Force = work / dis
= 60/ 5
= 12 N
Answer:
D
Explanation:
Can you please mark brainiest
and I think it's d because you were at the same sowed as the car but as it turn you moved the other way because of the pull of friction and your weight
hope it helps
Answer:
Explanation:
First at all let's understand what is moment of inertia (I). The moment of inertia of a body is the rotational analog of mass in linear motion, this is, it determines the force we should apply to the body to acquire a specific angular acceleration. But in the rotational case we should specify about what point we are going to rotate an object so always the moment of inertia is defined respect to an arbitrary axis. It's usual to use the center of mass as an axis of rotation, because it's an unique point where we can assume all the mass of the object is concentrated.The moment of inertia respect of an axis that passes through the center of mass is denoted .
Now, if the disk you're talking about has uniform density the center of mass is exactly at the geometrical center of the disk, and the moment of inertia of a disk as that is:
Mars -No
b. Uranus - Uranus has 9 brighter rings as well as several fainter rings.
c. Neptune - Neptune has several faint rings around it.
d. Saturn - Saturn has bright ice rings,
e. Jupiter - Jupiter has faint, narrow rings.