14 earth masses, no atmosphere. High-gravity buggy races, anyone? :D

Input information

gravitational acceleration |  
radius | 15713 km  (kilometers)
mass | 14.23 M_earth  (Earth masses)

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Result

gravitational acceleration | 22.97 m/s^2  (meters per second squared)
= 75.4 ft/s^2  (feet per second squared)
= 2297 cm/s^2  (centimeters per second squared)
escape velocity | 26.87 km/s  (kilometers per second)
0.02687 km/ms  (kilometers per millisecond)
26870 m/s  (meters per second)

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Equation

g = (G M)/r^2 |  
g | gravitational acceleration
r | radius
M | mass
G | Newtonian gravitational constant (~~ 6.67×10^-11 m^3/(kg s^2))

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Input interpretation

convert 22.97 m/s^2  (meters per second squared) to standard accelerations due to gravity on the surface of the earth

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Result

2.3423 g  (standard accelerations due to gravity on the surface of the earth)

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Additional conversions

75.361 ft/s^2  (feet per second squared)

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Comparisons as acceleration

 ~~ 0.79 × maximum acceleration that a human can sustain for more than 25 seconds (~~ 29 m/s^2 )

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Comparisons as gravitational acceleration

 ~~ 0.994 × gravitational acceleration at the 1 atmosphere level of Jupiter ( 23.12 m/s^2 )

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Interpretations

acceleration

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Basic unit dimensions

[length] [time]^(-2)

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Corresponding quantity

Gravitational field strength:
  | 23 N/kg  (newtons per kilogram)

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