Kepler-34b

GPTKB entity

Statements (67)
Predicate Object
gptkbp:instance_of gptkb:exoplanet
gptkbp:analysis requires advanced computational methods.
gptkbp:atmosphere hydrogen and helium
hydrogen-rich atmosphere
subject to intense stellar radiation.
gptkbp:average_temperature approximately 1000 K
high due to proximity to stars.
gptkbp:binary_star_system yes
gptkbp:collaborations involves multiple international teams.
gptkbp:community of great interest to astronomers.
gptkbp:contains_star G-type star.
Kepler-34 A and Kepler-34 B
gptkbp:country gptkb:Hot_Jupiter
circumbinary planet.
formed in a binary star system.
part of Kepler-34 system.
gptkbp:discovered_by gptkb:Kepler_Space_Telescope
gptkbp:discovery transit method
transit
Latham et al.
first circumbinary planet discovered.
significant for exoplanet studies.
gptkbp:discovery_year gptkb:2012
gptkbp:distance_from_earth about 3340 light years
gptkbp:eccentricity 0.1
gptkbp:exoplanet_discovery part of the Kepler mission's success.
gptkbp:financial_stability stable orbit in binary system
gptkbp:future_prospects ongoing studies on its atmosphere.
gptkbp:growth_habit not habitable
gptkbp:has_luminosity exists in a complex gravitational field.
gptkbp:has_radius about 1.1 times that of Jupiter
0.98 Jupiter radii
gptkbp:hosts gptkb:Kepler-34
https://www.w3.org/2000/01/rdf-schema#label Kepler-34b
gptkbp:is_explored_in potential for further missions.
gptkbp:lighting analyzed for transits.
gptkbp:mass about 0.8 times that of Jupiter
between 0.5 and 1.5 Jupiter masses.
estimated based on transit data.
Kepler-34 A and Kepler-34 B are both similar to the Sun.
0.8 Jupiter masses
0.92 Jupiter masses
gptkbp:orbital_altitude 0.5 AU from its star.
influenced by two stars.
gptkbp:orbital_inclination about 45 degrees
gptkbp:orbital_period 1:1 with Kepler-34 A
29.3 days
due to gravitational interactions.
unique due to binary star influence.
34.7 days
gptkbp:provides_information_on NASA Exoplanet Archive.
gptkbp:research difficult to observe due to brightness of stars.
obtained from Kepler mission.
transit photometry.
used to analyze its atmosphere.
gptkbp:research_focus studied for atmospheric conditions.
gptkbp:research_importance helps understand planet formation in binary systems.
gptkbp:rotation_period unknown.
gptkbp:semi_major_axis 0.5 AU
gptkbp:surface about 24 m/s²
gptkbp:system Kepler-34 system
gptkbp:travel_time about 3340 years from Earth.
gptkbp:type gptkb:Giant
gptkbp:year 29.3 Earth days
Kepler-34b year is shorter than Earth year.
gptkbp:bfsParent gptkb:Kepler_mission
gptkbp:bfsLayer 4