An artist has designed a bell using a long piece of pipe as the vibrating sound source. The pipe has a mass m = 36 kg and is supported by two rings (B and C) and five wires (AB, BC, BD, CE, and CG), as shown in the figure below. Note that wires BD and CG are horizontal, wire AB is vertical, and wires BC and CE are inclined by angles 0 = 65° and ¢ = 20° respectively from the horizontal. Determine the force in each of the wires. T M 0

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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An artist has designed a bell using a long piece of pipe as the vibrating sound source. The pipe has a mass
m = 36 kg and is supported by two rings (B and C) and five wires (AB, BC, BD, CE, and CG), as shown in the
figure below. Note that wires BD and CG are horizontal, wire AB is vertical, and wires BC and CE are inclined by
angles = 65° and = 20° respectively from the horizontal. Determine the force in each of the wires.
FAB
FBC =
FBD
FCE
FCG =
E
to
number (rtol=0.01, atol=1e-05)
number (rtol=0.01, atol=1e-05)
number (rtol=0.01, atol=1e-05)
number (rtol=0.01, atol=1e-05)
number (rtol=0.01, atol=1e-05)
B
A
N ?
N
N
N ?
N ?
U
of
Transcribed Image Text:An artist has designed a bell using a long piece of pipe as the vibrating sound source. The pipe has a mass m = 36 kg and is supported by two rings (B and C) and five wires (AB, BC, BD, CE, and CG), as shown in the figure below. Note that wires BD and CG are horizontal, wire AB is vertical, and wires BC and CE are inclined by angles = 65° and = 20° respectively from the horizontal. Determine the force in each of the wires. FAB FBC = FBD FCE FCG = E to number (rtol=0.01, atol=1e-05) number (rtol=0.01, atol=1e-05) number (rtol=0.01, atol=1e-05) number (rtol=0.01, atol=1e-05) number (rtol=0.01, atol=1e-05) B A N ? N N N ? N ? U of
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