XXX SOLVE STEP BY STEP THE FOLLOWING PROBLEM IN DIGITAL FORMAT PLEASE It is observed that the period of vibration of the system shown in figure 2 is 0.8 s. After cylinder C is withdrawn, the observed period corresponds to 0.6 s. After cylinders B and C are withdrawn, the observed period corresponds to 0.4 s. Determine: a) The mass of cylinder A b) The mass of cylinder B c) The spring constant k Fund A BO 3 lb C

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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XXXXXXX
XXXXXX XXXXXXX
SOLVE STEP BY STEP THE FOLLOWING PROBLEM IN DIGITAL FORMAT
PLEASE
It is observed that the period of vibration of the system shown in figure 2 is 0.8
s. After cylinder C is withdrawn, the observed period corresponds to 0.6 s. After
cylinders B and C are withdrawn, the observed period corresponds to 0.4 s.
Determine:
a) The mass of cylinder A
b) The mass of cylinder B
c) The spring constant k
parad
A
B
3 lb C
Transcribed Image Text:XXXXXXX XXXXXX XXXXXXX SOLVE STEP BY STEP THE FOLLOWING PROBLEM IN DIGITAL FORMAT PLEASE It is observed that the period of vibration of the system shown in figure 2 is 0.8 s. After cylinder C is withdrawn, the observed period corresponds to 0.6 s. After cylinders B and C are withdrawn, the observed period corresponds to 0.4 s. Determine: a) The mass of cylinder A b) The mass of cylinder B c) The spring constant k parad A B 3 lb C
Expert Solution
Step 1

Given data:

Spring constant = k

Mass of cylinder C = Mc = 3 lb = 3 * 0.4536 kg/lb =  1.3608 kg

Period of vibration of the system with all three masses attached = 0.8 s

Period of vibration of the system with cylinder C removed = 0.6 s

Period of vibration of the system with cylinders B and C are removed = 0.4 s

We have to determine :

a) The mass of cylinder A

b) The mass of cylinder B

c) The spring constant k 

steps

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