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The most viable places on Phobos

All 20 named places on Phobos, scored one coordinate at a time on sunlight, water, radiation, temperature, ground and access — then ranked. Lagado Planitia comes out first.

Phobos as a whole rates 48.7/100 to settle, and that single number is the same for every square metre of it. It is also the wrong number for a mission, because sunlight, water, radiation dose and the ground itself all change with where you stand. The ranking below re-asks the question at each of 20 catalogued coordinates and reports the difference from the median site — so a score of 48.7 here means “typical for Phobos”, not “good”.

Water on Phobos: Possible bound water in a carbonaceous body, never confirmed by a lander.

1Lagado PlanitiaPlanitia19° N, 129° E4 km45.6-3.1
Sunlight: 95% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
2Laputa RegioRegio0° N, 95° E14 km46.1-2.6
Sunlight: 100% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
3StickneyCrater1° N, 49° W9 km46.9-1.8
Sunlight: 100% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
4WendellCrater1° S, 132° W1.7 km46.9-1.8
Sunlight: 100% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
5OpikCrater7° S, 63° E2 km47-1.7
Sunlight: 99% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
6ToddCrater9° S, 153° W2.6 km47-1.7
Sunlight: 99% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
7LimtocCrater11° S, 54° W2 km47.1-1.6
Sunlight: 98% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
8ShklovskyCrater24° N, 112° E2 km47.7-1
Sunlight: 91% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
9SharplessCrater28° S, 154° W1.8 km47.9-0.8
Sunlight: 89% of the sunlight the sunniest latitude on Phobos gets · Water: Same as everywhere else on this world
10DrunloCrater37° N, 92° W4.2 km48.6-0.1
Temperature: About -39 °C mean at this latitude · Water: Same as everywhere else on this world
11D ArrestCrater39° S, 179° W2.1 km48.8+0.1
Temperature: About -41 °C mean at this latitude · Water: Same as everywhere else on this world
12ReldresalCrater41° N, 39° W2.9 km49+0.3
Temperature: About -42 °C mean at this latitude · Water: Same as everywhere else on this world
13Kepler DorsumDorsum45° S, 4° E15 km50+1.3
Temperature: About -46 °C mean at this latitude · Water: Same as everywhere else on this world
14SkyreshCrater53° N, 40° E1.5 km50.3+1.6
Temperature: About -54 °C mean at this latitude · Water: Same as everywhere else on this world
15RocheCrater53° N, 177° E2.3 km50.3+1.6
Temperature: About -55 °C mean at this latitude · Water: Same as everywhere else on this world
16ClustrilCrater60° N, 91° W3.4 km51.2+2.5
Temperature: About -65 °C mean at this latitude · Water: Same as everywhere else on this world
17FlimnapCrater60° N, 10° E1.5 km51.2+2.5
Temperature: About -65 °C mean at this latitude · Water: Same as everywhere else on this world
18GulliverCrater62° N, 163° W5.5 km51.5+2.8
Temperature: About -68 °C mean at this latitude · Water: Same as everywhere else on this world
19HallCrater80° S, 150° E5.4 km54.5+5.8
Ground: Mixed ground — a rim, a floor and slopes between them · Sunlight: 17% of the sunlight the sunniest latitude on Phobos gets
20GrildrigCrater81° N, 165° E2.6 km54.7+6
Ground: Mixed ground — a rim, a floor and slopes between them · Sunlight: 16% of the sunlight the sunniest latitude on Phobos gets
What this ranking cannot see

Elevation. Every score above comes from a latitude, a longitude and a feature class — never from a terrain model — so slope, local shadowing and the polar peaks of eternal light are invisible to it. That last one matters: on a world tilted barely a degree, a ridge top near the pole can catch sunlight almost continuously while a crater floor a few kilometres away has not seen the Sun in two billion years. This model scores the average surface at a latitude, so it reads poles as dark and ranks them accordingly. Where a real mission targets a pole, that is usually the reason — and the reason to read this as one input, not a verdict.