Each of the five connected particles has a mass of 0.53 kg, with G as the center of mass of the system. At a certain instant the angular momentum of the system about G is 1.28k kg-m2/s, and the x- and y-components of the velocity of G are 3.7 m/s and 2.9 m/s, respectively. Calculate the angular momentum Ho of the system about O for this instant. 0.68 m Answer: Ho (0 0.50 m 1. 0 j+i 1.16446 k) kg-m²/s
Each of the five connected particles has a mass of 0.53 kg, with G as the center of mass of the system. At a certain instant the angular momentum of the system about G is 1.28k kg-m2/s, and the x- and y-components of the velocity of G are 3.7 m/s and 2.9 m/s, respectively. Calculate the angular momentum Ho of the system about O for this instant. 0.68 m Answer: Ho (0 0.50 m 1. 0 j+i 1.16446 k) kg-m²/s
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Subject-advance maths

Transcribed Image Text:Each of the five connected particles has a mass of 0.53 kg, with G as the center of mass of the system. At a certain instant the angular
momentum of the system about G is 1.28k kg-m2/s, and the x- and y-components of the velocity of G are 3.7 m/s and 2.9 m/s,
respectively. Calculate the angular momentum Ho of the system about O for this instant.
0.68 m
Answer: Ho (0
0.50 m
1.
0
j+ i
1.16446
k) kg-m²/s
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