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WIDE ANGLE-SEARCH-FOR-PLANETS

  • Wide Angle Search for Planets
  • Exoplanet search project

    WASP or Wide Angle Search for Planets is an international consortium of several academic organisations performing an ultra-wide angle search for exoplanets

    Wide Angle Search for Planets

    Wide Angle Search for Planets

    Wide_Angle_Search_for_Planets

  • WASP-47
  • Star in the constellation Aquarius

    in 2012 by the Wide Angle Search for Planets (WASP) team. While it was thought to be a typical hot Jupiter system, three more planets were found in 2015:

    WASP-47

    WASP-47

  • Swiss 1.2-metre Leonhard Euler Telescope
  • Telescope in the La Silla Observatory, Chile

    main objective was to measure planet by transit method by supporting ground base program such as Wide Angle Search for Planets . The size of an exoplanet

    Swiss 1.2-metre Leonhard Euler Telescope

    Swiss 1.2-metre Leonhard Euler Telescope

    Swiss_1.2-metre_Leonhard_Euler_Telescope

  • WASP-127
  • Old G-type star with one exoplanet

    planets known. It orbits its star in just over four days. WASP-127b, along with WASP-136b and WASP-138b, was discovered by the Wide Angle Search for Planets

    WASP-127

    WASP-127

  • WASP-161
  • Star in the constellation Puppis

    The planet WASP-161b, later named Isli, is a massive hot Jupiter, discovered using the transit method as part of the Wide Angle Search for Planets (WASP)

    WASP-161

    WASP-161

  • WASP-96
  • Star in the constellation Phoenix

    2013 by the Wide Angle Search for Planets (WASP), utilising the transit method. In July 2022, NASA announced that a spectrum of the planet would be featured

    WASP-96

    WASP-96

  • WASP-96b
  • Gas giant exoplanet targeted for spectroscopy

    the constellation Phoenix. It was discovered in 2013 by the Wide Angle Search for Planets (WASP). WASP-96b orbits its Sun-like star WASP-96 every 3.4

    WASP-96b

    WASP-96b

    WASP-96b

  • WASP-22
  • Star in the constellation Eridanus

    third body is unclear. The designation WASP-22 comes from the Wide Angle Search for Planets. This was one of the systems selected to be named in the 2019

    WASP-22

    WASP-22

  • WASP-166
  • Star in the constellation Hydra

    method as part of the Wide Angle Search for Planets. It is a rare example of a planet within the Neptune desert; few Neptune-mass planets are found so close

    WASP-166

    WASP-166

    WASP-166

  • 1SWASP J093010.78+533859.5
  • Quintuple star system in the constellation Ursa Major

    light-years from Earth, and was discovered using data from the "Super Wide Angle Search for Planets" (SuperWASP) project in the Canary Islands. 1SWASP J093010.78+533859

    1SWASP J093010.78+533859.5

    1SWASP_J093010.78+533859.5

  • WASP-79
  • Star in the constellation Eridanus

    Punto. The planet WASP-79b, later named Pollera, is a large, low-density hot Jupiter, discovered in 2012 by the Wide Angle Search for Planets using the

    WASP-79

    WASP-79

  • WASP-94
  • Binary star system

    designation WASP-94 comes from the Wide Angle Search for Planets, and has been used since the system was found to host planets in 2014. While the two stars

    WASP-94

    WASP-94

  • WASP-39
  • G-type star in the constellation Virgo

    WASP-39b. The designation WASP-39 comes from the Wide Angle Search for Planets. Since the planet transits the star, the star is classified as a planetary

    WASP-39

    WASP-39

    WASP-39

  • WASP-63
  • Star in the constellation Columba

    indicates that this was the 63rd star found to have a planet by the Wide Angle Search for Planets. It is also known as CD-38 2551 from the Durchmusterung

    WASP-63

    WASP-63

  • WASP-132
  • Star in constellation Lupus

    farther out than the previous two planets and roughly where the main belt would be in the Solar System. This planet was discovered via doppler spectroscopy

    WASP-132

    WASP-132

    WASP-132

  • WASP-28b
  • Strongly-irradiated hot Jupiter

    WASP-28b or K2-1b is an extrasolar planet discovered in 2010 by the Wide Angle Search for Planets (WASP) project orbiting WASP-28, a magnitude 12 star

    WASP-28b

    WASP-28b

    WASP-28b

  • WASP-52
  • Star in the constellation Pegasus

    stellar companions. The designation WASP-52 comes from the Wide Angle Search for Planets. This was one of the systems selected to be named in the 2019

    WASP-52

    WASP-52

  • WASP-13
  • Star in the constellation Lynx

    planet discovered through the Wide Angle Search for Planets programme. In 2019 the IAU announced as part of NameExoWorlds that WASP-13 and its planet

    WASP-13

    WASP-13

  • WASP-10
  • Star in the constellation Pegasus

    of Hot Jupiters. I. A Radial Velocity Search for Massive, Long-Period Companions to Close-In Gas Giant Planets". The Astrophysical Journal. 785 (2): 126

    WASP-10

    WASP-10

  • WASP-66
  • Star in the constellation Antlia

    3847/1538-4365/aae5fb. 14. Delgado Mena, E. (2015). "Li abundances in F stars: planets, rotation, and Galactic evolution". Astronomy & Astrophysics. 576: A69

    WASP-66

    WASP-66

  • WASP-107
  • K-type star in the Virgo constellation

    WASP-107; they are WASP-107b, a warm super-Neptunian planet, and WASP-107c, a gas giant planet. Roman, Nancy G. (1987). "Identification of a constellation

    WASP-107

    WASP-107

  • WASP-8
  • Star in the constellation of Sculptor

    602A.107B. doi:10.1051/0004-6361/201629882. WASP planets "Notes for star WASP-8". Extrasolar Planets Encyclopaedia. Archived from the original on 2008-08-03

    WASP-8

    WASP-8

    WASP-8

  • WASP-21
  • Star in the constellation Pegasus

    planet Bendida after a deity worshipped by the Thracians. In 2010 WASP-21 was discovered to host a hot Jupiter type planet by the Wide Angle Search for

    WASP-21

    WASP-21

    WASP-21

  • WASP-20
  • Star in the constellation Cetus

    sky and is thus edge-on, as necessary for a transit to be observed. Wide Angle Search for Planets Lists of planets Roman, Nancy G. (1987). "Identification

    WASP-20

    WASP-20

  • WASP-45
  • K-type main sequence star in the constellation of Sculptor

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-45

    WASP-45

  • WASP-71
  • F-class main sequence star in the constellation Cetus

    failed to find any stellar companions for BD+00 316. The designation WASP-71 comes from the Wide Angle Search for Planets and has been used since 2012; BD+00

    WASP-71

    WASP-71

  • WASP-121
  • Star in the constellation Puppis

    arXiv:2005.09631. doi:10.1093/mnras/staa1628. S2CID 218684532. SuperWASP Wide Angle Search for Planets: The Planets, SuperWASP Portals: Astronomy Space

    WASP-121

    WASP-121

  • WASP-78
  • Star in the constellation Eridanus

    doi:10.3847/1538-3881/ababad, S2CID 212717799 Valsecchi, Francesca (2014), "Planets on the Edge", The Astrophysical Journal, 787 (1): L9, arXiv:1403.1870,

    WASP-78

    WASP-78

  • WASP-28
  • F-type star in the Pisces constellation

    695. Bibcode:1987PASP...99..695R. doi:10.1086/132034. Constellation record for this object at VizieR. Vallenari, A.; et al. (Gaia collaboration) (2023)

    WASP-28

    WASP-28

  • HAT-P-30
  • G-type main-sequence star

    transiting hot Jupiter planet, HAT-P-30b, was independently detected by two teams, the HATNet Project and the Wide Angle Search for Planets (WASP). The planetary

    HAT-P-30

    HAT-P-30

  • WASP-23
  • K-type star in the Puppis constellation

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-23

    WASP-23

  • WASP-34
  • Star in the constellation Crater

    Tagalog mythology. WASP-34 has a transiting planet discovered in 2011 by the Wide Angle Search for Planets. This is a hot Jupiter, with just over half

    WASP-34

    WASP-34

  • WASP-19
  • Star in the constellation Vela

    giant planet on a close orbit. The designation WASP-19 indicates that this was the 19th star found to have a planet by the Wide Angle Search for Planets. In

    WASP-19

    WASP-19

  • WASP-46
  • Star in the constellation Indus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-46

    WASP-46

  • WASP-18
  • Star in the constellation Phoenix

    Planet That Makes Star Act Deceptively Old". Chandra X-ray Observatory. Retrieved 20 September 2014. Pearson, Kyle A. (December 2019). "A Search for Multiplanet

    WASP-18

    WASP-18

  • WASP-54
  • Star in constellation of Virgo

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-54

    WASP-54

  • WASP-103
  • Star in the constellation Hercules

    2021-05-05. Wöllert, Maria; Brandner, Wolfgang (2015). "A Lucky Imaging search for stellar sources near 74 transit hosts". Astronomy & Astrophysics. 579:

    WASP-103

    WASP-103

  • WASP-43
  • Star in the Sextans constellation

    indicates that this was the 43rd star found to have a planet by the Wide Angle Search for Planets. In August 2022, this planetary system was included among

    WASP-43

    WASP-43

  • WASP-49
  • Star in the constellation Lepus

    1051/0004-6361/202452968. ISSN 0004-6361. Mugrauer, M. (December 2019). "Search for stellar companions of exoplanet host stars by exploring the second ESA-Gaia

    WASP-49

    WASP-49

  • WASP-84
  • Star in the constellation Hydra

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets", Astronomy & Astrophysics

    WASP-84

    WASP-84

  • WASP-64
  • Star in the constellation Canis Major

    gravitationally bound. The designation WASP-64 comes from the Wide Angle Search for Planets. This was one of the systems selected to be named in the 2019

    WASP-64

    WASP-64

  • WASP-88
  • F-type main sequence star in the constellation Indus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets", Astronomy & Astrophysics

    WASP-88

    WASP-88

  • WASP-80
  • Star in the constellation Aquila

    (2019). "Investigating Trends in Atmospheric Compositions of Cool Gas Giant Planets UsingSpitzer Secondary Eclipses". The Astronomical Journal. 158 (6): 217

    WASP-80

    WASP-80

  • WASP-72
  • Star in the constellation Fornax

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-72

    WASP-72

  • WASP-44
  • Star in the constellation Cetus

    circular orbit. An analysis of transit timing variations to search for additional planets was negative. Roman, Nancy G. (1987). "Identification of a constellation

    WASP-44

    WASP-44

  • WASP-41
  • Star in the constellation Centaurus

    misalignment angle of 9.15+2.85 −2.62°. The planetary equilibrium temperature is 1242±12 K. Another planet, WASP-41c, was discovered in 2015. The planets are too

    WASP-41

    WASP-41

  • WASP-6
  • Star in the constellation Aquarius

    of the planet WASP-6b. The designation WASP-6 indicates that this was the 6th star found to have a planet by the Wide Angle Search for Planets. In 2019

    WASP-6

    WASP-6

  • WASP-35
  • Star in the constellation Eridanus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets", Astronomy & Astrophysics

    WASP-35

    WASP-35

  • HD 146389
  • Star in the constellation Hercules

    from the Henry Draper Catalogue, while WASP-38 comes from the Wide Angle Search for Planets. This was one of the systems selected to be named in the 2019

    HD 146389

    HD_146389

  • WASP-62
  • Star in the constellation Dorado

    indicates that this was the 62nd star found to have a planet by the Wide Angle Search for Planets. This was one of the systems selected to be named in

    WASP-62

    WASP-62

  • WASP-59
  • Star in the constellation Pegasus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets", Astronomy & Astrophysics

    WASP-59

    WASP-59

  • WASP-178
  • Star in the constellation Lupus

    CHEOPS space telescope revealed that the planet has a low geometric albedo of 0.1–0.35, typical of giant planets. Based on this, the dayside temperature

    WASP-178

    WASP-178

    WASP-178

  • WASP-57
  • Star in the constellation Libra

    TNG. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets", Astronomy & Astrophysics

    WASP-57

    WASP-57

  • Roque de los Muchachos Observatory
  • Astronomical observatory on La Palma, Canary Islands

    Telescope Wide Angle Search for Planets (WASP) William Herschel Telescope European Solar Telescope (In project) Several of the helicopter pads built for the

    Roque de los Muchachos Observatory

    Roque de los Muchachos Observatory

    Roque_de_los_Muchachos_Observatory

  • WASP-11
  • Binary star in the constellation Aries

    independently by the Hungarian Automated Telescope Network and the Wide Angle Search for Planets teams, both of which used the transit method. Roman, Nancy G

    WASP-11

    WASP-11

  • WASP-69
  • Star in the constellation Aquarius

    indicates that this was the 69th star found to have a planet by the Wide Angle Search for Planets. In August 2022, this planetary system was included among

    WASP-69

    WASP-69

  • WASP-15
  • Magnitude 11 star in the constellation Centaurus

    Triaud, A. H. M. J.; et al. (2010). "Spin-orbit angle measurements for six southern transiting planets: New insights into the dynamical origins of hot

    WASP-15

    WASP-15

  • WASP-7
  • Star in the constellation Microscopium

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-7

    WASP-7

  • WASP-17
  • Star in the constellation Scorpius

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-17

    WASP-17

  • WASP-67
  • Star in the constellation Sagittarius

    "Spitzersecondary Eclipse Observations of Five Cool Gas Giant Planets and Empirical Trends in Cool Planet Emission Spectra", The Astrophysical Journal, 810 (2):

    WASP-67

    WASP-67

  • WASP-4b
  • Extrasolar planet in the constellation Phoenix

    The planet was the discovered by the Wide Angle Search for Planets team using images taken with the SuperWASP-South project's eight wide-angle cameras

    WASP-4b

    WASP-4b

    WASP-4b

  • WASP-55
  • Star in constellation of Virgo

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-55

    WASP-55

  • WASP-4
  • G-type main-sequence star in the constellation Phoenix

    orbital elements and thus both should be the same object. Wide Angle Search for Planets Lists of planets Roman, Nancy G. (1987). "Identification of a constellation

    WASP-4

    WASP-4

    WASP-4

  • XO-1b
  • Extrasolar planet in the constellation Corona Borealis

    America and Europe. An independent confirmation of the planet was made by the Wide Angle Search for Planets project later that same year. The XO Project team

    XO-1b

    XO-1b

    XO-1b

  • WASP-76
  • Star in the Pisces constellation

    Jupiter" class planet WASP-76b was discovered around WASP-76 in 2013. Analysis of transit-timing variations suggest an additional planet in the system

    WASP-76

    WASP-76

    WASP-76

  • WASP-32
  • Star in the constellation Pisces

    constellation of Pisces. The designation WASP-32 comes from the Wide Angle Search for Planets. This was one of the systems selected to be named in the 2019

    WASP-32

    WASP-32

  • WASP-60
  • Star in the constellation Pegasus

    companions to WASP-60. The designation WASP-60 comes from the Wide Angle Search for Planets. This was one of the systems selected to be named in the 2019

    WASP-60

    WASP-60

  • WASP-36
  • Star in the constellation Hydra

    2016 has turned out to be anomalous: the planet appears to be surrounded by a blue-tinted halo that is too wide to be an atmosphere and may represent a

    WASP-36

    WASP-36

  • WASP-2
  • Multiple star system in the constellation Delphinus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-2

    WASP-2

  • WASP-37
  • Star in constellation of Virgo

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-37

    WASP-37

  • J1407b
  • Disked object that eclipsed V1400 Centauri

    millimeter. During 7 April to 4 June 2007, telescopes of the Super Wide Angle Search for Planets (SuperWASP) and All Sky Automated Survey (ASAS) projects automatically

    J1407b

    J1407b

    J1407b

  • WASP-74
  • Star in the constellation Aquila

    approximately 1,865 K. The planet's orbit is circular and well-aligned with the stellar equator, with a measured sky-projected spin-orbit angle of 0.77±0.99 degrees

    WASP-74

    WASP-74

  • WASP-16b
  • Extrasolar planet

    discovered in 2009 by a team led by T.A. Lister as part of the Wide Angle Search for Planets project. In 2012, it was found from the Rossiter–McLaughlin

    WASP-16b

    WASP-16b

    WASP-16b

  • WASP-90
  • Star in the constellation Equuleus

    Jupiter" was discovered orbiting the star. Due to the host's state, the planet is extremely irradiated. Roman, Nancy G. (1987). "Identification of a constellation

    WASP-90

    WASP-90

  • V1400 Centauri
  • Young sun-like star in the constellation Centaurus

    (ASAS), Two Micron All-Sky Survey (2MASS), Super Wide Angle Search for Planets (1SWASP), and the Wide-field Infrared Survey Explorer (WISE). Typically

    V1400 Centauri

    V1400 Centauri

    V1400_Centauri

  • WASP-50
  • Star in the constellation Eridanus

    by the tides raised by a giant planet on a close orbit. The designation WASP-50 comes from Wide Angle Search for Planets, a consortium of academic organisations

    WASP-50

    WASP-50

  • WASP-29
  • Star in the constellation Phoenix

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-29

    WASP-29

  • WASP-24
  • Star in the constellation of Virgo

    5088–5102. Bibcode:2019MNRAS.490.5088M. doi:10.1093/mnras/stz2673. "The Planets". SuperWASP. Archived from the original on 12 June 2010. "WASP-24 Overview"

    WASP-24

    WASP-24

  • HAT-P-27
  • Star in the constellation Virgo

    S2CID 41083068. Wöllert, Maria; Brandner, Wolfgang (2015). "A Lucky Imaging search for stellar sources near 74 transit hosts". Astronomy & Astrophysics. 579:

    HAT-P-27

    HAT-P-27

  • WASP-25
  • Star in the constellation Hydra

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-25

    WASP-25

  • WASP-56
  • Star in the constellation Coma Berenices

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-56

    WASP-56

  • WASP-12
  • Star in the constellation Auriga

    carbon-to-oxygen ratio indicates that rocky planets might have formed in the star system, and it may be a carbon planet. It is subject to intensive photo-evaporation

    WASP-12

    WASP-12

    WASP-12

  • WASP-61
  • Star in the constellation Lepus

    Karen A.; Gaudi, B. Scott (2016), "Accurate Empirical Radii and Masses of Planets and Their Host Stars with Gaia Parallaxes", The Astronomical Journal, 153

    WASP-61

    WASP-61

  • WASP-58
  • High proper motion star in the constellation Lyra

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets", Astronomy & Astrophysics

    WASP-58

    WASP-58

  • WASP-26
  • Yellow main sequence star in the constellation Cetus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-26

    WASP-26

  • WASP-95
  • Star in the constellation Grus

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-95

    WASP-95

  • Greg Parker
  • British physicist

    mini-WASP imaging array, named after the SuperWASP array built for the Wide Angle Search for Planets. Parker published over 120 refereed journal and conference

    Greg Parker

    Greg_Parker

  • WASP-159
  • Star in the constellation Caelum

    695. Bibcode:1987PASP...99..695R. doi:10.1086/132034. Constellation record for this object at VizieR. Vallenari, A.; et al. (Gaia collaboration) (2023)

    WASP-159

    WASP-159

  • Wasp (disambiguation)
  • Topics referred to by the same term

    Wiskott–Aldrich syndrome protein Wide Angle Search for Planets (WASP), a British group searching for extra-solar planets Wasps FC, an amateur English rugby

    Wasp (disambiguation)

    Wasp_(disambiguation)

  • WASP-1
  • Star in the constellation Andromeda

    In 2006, an extrasolar planet was discovered by the Wide Angle Search for Planets team using the transit method. The planet has a density of 0.31 to

    WASP-1

    WASP-1

    WASP-1

  • WASP-107b
  • Super Neptune orbiting WASP-107

    WASP-107b". Wide Angle Search for Planets. September 27, 2017. Witze, Alexandra (2 May 2018). "Astronomers spot helium on exoplanet for first time".

    WASP-107b

    WASP-107b

    WASP-107b

  • HD 15082
  • Star in the constellation Andromeda

    ; Irwin, J.; Norton, A. J.; Osborne, J. (November 2006). "The SuperWASP wide-field exoplanetary transit survey: candidates from fields 23 h < RA < 03

    HD 15082

    HD 15082

    HD_15082

  • CD−34 8618
  • F-type dwarf with a planet in Centaurus

    Collado, A. (March 2021). "Chemical analysis of early-type stars with planets". Astronomy & Astrophysics. 647: A49. arXiv:2101.04416. Bibcode:2021A&A

    CD−34 8618

    CD−34_8618

  • WASP-3
  • Star in the constellation Lyra

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-3

    WASP-3

    WASP-3

  • WASP-16
  • Star in constellation of Virgo

    XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets". Astronomy & Astrophysics

    WASP-16

    WASP-16

  • WASP-75
  • Star in the constellation Aquarius

    elements. In 2013, a transiting hot Jupiter planet b was detected on a tight, circular orbit, and the planet was confirmed in 2018. Its equilibrium temperature

    WASP-75

    WASP-75

  • BD−07 436
  • Star in the constellation Cetus

    Udry, S.; West, R. G. (2012), "WASP-77 Ab: A transiting hot Jupiter planet in a wide binary system", Publications of the Astronomical Society of the Pacific

    BD−07 436

    BD−07_436

  • EBLM J0555−57
  • Triple star system in the constellation Pictor

    Mass), using data collected by the WASP project. WASP (Wide Angle Search for Planets) is searching for exoplanets using the transit method. The findings were

    EBLM J0555−57

    EBLM_J0555−57

  • Tom Wagg
  • English astrophysicist

    discovered a planet during a work experience program for the astrophysics department of Keele University. His work contributed to the Wide Angle Search for Planets

    Tom Wagg

    Tom_Wagg

  • WASP-48
  • G-type main-sequence star

    Carolina; Henning, Thomas (2015). "A Lucky Imaging search for stellar companions to transiting planet host stars". Astronomy & Astrophysics. 575: A23. arXiv:1507

    WASP-48

    WASP-48

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WIDE ANGLE-SEARCH-FOR-PLANETS

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WIDE ANGLE-SEARCH-FOR-PLANETS