Question 1.3 A side-handle baton with dimensions shown in the following figure is made from two solid cylinders of polycarbonate, each with the same diameter. The shorter of the two cylinders is mounted at a right angle, forming a handle. Determine the moment of inertia for the baton when it is rotated about the axis, z, that passes through the centre of the handle. Density of polycarbonate, p = 1200 kg/m³ 4 = 17 cm, l2 = 44 cm, l3 = 14 cm Diameter for both cylinders, d = 3 cm %3D

Structural Analysis
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Chapter2: Loads On Structures
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Question 1.3
A side-handle baton with dimensions shown in the following figure is made from two solid
cylinders of polycarbonate, each with the same diameter. The shorter of the two cylinders is
mounted at a right angle, forming a handle. Determine the moment of inertia for the baton
when it is rotated about the axis, z, that passes through the centre of the handle.
Density of polycarbonate, p = 1200 kg/m³
4 = 17 cm, l2 = 44 cm, l3 = 14 cm
Diameter for both cylinders, d = 3 cm
Transcribed Image Text:Question 1.3 A side-handle baton with dimensions shown in the following figure is made from two solid cylinders of polycarbonate, each with the same diameter. The shorter of the two cylinders is mounted at a right angle, forming a handle. Determine the moment of inertia for the baton when it is rotated about the axis, z, that passes through the centre of the handle. Density of polycarbonate, p = 1200 kg/m³ 4 = 17 cm, l2 = 44 cm, l3 = 14 cm Diameter for both cylinders, d = 3 cm
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