A 2786 kg solid sphere with a radius of 2 m rolls without slipping down an incline of 0 = 32°. If the sphere makes 7 full revolutions in 8.192 seconds. 1. The rotational inertia of the sphere is kg.m² 2. The frictional force between the incline and the sphere is N 3. The angular velocity at point Con the sphere is rad/s 4. The speed of the center of mass of the Sphere is 5. The distance S after 7 full revolutions is m/s m
A 2786 kg solid sphere with a radius of 2 m rolls without slipping down an incline of 0 = 32°. If the sphere makes 7 full revolutions in 8.192 seconds. 1. The rotational inertia of the sphere is kg.m² 2. The frictional force between the incline and the sphere is N 3. The angular velocity at point Con the sphere is rad/s 4. The speed of the center of mass of the Sphere is 5. The distance S after 7 full revolutions is m/s m
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![A 2786 kg solid sphere with a radius
of 2 m rolls without slipping down an
incline of 0 = 32°. If the sphere makes
7 full revolutions in 8.192 seconds.
1. The rotational inertia of the
sphere is
kg.m²
2. The frictional force between the
incline and the sphere is
N
3. The angular velocity at point Con
the sphere is
rad/s
4. The speed of the center of mass
of the Sphere is
5. The distance S after 7 full
revolutions is
m/s
m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7d0d028c-3649-4645-9aa6-e7d2cc62dc7e%2Fb484f314-9563-408d-8470-68c89cc07449%2Ftwyd686_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A 2786 kg solid sphere with a radius
of 2 m rolls without slipping down an
incline of 0 = 32°. If the sphere makes
7 full revolutions in 8.192 seconds.
1. The rotational inertia of the
sphere is
kg.m²
2. The frictional force between the
incline and the sphere is
N
3. The angular velocity at point Con
the sphere is
rad/s
4. The speed of the center of mass
of the Sphere is
5. The distance S after 7 full
revolutions is
m/s
m
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