Q-1) A body with a 25 kg of mass has started it's movement, in the inclined surface, with a Vo= 0.6m/s initial velocity. The coefficient of friction of the inclined surface is 0.5. The spring's compression force, provided with x(mm); Fspring= 16x+0.06x2 . According to given specifications; calculate the final velocity of the body when the spring is 100mm compressed.
Q-1) A body with a 25 kg of mass has started it's movement, in the inclined surface, with a Vo= 0.6m/s initial velocity. The coefficient of friction of the inclined surface is 0.5. The spring's compression force, provided with x(mm); Fspring= 16x+0.06x2 . According to given specifications; calculate the final velocity of the body when the spring is 100mm compressed.
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![*vo = 0.6 m/s
f = 0.5
60°
0.9 m
www
25 kr](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc3d725f6-aa76-4dd5-8eec-34aa380adedb%2F5af10e76-ee2b-45d7-a609-6e7b238f9765%2Fbwspwfu_processed.png&w=3840&q=75)
Transcribed Image Text:*vo = 0.6 m/s
f = 0.5
60°
0.9 m
www
25 kr
![Q-1) A body with a 25 kg of mass has
started it's movement, in the inclined
surface, with a Vo= 0.6m/s initial
velocity. The coefficient of friction of
the inclined surface is 0.5. The
spring's compression force, provided
with x(mm); Fspring= 16x+0.06x2 .
According to given specifications;
calculate the final velocity of the body
when the spring is 100mm
compressed.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc3d725f6-aa76-4dd5-8eec-34aa380adedb%2F5af10e76-ee2b-45d7-a609-6e7b238f9765%2Fjbp43r_processed.png&w=3840&q=75)
Transcribed Image Text:Q-1) A body with a 25 kg of mass has
started it's movement, in the inclined
surface, with a Vo= 0.6m/s initial
velocity. The coefficient of friction of
the inclined surface is 0.5. The
spring's compression force, provided
with x(mm); Fspring= 16x+0.06x2 .
According to given specifications;
calculate the final velocity of the body
when the spring is 100mm
compressed.
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