2. The mass of planet Mars is 10.7% that of the earth, and its radius is 53.3% that of the earth. (A) Compute the acceleration due to gravity on the surface of Mars from these data. (B) If a rock weighs 75.0N on earth, what would it weigh at the surface of Mars? G = 6.67 x 10-11 Nm2/kg? Solution-(show your solution on a separate sheet of paper A. The acceleration due to gravity on the surface of Mars is Given Data Variables Value Mass of the earth(mrarth) Radius of the earth (rEarth) Mass of Venus (mMars) Radius of the Venus (RMars) B. The weight of the rock on the surface of Mars is.

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Chapter1: Units, Trigonometry. And Vectors
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2. The mass of planet Mars is 10.7% that of the earth, and its radius is 53.3% that
of the earth. (A) Compute the acceleration due to gravity on the surface of Mars
from these data. (B) If a rock weighs 75.0N on earth, what would it weigh at the
surface of Mars? G = 6.67 x 10-11 Nm2/kg?
Solution-(show your solution on a separate
sheet of paper
A. The acceleration due to gravity
on the surface of Mars
Given Data
Variables
Mass of the earth(mrarth)
Radius of the earth (rEarth)
Mass of Venus (m Mara)
Radius of the Venus (RMars)
Value
is
B. The weight of the rock on the
surface of Mars is.
Transcribed Image Text:2. The mass of planet Mars is 10.7% that of the earth, and its radius is 53.3% that of the earth. (A) Compute the acceleration due to gravity on the surface of Mars from these data. (B) If a rock weighs 75.0N on earth, what would it weigh at the surface of Mars? G = 6.67 x 10-11 Nm2/kg? Solution-(show your solution on a separate sheet of paper A. The acceleration due to gravity on the surface of Mars Given Data Variables Mass of the earth(mrarth) Radius of the earth (rEarth) Mass of Venus (m Mara) Radius of the Venus (RMars) Value is B. The weight of the rock on the surface of Mars is.
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