27 September 1956).
332:
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liquid-fuelled rocket engine, 15,000 lbf (67 kN) thrust at sea level
323:
273:
227:, K-Monel, and powered by a liquid propellant (alcohol and oxygen) two-chamber
209:
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998:, November 1977 β February 1978. Bromley, Kent, UK: Pilot Press Ltd., 1977.
796:
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340:
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175:
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201:
1019:
Beyond Blue Skies: The Rocket Plane
Programs that Led to the Space Age
798:
Beyond Blue Skies: The Rocket Plane
Programs that Led to the Space Age
3350:
3182:
3157:
3059:
3029:
3019:
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1424:
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1372:
1312:
200:
Providing adequate stability and control for aircraft flying at high
988:
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1911:
1886:
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1489:
1484:
1474:
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344:
163:
151:
480:
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2066:
1412:
1322:
908:
The Spoken Word: Recollections of Dryden
History, the Early Years
534:
1079:
Concept
Aircraft: Prototypes, X-Planes and Experimental Aircraft
841:
The X-Planes X-1 To X-31, Jay Miller, New
Revised Edition 1988,
769:
Spaceplanes: From
Airport to Spaceport, Matthew A. Bentley, P.11
491:
Concept
Aircraft: Prototypes, X-Planes and Experimental Aircraft
911:. Washington, D.C.: US Government Printing Office. p. 84.
801:. Lincoln, NE: University of Nebraska Press. pp. 133β138.
221:
217:
224:
868:
https://www.nasa.gov/centers/dryden/pdf/88484main_H-2106.pdf
830:
https://www.nasa.gov/centers/dryden/pdf/88484main_H-2106.pdf
1022:. Lincoln: University of Nebraska Press. pp. 133β138.
887:. Vol. 106 (Late City ed.). 1956-09-28. p. 1
190:
1114:
Robert H. Goddard's contribution to the X-2's XLR25 engine
400:
The cockpit of the X-2's escape capsule at the crash site.
881:"1,900-M.P.H. Rocket Plane Crashes and Kills Test Pilot"
293:
completed the first unpowered glide flight of an X-2 at
1104:, SP-2000-4531 β June 2003; NASA online PDF Monograph
364:
Crash site in the desert near
Edwards Air Force Base.
994:
Hallion, Dr. Richard P. "Saga of the Rocket Ships."
618:
Aircraft of comparable role, configuration, and era
134:built to investigate flight characteristics in the
260:X-2, crew, B-50 mothership, and support equipment.
1010:The Saga of the Bell X-2, First of the Spaceships
181:in U.S. aircraft (previously demonstrated on the
3415:
670:"NASA Armstrong Fact Sheet: Bell X-2 Starbuster"
1001:Machat, Mike. "Color Schemes of the Bell X-2."
594:
578:2,094 mph (3,370 km/h, 1,820 kn)
708:
706:
704:
2872:
1141:
1102:American X-Vehicles: An Inventory X-1 to X-50
735:
733:
339:" and a subsonic inverted spin had overtaken
979:Everest, Lt. Col. Frank and Guenther, John.
471:: three glide flights, destroyed 12 May 1953
189:, was based on the smoothly variable-thrust
1047:"Lessons Learned from the Bell X-2 Program"
701:
443:National Advisory Committee for Aeronautics
412:Wreckage from Apt's fatal crash in the X-2.
388:The X-2's escape capsule at the crash site.
148:National Advisory Committee for Aeronautics
84:National Advisory Committee for Aeronautics
2879:
2865:
1148:
1134:
1012:. Beirut, Lebanon: HPM Publications, 1999.
730:
3434:1950s United States experimental aircraft
157:
1044:
951:"The Incomplete Guide to Airfoil Usage"
904:
898:
790:
788:
786:
784:
726:. New York: Da Capo Press. p. 351.
475:
109:18 November 1955 (first powered flight)
3416:
721:
663:
661:
453:
234:
2860:
1129:
1015:
942:
873:
794:
667:
1081:. Kent, UK: Grange Books plc, 2005.
948:
781:
512:37 ft 10 in (11.53 m)
208:", severe heating effects caused by
1109:NASA Bell X-2 Starbuster Fact Sheet
668:Gibbs, Yvonne (February 28, 2014).
658:
601:Aircraft in fiction Β§ Bell X-2
524:11 ft 10 in (3.61 m)
13:
518:32 ft 3 in (9.83 m)
479:
14:
3450:
1094:
1005:, Volume 35, no. 1 January 2005.
983:. New York, E. P. Dutton, 1958.
675:Armstrong Flight Research Center
405:
393:
381:
369:
357:
265:
253:
241:
127:(nicknamed "Starbuster") was an
27:
972:
933:
861:
852:
835:
590:126,200 ft (38,500 m)
553:24,910 lb (11,299 kg)
530:260 sq ft (24 m)
107:27 June 1952 (first drop glide)
823:
772:
763:
715:
689:
547:12,375 lb (5,613 kg)
1:
1077:Winchester, Jim. "Bell X-2."
905:Peebles, Curtis, ed. (2003).
651:
636:List of experimental aircraft
540:NACA 2S-(50) (05-50) (05-arc)
248:X-2 just after being dropped.
154:series of research aircraft.
144:United States Army Air Forces
1161:Bell Helicopter/Bell Textron
595:Notable appearances in media
7:
605:
10:
3455:
3401:Assigned to multiple types
2515:Non-production helicopters
598:
3394:
3343:
3248:
3090:
2947:
2938:
2900:
2895:) designations since 1941
2847:
2646:
2540:
2514:
2498:
2457:
2352:
2290:
2239:
2223:
2172:
1168:
624:Douglas D-558-2 Skyrocket
113:
103:
98:
90:
75:
63:
53:
43:
38:
26:
21:
289:bomber, Bell test pilot
3429:Rocket-powered aircraft
2901:Supersonic/special test
955:m-selig.ae.illinois.edu
939:Winchester 2005, p. 35.
722:Lehman, Milton (1963).
641:List of rocket aircraft
497:General characteristics
307:Frank K. "Pete" Everest
302:and was not recovered.
80:United States Air Force
3424:Edwards Air Force Base
2353:Commercial helicopters
1045:Whitford, Ray (1997).
484:
295:Edwards Air Force Base
272:The X-2's twin set of
197:in 1942 for the Navy.
158:Design and development
2889:experimental aircraft
2887:USAF / Joint Service
2541:Experimental aircraft
1016:Petty, Chris (2020).
795:Petty, Chris (2020).
483:
2849:Unknown/not assigned
561:Curtiss-Wright XLR25
476:Specifications (X-2)
324:Milburn G. "Mel" Apt
210:aerodynamic friction
2293:utility helicopters
858:Machat 2005, p. 43.
778:Machat 2005, p. 42.
712:Machat 2005, p. 37.
646:List of X-2 flights
551:Max takeoff weight:
454:Flight test program
448:North American X-15
291:Jean "Skip" Ziegler
235:Operational history
39:General information
2941:"X" (1948βpresent)
2240:Attack helicopters
1119:2009-02-05 at the
996:AirEnthusiast Five
751:on August 20, 2016
485:
423:The New York Times
3411:
3410:
3339:
3338:
2854:
2853:
2804:Super Transporter
1087:978-1-84013-809-2
1029:978-1-4962-2355-5
1008:Matthews, Henry.
981:Fastest Man Alive
949:Lednicer, David.
808:978-1-4962-2355-5
724:Robert H. Goddard
348:relatively small
320:Iven C. Kincheloe
212:. Constructed of
142:Corporation, the
132:research aircraft
121:
120:
117:27 September 1956
48:Research aircraft
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747:. Archived from
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588:Service ceiling:
571:
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428:Scott Crossfield
409:
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385:
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361:
350:drogue parachute
337:Inertia coupling
331:landing site on
285:from a modified
269:
257:
245:
193:engine built by
31:
19:
18:
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3413:
3412:
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3335:
3290:
3260:
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3086:
2940:
2934:
2903:"S" (1946β1947)
2902:
2896:
2885:
2855:
2850:
2843:
2642:
2536:
2510:
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2348:
2292:
2291:Observation and
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1121:Wayback Machine
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206:thermal barrier
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54:National origin
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3220:
3210:
3205:
3200:
3199:
3198:
3193:
3185:
3180:
3175:
3170:
3165:
3160:
3155:
3150:
3145:
3140:
3135:
3130:
3125:
3120:
3115:
3110:
3105:
3100:
3094:
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3088:
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3079:
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3077:
3067:
3062:
3057:
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2898:
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2884:
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2876:
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2861:
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2848:
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2844:
2842:
2841:
2836:
2831:
2826:
2821:
2816:
2811:
2806:
2801:
2796:
2791:
2786:
2781:
2776:
2771:
2766:
2764:Quad TiltRotor
2761:
2756:
2751:
2746:
2741:
2736:
2731:
2726:
2721:
2716:
2711:
2706:
2701:
2696:
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2676:
2671:
2666:
2661:
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2650:
2648:
2644:
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2641:
2640:
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2630:
2625:
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2615:
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2605:
2600:
2595:
2590:
2585:
2580:
2575:
2570:
2565:
2560:
2555:
2550:
2544:
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2535:
2534:
2529:
2524:
2518:
2516:
2512:
2511:
2509:
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2500:
2496:
2495:
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2336:
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2326:
2325:
2324:
2319:
2309:
2308:
2307:
2296:
2294:
2288:
2287:
2285:
2284:
2279:
2274:
2269:
2268:
2267:
2262:
2257:
2249:
2243:
2241:
2237:
2236:
2234:
2233:
2227:
2225:
2221:
2220:
2218:
2217:
2212:
2207:
2202:
2197:
2192:
2187:
2182:
2176:
2174:
2170:
2169:
2167:
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2161:
2156:
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2139:
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2039:
2034:
2029:
2024:
2019:
2014:
2009:
2004:
1999:
1994:
1989:
1984:
1979:
1974:
1969:
1964:
1959:
1954:
1949:
1944:
1939:
1934:
1929:
1924:
1919:
1914:
1909:
1904:
1899:
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1884:
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1124:
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1111:
1106:
1096:
1095:External links
1093:
1091:
1090:
1075:
1042:
1028:
1013:
1006:
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992:
976:
974:
971:
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885:New York Times
872:
860:
851:
834:
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714:
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688:
656:
655:
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614:
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599:Main article:
596:
593:
592:
591:
585:
582:Maximum speed:
579:
576:Maximum speed:
565:
564:
554:
548:
542:
531:
525:
519:
513:
507:
477:
474:
473:
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466:
455:
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399:
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387:
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368:
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279:
278:
274:shock diamonds
271:
264:
262:
259:
252:
250:
247:
240:
236:
233:
195:Robert Goddard
187:Curtiss-Wright
179:rocket engines
159:
156:
119:
118:
115:
111:
110:
105:
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96:
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36:
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4:
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2:
3451:
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3439:Bell aircraft
3437:
3435:
3432:
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3396:
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2700:
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2250:
2248:
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2238:
2232:
2229:
2228:
2226:
2224:Target drones
2222:
2216:
2213:
2211:
2208:
2206:
2203:
2201:
2198:
2196:
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2128:
2125:
2120:
2118:
2115:
2110:
2108:
2105:
2100:
2098:
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2078:
2075:
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2068:
2065:
2060:
2058:
2055:
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2048:
2045:
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2035:
2030:
2028:
2025:
2020:
2018:
2015:
2010:
2005:
2000:
1998:
1995:
1990:
1985:
1980:
1975:
1973:
1970:
1965:
1963:
1960:
1958:
1955:
1950:
1948:
1945:
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1925:
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1910:
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1883:
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1875:
1873:
1870:
1865:
1863:
1860:
1855:
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1833:
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1825:
1823:
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1815:
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1795:
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1311:
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1299:
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1279:
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1259:
1256:
1254:
1251:
1249:
1246:
1244:
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1239:
1236:
1234:
1231:
1229:
1226:
1224:
1221:
1219:
1216:
1214:
1211:
1209:
1206:
1204:
1201:
1199:
1196:
1194:
1191:
1189:
1186:
1184:
1181:
1179:
1176:
1175:
1173:
1167:
1162:
1158:
1157:Bell Aircraft
1151:
1146:
1144:
1139:
1137:
1132:
1131:
1128:
1122:
1118:
1115:
1112:
1110:
1107:
1105:
1103:
1099:
1098:
1088:
1084:
1080:
1076:
1072:
1068:
1064:
1060:
1057:: 1407β1421.
1056:
1052:
1048:
1043:
1039:
1035:
1031:
1025:
1021:
1020:
1014:
1011:
1007:
1004:
1000:
997:
993:
990:
986:
982:
978:
977:
956:
952:
945:
936:
928:
924:
920:
918:0-16-067752-1
914:
910:
909:
901:
886:
882:
876:
869:
864:
855:
848:
847:0-517-56749-0
844:
838:
831:
826:
818:
814:
810:
804:
800:
799:
791:
789:
787:
785:
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766:
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746:
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718:
709:
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697:
692:
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676:
671:
664:
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657:
647:
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642:
639:
637:
634:
633:
632:
631:
630:Related lists
625:
622:
621:
620:
619:
613:
610:
609:
602:
589:
586:
583:
580:
577:
574:
573:
572:
570:
562:
558:
555:
552:
549:
546:
545:Empty weight:
543:
541:
538:
536:
532:
529:
526:
523:
520:
517:
514:
511:
508:
505:
502:
501:
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367:
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328:
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140:Bell Aircraft
137:
133:
130:
126:
116:
112:
106:
102:
97:
93:
89:
85:
81:
78:
76:Primary users
74:
71:
70:Bell Aircraft
68:
66:
62:
59:
58:United States
56:
52:
49:
46:
42:
37:
30:
25:
20:
3398:Not assigned
2959:
2939:Experimental
2914:
2734:Jet Ranger X
2704:GlobalRanger
2597:
1444:
1171:designations
1169:Manufacturer
1101:
1078:
1054:
1050:
1018:
1009:
1002:
995:
980:
973:Bibliography
958:. Retrieved
954:
944:
935:
907:
900:
889:. Retrieved
884:
875:
863:
854:
837:
825:
797:
774:
765:
753:. Retrieved
749:the original
744:
723:
717:
691:
679:. Retrieved
673:
629:
628:
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616:
587:
581:
575:
568:
566:
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550:
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533:
527:
521:
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509:
503:
496:
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490:
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486:
468:
462:
457:
435:Lockheed X-7
432:
422:
420:
416:
341:Chuck Yeager
329:
317:
304:
300:Lake Ontario
281:Following a
280:
199:
176:throttleable
172:
161:
124:
122:
104:First flight
91:Number built
65:Manufacturer
3091:26–50
2789:Sioux Scout
612:Mach number
569:Performance
557:Powerplant:
283:drop launch
3418:Categories
3404:Unofficial
3196:X-44 (UAV)
3191:X-44 MANTA
2948:1–25
2839:Zulu Cobra
2814:TwinRanger
2799:Super Huey
2794:SuperCobra
2779:Sea Ranger
2754:LongRanger
2699:Fire Scout
2654:Airabonita
2458:Tiltrotors
2251:Bell AH-1
1038:1193585597
891:2021-05-11
817:1193585597
652:References
584:Mach 3.196
528:Wing area:
202:supersonic
3249:51–
2809:Twin Huey
2774:Sea Cobra
2744:KingCobra
2739:Kingcobra
2729:JetRanger
2714:HueyCobra
2694:Eagle Eye
2679:BigLifter
2664:Airacomet
2659:Airacobra
2588:LLRV/LLTV
1063:0096-736X
516:Wingspan:
488:Data from
318:Captains
305:Lt. Col.
3344:See also
2829:Vigilant
2724:Iroquois
2719:Invictus
2669:Airacuda
1163:aircraft
1117:Archived
1071:44650531
1003:Airpower
960:16 April
927:51518730
755:July 16,
681:July 16,
606:See also
168:D-558 II
164:Bell X-1
146:and the
125:Bell X-2
2893:X-plane
2674:Arapaho
2578:FCX-001
2255:Singles
2142:912β917
2132:681β910
2122:647β679
2112:610β645
2102:600β608
2092:846β598
2082:577β582
2072:549β575
2062:541β547
2052:534β539
2042:526β532
2032:506β524
2022:550β504
1967:431β439
1942:418β426
1877:401β405
1867:361β399
1857:310β359
1847:302β308
1837:250β300
1827:231β248
1817:223β229
1690:131β199
1373:39 (II)
989:57-8998
849:, p. 26
535:Airfoil
522:Height:
510:Length:
343:in the
312:YF-104A
183:Me 163B
129:X-plane
114:Retired
99:History
2769:Ranger
2759:Osprey
2623:XF-109
2344:ARH-70
2277:YAH-63
2231:PQM-56
1535:70β100
1368:39 (I)
1085:
1069:
1061:
1036:
1026:
987:
925:
915:
845:
815:
805:
469:46-675
463:46-674
222:nickel
218:copper
216:and a
3386:XQ-67
3381:XQ-58
3376:M2-F3
3371:M2-F2
3366:M2-F1
3361:HL-10
3356:HiMAT
3223:X-47C
3218:X-47B
3187:X-44
3075:X-24C
2834:Viper
2824:Venom
2819:Valor
2784:Sioux
2749:Kiowa
2689:Creek
2684:Cobra
2647:Names
2638:XV-15
2628:XP-52
2573:D-292
2568:D-255
2563:D-188
2506:MQ-8C
2485:TR918
2480:AW609
2475:V-280
2470:V-247
2402:214ST
2339:TH-67
2334:OH-58
2329:TH-57
2322:UH-1Y
2317:UH-1N
2305:H-13J
2265:AH-1Z
2260:Twins
2215:XP-83
2210:XP-77
2180:YFM-1
2164:D-292
2159:D-255
2154:D-188
1770:214ST
1067:JSTOR
741:"X-2"
698:p.112
504:Crew:
439:IM-99
229:XLR25
225:alloy
3351:AD-1
3331:X-66
3326:X-65
3321:X-64
3316:X-63
3311:X-62
3306:X-61
3301:X-60
3296:X-59
3291:X-58
3286:X-57
3281:X-56
3276:X-55
3271:X-54
3266:X-53
3261:X-52
3256:X-51
3240:X-50
3235:X-49
3230:X-48
3213:X-47
3208:X-46
3203:X-45
3183:X-43
3178:X-42
3173:X-41
3168:X-40
3163:X-39
3158:X-38
3153:X-37
3148:X-36
3143:X-35
3138:X-34
3133:X-33
3128:X-32
3123:X-31
3118:X-30
3113:X-29
3108:X-28
3103:X-27
3098:X-26
3082:X-25
3070:X-24
3065:X-23
3060:X-22
3055:X-21
3050:X-20
3045:X-19
3040:X-18
3035:X-17
3030:X-16
3025:X-15
3020:X-14
3015:X-13
3010:X-12
3005:X-11
3000:X-10
2709:Huey
2633:XV-3
2618:X-22
2613:X-16
2608:X-14
2583:L-39
2499:UAVs
2465:V-22
2312:UH-1
2300:H-13
2205:P-76
2200:P-63
2195:P-59
2185:P-39
1159:and
1083:ISBN
1059:ISSN
1034:OCLC
1024:ISBN
985:LCCN
962:2019
923:OCLC
913:ISBN
870:p.15
843:ISBN
813:OCLC
803:ISBN
757:2017
683:2017
559:1 Γ
437:and
345:X-1A
322:and
287:B-50
191:JATO
166:and
136:Mach
123:The
44:Type
2995:X-9
2990:X-8
2985:X-7
2980:X-6
2975:X-5
2970:X-4
2965:X-3
2960:X-2
2955:X-1
2930:S-5
2925:S-4
2920:S-3
2915:S-2
2910:S-1
2603:X-5
2598:X-2
2593:X-1
2558:533
2553:201
2548:ATV
2532:440
2527:417
2522:400
2490:QTR
2449:525
2444:505
2439:430
2434:429
2429:427
2424:412
2419:407
2414:230
2409:222
2397:214
2392:212
2387:210
2382:206
2377:205
2372:204
2365:47J
2282:360
2272:309
2247:207
2190:XFL
2147:918
2137:911
2127:680
2117:646
2107:609
2097:599
2087:583
2077:576
2067:548
2057:540
2047:533
2037:525
2027:505
2017:449
2012:448
2007:447
2002:446
1997:445
1992:444
1987:443
1982:442
1977:441
1972:440
1962:430
1957:429
1952:428
1947:427
1937:417
1932:416
1927:415
1922:414
1917:413
1912:412
1907:411
1902:410
1897:409
1892:408
1887:407
1882:406
1872:400
1862:360
1852:309
1842:301
1832:249
1822:230
1812:222
1807:221
1802:220
1797:219
1792:218
1787:217
1782:216
1777:215
1765:214
1760:213
1755:212
1750:211
1745:210
1740:209
1735:208
1730:207
1725:206
1720:205
1715:204
1710:203
1705:202
1700:201
1695:200
1685:130
1680:129
1675:128
1670:127
1665:126
1660:125
1655:124
1650:123
1645:122
1640:121
1635:120
1630:119
1625:118
1620:117
1615:116
1610:115
1605:114
1600:113
1595:112
1590:111
1585:110
1580:109
1575:108
1570:107
1565:106
1560:105
1555:104
1550:103
1545:102
1540:101
1055:106
832:p.8
152:X-1
22:X-2
3420::
2360:47
1530:69
1525:68
1520:67
1515:66
1510:65
1505:64
1500:63
1495:62
1490:61
1485:60
1480:59
1475:58
1470:57
1465:56
1460:55
1455:54
1450:53
1445:52
1440:51
1435:50
1430:49
1425:48
1413:47
1408:46
1403:45
1398:44
1393:43
1388:42
1383:41
1378:40
1363:38
1358:37
1353:36
1348:35
1343:34
1338:33
1333:32
1328:31
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1318:29
1313:28
1308:27
1303:26
1298:25
1293:24
1288:23
1283:22
1278:21
1273:20
1268:19
1263:18
1258:17
1253:16
1248:15
1243:14
1238:13
1233:12
1228:11
1223:10
1065:.
1053:.
1049:.
1032:.
953:.
921:.
883:.
811:.
783:^
743:.
732:^
703:^
672:.
660:^
450:.
2891:(
2880:e
2873:t
2866:v
1418:J
1218:9
1213:8
1208:7
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1178:1
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819:.
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685:.
537::
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220:-
94:2
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