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fourth frequency which was unique to each of the eight stations. The duration of each pulse (ranging from 0.9 to 1.2 seconds, with 0.2 second blank intervals between each pulse) differed in a fixed pattern, and repeated every ten seconds; the 10-second pattern was common to all 8 stations and synchronized with the carrier phase angle, which itself was synchronized with the local master atomic clock. The pulses within each 10-second group were identified by the first 8 letters of the alphabet within Omega publications of the time.
848:. It was the tallest structure ever built in Africa. The station was turned over to the Liberian government after the Omega Navigation System shutdown on 30 September 1997. Access to the tower was unrestricted, and it was possible to climb the abandoned mast until it was demolished on 10 May 2011. The area occupied by the transmitter will be used to build a modern market complex that will provide additional space for local merchants and reduce congestion at Paynesville's Red Light Market, Liberia's largest food market.
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261:. At medium frequencies, this appears to "bend" or refract the signal beyond the horizon. At lower frequencies, VLF and ELF, the signal will reflect off the ionosphere and ground, allowing the signal to travel great distances in multiple "hops". However, it is very difficult to synchronize multiple stations using these signals, as they might be received multiple times from different directions at the end of different hops.
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192:" in any navigation system requires the determination of two measurements. Typically these are taken in relation to fixed objects like prominent landmarks or the known location of radio transmission towers. By measuring the angle to two such locations, the position of the navigator can be determined. Alternatively, one can measure the angle and distance to a single object, or the distance to two objects.
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comparing the measured delay between the two signals, and comparing that with the known delay, the aircraft's position was revealed to lie along a curved line in space. By making two such measurements against widely separated stations, the resulting lines would overlap in two locations. These locations were normally far enough apart to allow conventional navigation systems, like
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used as its antenna a 389-metre tall tubular steel mast, insulated against ground. This mast, which was built in 1973 and which was the tallest structure in Japan (and perhaps the tallest tubular steel mast ever built) was dismantled in 1998 by crane. On its former site, an approximately 8 metre-tall
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It was often believed that TRANSIT generated two possible locations for any given measurements one on either side of the orbit subtrack. Since the measurement is the
Doppler shift of the carrier frequency, the rotation of the earth is sufficient to resolve the difference. The surface of the earth at
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Omega was approved for development in 1968 with eight transmitters and the ability to achieve a 4-mile (6.4 km) accuracy when fixing a position. Each Omega station transmitted a sequence of three very low frequency (VLF) signals (10.2 kHz, 13.6 kHz, 11.333... kHz in that order) plus a
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Key to the operation of the hyperbolic system was the use of one transmitter to broadcast the "master" signal, which was used by the "secondaries" as their trigger. This limited the maximum range over which the system could operate. For very short ranges, tens of kilometres, the trigger signal could
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The envelope of the individual pulses could be used to establish a receiver's internal timing within the 10-second pattern. However, it was the phase of the received signals within each pulse that was used to determine the transit time from transmitter to receiver. Using hyperbolic geometry and
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for instance, the receiver would have to know the precise time the signal was transmitted. This was not generally possible using electronics of the day. Instead, two stations were synchronized by using one of the two transmitted signals as the trigger for the second signal after a fixed delay. By
670:) used a wire span over a valley as its antenna. The site buildings are still there. On April 26, 1988, the building which housed the omega transmitters was destroyed by an explosion caused by a bush fire which ignited explosives. There were severe casualties and six persons died in the blast.
361:
Omega stations used very extensive antennas to transmit at their very low frequencies (VLF). This is because wavelength is inversely proportional to frequency (wavelength in metres = 299,792,458 / frequency in Hz), and transmitter efficiency is severely degraded if the length of the antenna is
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On April 26, 1988, a brush fire in the vicinity of Camp Omega, Chaguaramas, quickly spread to the nearby Camp Omega Arms and
Ammunition Bunker resulting in the explosion. Four firefighters and two soldiers died while attempting to bring the situation under control. Several National Security
358:. Near the end of its service life of 26 years, Omega evolved into a system used primarily by the civil community. By receiving signals from three stations, an Omega receiver could locate a position to within 4 nautical miles (7.4 km) using the principle of phase comparison of signals.
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Very long-distance radio signalling is possible, using longwave techniques (low frequencies), which enables a planet-wide hyperbolic system. However, at those ranges, radio signals do not travel in straight lines, but reflect off various regions above the Earth known collectively as the
195:
The introduction of radio systems during the 20th century dramatically increased the distances over which measurements could be taken. Such a system also demanded much greater accuracies in the measurements – an error of one degree in angle might be acceptable when taking a fix on a
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a few miles away, but would be of limited use when used on a radio station 300 miles (480 km) away. A variety of methods were developed to take fixes with relatively small angle inaccuracies, but even these were generally useful only for short-range systems.
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The same electronics that made basic radio systems work introduced the possibility of making very accurate time delay measurements, and thus highly accurate distance measurements. The problem was knowing when the transmission was initiated. With
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shorter than 1/4 wavelength. They used grounded or insulated guyed masts with umbrella antennas, or wire-spans across both valleys and fjords. Some Omega antennas were the tallest constructions on the continent where they stood or still stand.
408:, the use of Omega declined during the 1990s, to a point where the cost of operating Omega could no longer be justified. Omega was shut down permanently on 30 September 1997. Several of the towers were then soon demolished.
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and parts of the bunker were found hundreds of metres away from ground zero. The
Government of the Republic of Trinidad and Tobago dedicated April 26 each year as National Security Officers Day of Appreciation for the dead.
280:, the clocks had an accuracy on the order of 1 part in 10 to better than 1 part in 10 or a drift of about 1 second in 30 million years. This is more accurate than the timing system used by the master/secondary stations.
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was the only
European Omega transmitter. It used a very unusual antenna, which consisted of several wires strung over a fjord between two concrete anchors 3,500 metres (11,500 ft) apart, one at
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systems. LORAN-C offered accurate navigation at distances over 1,000 kilometres (620 mi), and by locating "chains" of stations around the world, they offered moderately widespread coverage.
209:, this was simple, as the transmitter and receiver were usually at the same location. Measuring the delay between sending the signal and receiving the echo allowed accurate range measurement.
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radionavigation principles, a position fix with an accuracy on the order of 5–10 kilometres (3.1–6.2 mi) was realizable over the entire globe at any time of the day. Omega employed
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The towers of some OMEGA-stations were the tallest structures in the country and sometimes even in the continent where they stood. In the German science-fiction novel "Der Komet" (
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developed in Area 51 on the area of the abandoned OMEGA-transmission site
Paynesville in Liberia, for which it delivers a required low-frequency electromagnetic field.
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system in 1967. Decca also won that case, but as the LORAN C navigation system was judged to be a military one without commercial use, no damages were paid by the US.
887:) was one of two stations operated by the USCG. It was inaugurated in 1943 as a VLF-transmitter for submarine communication. The antenna was a wire span over
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memorial consisting of the mast base (without the insulator) and a segment was built. On the site of the former helix building there is now a playground.
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451:. Decca won the case and was awarded $ 44,000,000 in damages. Decca had previously sued the US government for alleged patent infringements over the
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be carried by wires. Over long distances, over-the-air signalling was more practical, but all such systems had range limits of one sort or another.
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385:, and France. The Japanese and Australian stations became operational several years later. Coast Guard personnel operated two US stations: one in
299:. The expense of the clocks, lack of need, and the limited accuracy of a long wave system eliminated the need for such a system for many roles.
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Station G, near
Woodside, Victoria. Ceased Omega transmissions in 1997, became a submarine communications tower, and was demolished in 2015.
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system. TRANSIT was designed to allow measurements of location at any point on the planet, with enough accuracy to act as a reference for an
447:, that had been disclosed to the US in 1954. Decca cited original US documents showing the Omega system was originally referred to as
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There were nine Omega stations in total; only eight operated at one time. Trinidad operated until 1976 and was replaced by
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Omega could determine position to a precision of ±2.2 km (1.4 mi). Later radio navigation systems were more accurate.
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317:(INS). Periodic fixes re-set the INS, which could then be used for navigation over longer periods of time and distances.
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Trinidad Omega
Transmitter (station B until 1976, replaced by station in Paynesville, Liberia) situated in
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When six of the eight station chain became operational in 1971, day-to-day operations were managed by the
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radionavigation techniques and the chain operated in the VLF portion of the spectrum between 10 and 14
844:) was inaugurated in 1976 and used an umbrella antenna mounted on a 417-metre steel lattice, grounded
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infringements, claiming that the Omega system was based on a proposed earlier Decca system known as
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Study and
Evaluation of the Omega Navigation System for transoceanic navigation by civil aviation
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The site of the now demolished Omega antenna on Réunion island can still be seen today as a disc.
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Officers suffered injuries as a result of the explosion. This explosion was recorded on the
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had a distinct need for just such a system, as they were in the process of introducing the
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The problem of synchronizing very distant stations was solved with the introduction of the
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system, operated by the United States in cooperation with six partner nations. It was a
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the equator moves at a speed of 460 meters per second—or roughly 1,000 miles per hour.
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insulated from ground, as its antenna. After OMEGA was shut down, the station became
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Loran-C and Omega : a study of the military importance of radio navigation aids
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systems were dominant in the medium-range roles, and short-range was well served by
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1799:オメガ鉄塔建設工事の記録("Record of the Tsushima Omega tower construction"), Japanese, 1974
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Teaming a product and a global market: a
Canadian Marconi company success story
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1711:"Tallest Structure in Africa Demolished to Make Way for Modern Market Complex"
1605:. Oslo; Oxford; New York: Norwegian University Press/Oxford University Press.
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system, enabling ships and aircraft to determine their position by receiving
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Valley. At the end of the 1960s it was converted to an OMEGA transmitter.
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The Communications Control Link building of the Naval Radio Station at
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1598:. Cambridge Mass: Harvard Univ Div of Engineering and Applied Physics.
1713:. Government of the Republic of Liberia. May 10, 2011. Archived from
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Shushi-Wan Omega Transmitter (station H) situated near Shushi-Wan on
623:. One of the blocks was located on the Norway mainland, the other on
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based on NASA Worldwind-globe - location of Omega-transmitter A in
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1619:. Reston, VA: American Institute of Aeronautics and Astronautics.
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Asche, George P. USCG 1972. Omega system of global navigation.
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In addition to the nine operational Omega towers, the tower at
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Wilkes, Owen, Nils Petter Gleditsch, and Ingvar Botnen. 1987.
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http://www.averdo.de/produkt/72105959/lutz-harald-der-komet/
1229:. The mast was demolished with explosives on 14 April 1999.
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used an umbrella antenna, installed on a 428-metre grounded
1283:, Ministry of Land, Infrastructure, Transport and Tourism.
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National Land Image Information (Color Aerial Photographs)
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Chabrier Omega Transmitter (station E) near Chabrier on
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The Omega Navigation System (1969) – USN Training Film
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Turner, Nicholas. 1973. Omega: a documented analysis.
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partially takes place at the Tsushima OMEGA-station.
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La Moure Omega Transmitter (station D) situated near
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LF Utility Stations 10-100 kHz (compiled by ZL4ALI)
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60:. Unsourced material may be challenged and removed.
1243:Station F, Trelew, Argentina. Demolished in 1998.
1093:Guyed grounded mast equipped with umbrella antenna
716:Guyed grounded mast equipped with umbrella antenna
27:First global radio navigation system for aircraft
221:, to eliminate the incorrect position solution.
1527:Decca had earlier proposed a system known as
614:Bratland Omega Transmitter, Anchor Point West
574:Bratland Omega Transmitter, Anchor Point East
8:
627:island. The antenna was dismantled in 2002.
1589:Australian Journal of International Affairs
813:Paynesville Omega Transmitter (station B –
1849:Military equipment introduced in the 1970s
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1452:was used for early testing of the system.
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1814:Pictures of former OMEGA-Station La Moure
120:Learn how and when to remove this message
499:Bratland Omega Transmitter (station A –
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856:Kaneohe Omega Transmitter (station C –
1695:: CS1 maint: archived copy as title (
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1310:Mast radiator insulated against ground
928:Mast radiator insulated against ground
1531:that Omega was subsequently based on.
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58:adding citations to reliable sources
530:Bratland Omega Transmitter Building
1543:, the Russian counterpart of LORAN
435:the United States government over
411:Some of the stations, such as the
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1819:Views of all eight Omega stations
1582:International Hydrographic Review
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987:365.25 m (1,198.33 ft)
369:Omega Tower Paynesville, Liberia
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475:Station G OMEGA transmitter in
45:needs additional citations for
1834:History of air traffic control
1596:Omega: Facts, Hopes and Dreams
1194:island in the Indian Ocean at
445:Decca Long Range Area Coverage
69:"Omega" navigation system
1:
1385:455 m (1,492.78 ft)
1171:428 m (1,404.20 ft)
794:417 m (1,368.11 ft)
683:Paynesville Omega Transmitter
1770:GPX (secondary coordinates)
155:was the first global-range
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1804:OMEGA By Jerry Proc VE3FAB
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1247:Woodside Omega Transmitter
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1060:Chabrier Omega Transmitter
895:La Moure Omega Transmitter
631:Trinidad Omega Transmitter
495:Bratland Omega Transmitter
404:Due to the success of the
315:inertial navigation system
1765:GPX (primary coordinates)
1740:Map all coordinates using
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852:Kaneohe Omega Transmitter
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406:Global Positioning System
375:United States Coast Guard
173:Global Positioning System
1748:Download coordinates as:
1253:VLF Transmitter Woodside
1233:Trelew Omega Transmitter
875:21.404700°N 157.830822°W
473:VLF Transmitter Woodside
417:submarine communications
1844:Omega navigation system
1788:Omega Navigation System
1390:Design and construction
1176:Design and construction
1029:46.365944°N 98.335617°W
992:Design and construction
799:Design and construction
519:66.420833°N 13.150555°E
341:Omega Transmitter, 1987
18:OMEGA Navigation System
1427:34.61472°N 129.45361°E
1350:34.61472°N 129.45361°E
1008:La Moure, North Dakota
938:La Moure, North Dakota
880:21.404700; -157.830822
690:Paynesville Omega Mast
658:10.69938°N 61.638708°W
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1760:GPX (all coordinates)
1615:Gibbs, Graham. 1997.
1261:Omega Tower, Tsushima
1213:20.97417°S 55.29000°E
1136:20.97417°S 55.29000°E
1056:communications site.
1034:46.365944; -98.335617
968:46.36583°N 98.33556°W
603:66.41472°N 13.08861°E
563:66.42417°N 13.16694°E
486:
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387:LaMoure, North Dakota
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236:, followed by the US
228:systems was the UK's
226:hyperbolic navigation
161:hyperbolic navigation
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135:
1790:at Wikimedia Commons
1444:OMEGA test locations
1268:Omega Mast, Tsushima
832:6.30556°N 10.66222°W
759:6.30556°N 10.66222°W
663:10.69938; -61.638708
524:66.420833; 13.150555
377:in partnership with
311:satellite navigation
54:improve this article
1594:Pierce, J.A. 1974.
1573:Scott, R. E. 1969.
1467:Cultural importance
1432:34.61472; 129.45361
1423: /
1355:34.61472; 129.45361
1346: /
1293:General information
1218:-20.97417; 55.29000
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1141:-20.97417; 55.29000
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1076:General information
1067:Chabrier Omega Mast
1025: /
973:46.36583; -98.33556
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911:General information
902:La Moure Omega Mast
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699:General information
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415:, are now used for
224:The first of these
1239:Omega Tower Trelew
837:6.30556; -10.66222
764:6.30556; -10.66222
608:66.41472; 13.08861
568:66.42417; 13.16694
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477:Woodside, Victoria
431:Company of London
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304:United States Navy
165:very low frequency
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1633:978-1-56347-225-1
1552:Oboe (navigation)
1499:Episode 3 of the
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429:Decca Navigator
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413:LaMoure station
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1717:on May 5, 2012
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214:air navigation
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248:Atomic clocks
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71: –
70:
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65:Find sources:
59:
55:
49:
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43:This article
41:
37:
32:
31:
19:
1747:
1746:
1739:
1719:. Retrieved
1715:the original
1705:
1680:. Retrieved
1676:the original
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1568:Bibliography
1528:
1504:
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1047:NRTF LaMoure
1005:
855:
812:
786:May 10, 2011
672:
634:
498:
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449:DELRAC/Omega
448:
444:
440:
427:In 1976 the
426:
410:
403:
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360:
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266:atomic clock
263:
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90:
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64:
52:Please help
47:verification
44:
1492:is called "
1430: /
1418:129°27′13″E
1353: /
1341:129°27′13″E
1328:Coordinates
1216: /
1139: /
1114:Coordinates
1032: /
971: /
959:098°20′08″W
946:Coordinates
878: /
866:157°49′51″W
835: /
823:010°39′44″W
762: /
750:010°39′44″W
737:Coordinates
726:Paynesville
661: /
606: /
593:013°05′19″E
566: /
553:013°10′01″E
522: /
140:(distances)
1828:Categories
1721:2011-05-15
1682:2012-07-07
1639:References
1486:finale of
1477:technology
1415:34°36′53″N
1338:34°36′53″N
1227:guyed mast
1204:55°17′24″E
1201:20°58′27″S
1127:55°17′24″E
1124:20°58′27″S
1043:guyed mast
1020:98°20′08″W
1017:46°21′57″N
956:46°21′57″N
863:21°24′17″N
846:guyed mast
820:06°18′20″N
747:06°18′20″N
707:Demolished
649:61°38′19″W
646:10°41′58″N
612: (
590:66°24′53″N
572: (
550:66°25′27″N
528: (
509:13°09′02″E
506:66°25′15″N
423:Court case
381:, Norway,
352:hyperbolic
259:ionosphere
198:lighthouse
188:Taking a "
80:newspapers
1591::291–305.
1374:Destroyed
1366:Completed
1301:Destroyed
1160:Destroyed
1152:Completed
1084:Destroyed
1054:submarine
1010:, USA at
919:Completed
783:Destroyed
775:Completed
469:abseiling
379:Argentina
1691:cite web
1513:See also
1484:season 2
1320:Tsushima
1316:Location
1103:Chabrier
1099:Location
934:Location
722:Location
637:Trinidad
278:hydrogen
270:rubidium
110:May 2011
1658:"Omega"
1503:series
1501:Netflix
1322:, Japan
1192:Réunion
1107:Réunion
730:Liberia
467:Person
453:LORAN C
391:Kaneohe
383:Liberia
339:Kaneohe
308:TRANSIT
285:Loran-C
274:caesium
242:LORAN-C
179:History
94:scholar
1631:
1623:
1609:
1547:SHORAN
1541:CHAYKA
1529:Delrac
1382:Height
1298:Status
1168:Height
1081:Status
984:Height
916:Status
791:Height
704:Status
441:DELRAC
437:patent
395:Hawaii
138:Norway
96:
89:
82:
75:
67:
1535:LORAN
1519:Alpha
889:Haiku
625:Aldra
541:Aldra
335:Haiku
325:OMEGA
238:LORAN
234:Decca
207:radar
153:OMEGA
101:JSTOR
87:books
1697:link
1629:ISBN
1621:ISBN
1607:ISBN
1482:The
1377:1998
1369:1973
1306:Type
1155:1976
1089:Type
1049:, a
924:Type
778:1976
712:Type
639:(at
433:sued
399:Oahu
295:and
287:and
240:and
232:and
73:news
1755:KML
1496:".
1408:at
1051:VLF
356:kHz
297:DME
293:VOR
230:Gee
190:fix
56:by
1830::
1693:}}
1689:{{
1647:^
1627:;
1105:,
728:,
443:,
419:.
401:.
393:,
276:,
272:,
175:.
1724:.
1699:)
1685:.
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616:)
576:)
532:)
479:.
123:)
117:(
112:)
108:(
98:·
91:·
84:·
77:·
50:.
20:)
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