
WASP-15 b - NASA Science
2024年10月24日 · WASP-15 b is a gas giant exoplanet that orbits a F-type star. Its mass is 0.54 Jupiters, it takes 3.8 days to complete one orbit of its star, and is 0.05165 AU from its star. Its …
WASP-15b - Wikipedia
WASP-15 is an F-type star located in the Centaurus constellation. It is located approximately 290 parsecs (900 light years) from Earth and has an apparent magnitude of 10.9, making it …
WASP-15 - Wikipedia
WASP-15 is host to the planet WASP-15b. The planet, which is a Hot Jupiter, orbits its host star at a distance of 0.0499 AU every 3.7520656 days. WASP-15b was noted by its discoverers …
[0902.2651] The low density transiting exoplanet WASP-15b
2009年2月16日 · WASP-15b, which orbits its host star with a period P=3.7520656+-0.0000028d has a mass M_p=0.542+-0.050M_J and radius R_p=1.428+-0.077R_J, and is therefore the …
BOWIE-ALIGN: JWST reveals hints of planetesimal accretion and …
2024年10月10日 · We present a transmission spectrum of the misaligned hot Jupiter WASP-15b from 2.8--5.2 microns observed with JWST's NIRSpec/G395H grating. Our high signal to noise …
THE LOW DENSITY TRANSITING EXOPLANET WASP-15b
2009年4月29日 · WASP-15b, which orbits its host star with a period P = 3.7520656 ± 0.0000028 d, has a mass Mp = 0.542 ± 0.050 MJ and radius Rp = 1.428 ± 0.077 RJ, and is therefore one …
WASP-15 | WASP Planets
The planet WASP-15b is 1.43 times the radius of Jupiter, the largest planet in our Solar System. That's about 14 times the radius of Earth. WASP-15b is only half the mass of Jupiter so, being …
Planet WASP-15 b
Determining the mass loss limit for close-in exoplanets: what can we learn from transit observations? Detailed information about planet WASP-15 b and its parameters.
WASP-15 b - exoplanetkyoto.org
WASP-15 b is an exoplanet orbiting the star WASP-15, located about 948.1 light-years (290.7 pc) away from Solar System. Its discovery was publicly announced on 2008. The host star WASP …
The Low Density Transiting Exoplanet WASP-15b - NASA/ADS
WASP-15b, which orbits its host star with a period P = 3.7520656 ± 0.0000028 d, has a mass M p = 0.542 ± 0.050 M J and radius R p = 1.428 ± 0.077 R J, and is therefore one of the least …
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