5. The body with mass m is sliding on a fric- tionless spherical surface of radius R as RO m FIG. 2: To the problem N5. shown in FIG 2. The initial velocity at the top position was equal to zero. a) Find the dependence of linear velocity. b) Find cos o of the maximal angle bo when the body separated from the surface.
5. The body with mass m is sliding on a fric- tionless spherical surface of radius R as RO m FIG. 2: To the problem N5. shown in FIG 2. The initial velocity at the top position was equal to zero. a) Find the dependence of linear velocity. b) Find cos o of the maximal angle bo when the body separated from the surface.
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![5. The body with mass m is sliding on a fric-
tionless spherical surface of radius R as
RO
m
FIG. 2: To the problem N5.
shown in FIG 2. The initial velocity at the
top position was equal to zero.
a) Find the dependence of linear velocity.
b) Find cos o of the maximal angle bo when
the body separated from the surface.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fac4d5b2e-3e88-4d37-914e-4c8283db0af1%2Fa6928fa2-6dcc-4e62-99a5-9bd04d85db12%2F9pwuk7l_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5. The body with mass m is sliding on a fric-
tionless spherical surface of radius R as
RO
m
FIG. 2: To the problem N5.
shown in FIG 2. The initial velocity at the
top position was equal to zero.
a) Find the dependence of linear velocity.
b) Find cos o of the maximal angle bo when
the body separated from the surface.
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