- weight
- ≈ 0.94 g
- sun
- 4.1× wider
- sky
- amber-orange
Illustration computed from this world’s measured and derived values, not a photograph.
Kepler-220 d
Kepler-220 d is a confirmed rocky exoplanet 558 ly from Earth in the constellation Cygnus, discovered in 2014 by Kepler.
Transit: spotted by the tiny, repeating dip in its star’s light each time the planet crosses in front of it.
Standing on Kepler-220 d, you would weigh roughly about 6% less than you do on Earth. Its orange dwarf looks 4.1× wider than ours, bathing the surface in amber-orange light. It is likely tidally locked, so that sun never moves in the sky: one hemisphere in endless day, the other in permanent night. A year passes in just 28 days, and at an estimated 128°C (262°F) it is blistering.
How closely this world matches Earth in size and warmth, from 0 to 1 (Earth = 1.0). Computed by gravityfinder. See every world ranked →
What these mean: surface gravity · tidal locking · equilibrium temperature · Earth similarity
If your children grew up herea playful thought experiment
Gravity close to Earth's, at about 0.94 times. A child would grow up much as they would back home.
A playful thought experiment from this world’s gravity, not a prediction about any real person. No human has ever grown up off Earth, so no one truly knows; the direction (taller in low gravity, shorter and stockier in high) follows how growing bodies respond to weight.
Hear how a voice sounds herea computed acoustic demo
Your voice would sound noticeably higher and reedier.
Assuming Earth-like air at this world's temperature of about 128°C (262°F), sound would travel roughly 18% faster than on Earth, so your voice would sound noticeably higher and reedier. The real atmosphere is unknown, so this is a best guess.
A real voice sample, pitch-shifted (tempo held constant) to suggest the acoustics: a playful approximation, not a precise simulation. Voice: Lingua Libre / Vealhurl, CC BY-SA 4.0.
- !Persistently hot at around 128°C (262°F), well above anything you would call comfortable.
- Surface gravity is close to Earth's, about 0.94 times, so you would move much as you do here.
- !Likely tidally locked: one hemisphere in endless day, the other in permanent night.
A playful read of Kepler-220 d’s measured and computed values, not a real advisory.
How long to get there · 558 ly away
Zoom out: star → system → (soon) galaxy arm, host black hole, and a real image of the host galaxy.
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What is the gravity on Kepler-220 d?
Kepler-220 d's surface gravity is about 0.94 times Earth's, estimated from its size.
How much would you weigh on Kepler-220 d?
Someone who weighs 150 pounds on Earth would weigh about 141 pounds on Kepler-220 d.
How far is Kepler-220 d from Earth?
Kepler-220 d lies about 558 light-years from Earth.
How long would it take to get to Kepler-220 d?
At the speed of NASA's Parker Solar Probe, the fastest craft ever built, the journey would take about 870,390 years.
How hot is Kepler-220 d?
Kepler-220 d's equilibrium temperature, the balance it reaches from its star's light alone before any greenhouse warming, is about 128°C (262°F).
How long is a year on Kepler-220 d?
Kepler-220 d completes one orbit of its star in 28 days.
Illustration generated from Kepler-220 d's confirmed parameters, not a photograph.