A system consists of a disk of mass 2.3 kg and radius 48 cm upon which is mounted an annular cylinder of mass 1.3 kg with inner radius 20 cm and outer radius 32 cm (see below). The system rotates about an axis through the center of the disk and annular cylinder at 12 rev/s. axis 48 cm 32 cm 20 cm (a) What is the moment of inertia of the system (in kg • m2)? kg • m2 (b) What is its rotational kinetic energy (in J)?

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A system consists of a disk of mass 2.3 kg and radius 48 cm upon which is mounted an annular cylinder of mass 1.3 kg with inner radius 20 cm and outer radius 32 cm (see below). The system
rotates about an axis through the center of the disk and annular cylinder at 12 rev/s.
axis
48 cm
32 cm
20 cm
(a) What is the moment of inertia of the system (in kg • m2)?
kg · m2
(b) What is its rotational kinetic energy (in J)?
Transcribed Image Text:A system consists of a disk of mass 2.3 kg and radius 48 cm upon which is mounted an annular cylinder of mass 1.3 kg with inner radius 20 cm and outer radius 32 cm (see below). The system rotates about an axis through the center of the disk and annular cylinder at 12 rev/s. axis 48 cm 32 cm 20 cm (a) What is the moment of inertia of the system (in kg • m2)? kg · m2 (b) What is its rotational kinetic energy (in J)?
A system of point particles is shown in the following figure. Each particle has mass 0.83 kg, and they all lie in the same plane.
49 cm
22 cm
axis
69 cm
(a) What is the moment of inertia (in kg · m?) of the system about the given axis?
|kg · m2
(b) If the system rotates at 4.6 rev/s, what is its rotational kinetic energy (in J)?
Transcribed Image Text:A system of point particles is shown in the following figure. Each particle has mass 0.83 kg, and they all lie in the same plane. 49 cm 22 cm axis 69 cm (a) What is the moment of inertia (in kg · m?) of the system about the given axis? |kg · m2 (b) If the system rotates at 4.6 rev/s, what is its rotational kinetic energy (in J)?
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