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Ryugu · Crater · 7th largest named feature

Kolobok

Small ball-like bun, which ran away from home and rolled on the road, singing his tricky song; protagonist of a Russian fairy tale.

What Kolobok is

Kolobok is a crater — a circular depression, almost always an impact scar — on Ryugu, 0.2 km across, centred at 1.5° S, 26.5° W. It is the 7th largest named feature on Ryugu and the 4th largest of its class there.

Where the name comes from

Small ball-like bun, which ran away from home and rolled on the road, singing his tricky song; protagonist of a Russian fairy tale. The International Astronomical Union approved the name in 2018, under the theme it applies to every crater on Ryugu. Of the 7 features of this class catalogued on Ryugu, the naming categories run Japan (4), France (1), Russia (1), The Netherlands (Dutch) (1).

Feature class
a circular depression, almost always an impact scar
Diameter
0.2 km
about 5.0 times shorter than a 10-minute walk
Coordinates
1.5° S, 26.5° W
Planetocentric, on Ryugu
Name approved
2018
By the IAU Working Group for Planetary System Nomenclature
Naming category
Russia
Europe

What it would take to settle Kolobok

Ryugu scores 58.1 as a world. That number is the same for every square metre of it — but sunlight, water, radiation and the ground under your feet are not. This is the same question asked at 1.5° S, 26.5° W.

Settlement difficulty here
57.5/ 100
Typical for this world
Ryugu overall
58.1
0.6 easier than the median site
Ranked
1st
of 13 named places on Ryugu

What this spot has going for it is known ground 0 km from Hayabusa2 touchdown (2019). What works against it is water same as everywhere else on this world.

Computed from Kolobok's catalogued latitude, longitude and feature class — 74% of the model's weight had a basis here, and 2 axes were dropped as not applicable to Ryugu (radiation geometry, earth link). Gravity, pressure, delta-v and distance from the Sun are the same everywhere on Ryugu and are already counted in the world's own index, not again here.

What this cannot see: elevation. Slope, local shadowing and the polar “peaks of eternal light” — ridge tops near the poles of a barely tilted world that catch sun almost continuously while a crater floor kilometres away never does — need a terrain model this does not have. Where a real mission targets a pole, that is usually why.

What is next to it

The largest crater features on Ryugu