A) Describe the following, giving their advantages and disadvantages: i) Finite Volume Analysis. ii) Modal Analysis. iii) Transient Dynamic Analysis. A) For the truss (bar) shown in Figure 4 subjected to a non-linearly varying load, use the potential energy method to determine the: i) Displacements for a one finite element model. ii) The stress for the one element solution. Let A = 4x10* m and E = 210GP for the bar element.

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
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Author:Kreith, Frank; Manglik, Raj M.
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Chapter3: Transient Heat Conduction
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A) Describe the following, giving their advantages and disadvantages:
i)
Finite Volume Analysis.
ii) Modal Analysis.
iii) Transient Dynamic Analysis.
A) For the truss (bar) shown in Figure 4 subjected to a non-linearly varying load, use the
potential energy method to determine the:
i) Displacements for a one finite element model.
ii) The stress for the one element solution.
Let A = 4x10* m² and E = 210GPA for the bar element.
T = 5x kN/m
2
4 m
Figure 4
Transcribed Image Text:A) Describe the following, giving their advantages and disadvantages: i) Finite Volume Analysis. ii) Modal Analysis. iii) Transient Dynamic Analysis. A) For the truss (bar) shown in Figure 4 subjected to a non-linearly varying load, use the potential energy method to determine the: i) Displacements for a one finite element model. ii) The stress for the one element solution. Let A = 4x10* m² and E = 210GPA for the bar element. T = 5x kN/m 2 4 m Figure 4
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