The hanged ring is made up from Aluminum of a 2700 kg/m³ density. Determine the mass moment of inertia of the pendulum about an axis perpendicular to the screen and passing through O. e1 Given: • r₁ = 5 cm • T₂ = 20 cm • e₁ = 2 cm T₂ G ez Activate Windows Go to Settings 10 activate Window Given: •₁ = 5 cm • 12 = 20 cm e₁ = 2 cm • e₂ = 1 cm • a = 7 cm 12 G 1. The mass of the composite body is Choose... 2. The mass moment of inertia for the composite body about G is Choose. 3. The mass moment of inertia for the composite body about O is Choose...

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.73P
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The hanged ring is made up from Aluminum of a 2700 kg/m³ density. Determine the mass moment of inertia of the pendulum
about an axis perpendicular to the screen and passing through O.
e1
Given:
• r₁ = 5 cm
•
T₂ = 20 cm
• e₁ = 2 cm
T₂
G
ez
Activate Windows
Go to Settings 10 activate Window
Transcribed Image Text:The hanged ring is made up from Aluminum of a 2700 kg/m³ density. Determine the mass moment of inertia of the pendulum about an axis perpendicular to the screen and passing through O. e1 Given: • r₁ = 5 cm • T₂ = 20 cm • e₁ = 2 cm T₂ G ez Activate Windows Go to Settings 10 activate Window
Given:
•₁ = 5 cm
• 12 = 20 cm
e₁ = 2 cm
•
e₂ = 1 cm
•
a = 7 cm
12
G
1. The mass of the composite body is Choose...
2. The mass moment of inertia for the composite body about G is Choose.
3. The mass moment of inertia for the composite body about O is
Choose...
Transcribed Image Text:Given: •₁ = 5 cm • 12 = 20 cm e₁ = 2 cm • e₂ = 1 cm • a = 7 cm 12 G 1. The mass of the composite body is Choose... 2. The mass moment of inertia for the composite body about G is Choose. 3. The mass moment of inertia for the composite body about O is Choose...
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