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This section includes 11 Mcqs, each offering curated multiple-choice questions to sharpen your Finite Element Method knowledge and support exam preparation. Choose a topic below to get started.
1. |
Increasing the number of nodes in coarse mesh regions where stress variations are high, should give better results. This method is called _____ |
A. | Divergence |
B. | Convergence |
C. | Convergent- divergent |
D. | Un defined |
Answer» C. Convergent- divergent | |
2. |
Coarser meshes are recommended for _____ |
A. | Loading |
B. | Notches and fillets |
C. | Crystals |
D. | Initial trails |
Answer» E. | |
3. |
The _____ can be obtained even with coarser meshes by plotting and extrapolating. |
A. | Minimum stresses |
B. | Minimum strain |
C. | Maximum stresses |
D. | Maximum strain |
Answer» D. Maximum strain | |
4. |
The Constant strain triangle can give____ stresses on elements. |
A. | Linear |
B. | Constant |
C. | Uniform |
D. | Parallel |
Answer» C. Uniform | |
5. |
Stresses can be change widely at ____ |
A. | Large circular sections |
B. | Notches and fillets |
C. | Corners |
D. | Crystals |
Answer» C. Corners | |
6. |
In dividing the elements a good practice may be to choose corner angles in the range of ____ |
A. | 30-120° |
B. | 90-180° |
C. | 25-75° |
D. | 45-180° |
Answer» B. 90-180° | |
7. |
When dividing an area into triangles, avoid large _____ |
A. | Dimensions |
B. | Loading |
C. | Aspect ratios |
D. | Boundary conditions |
Answer» D. Boundary conditions | |
8. |
Boundary conditions can be easily considered by using _______ |
A. | Rayleigh method |
B. | Penalty approach method |
C. | Galerkin approach |
D. | Potential energy approach |
Answer» C. Galerkin approach | |
9. |
For a circular pipe under internal or external pressure, by symmetry all points move _____ |
A. | Radially |
B. | Linearly |
C. | Circularly |
D. | Along the pipe |
Answer» B. Linearly | |
10. |
In deformation of the body, the symmetry of ______ and symmetry of ____ can be used effectively. |
A. | Stress and strain |
B. | Nodes and displacement |
C. | Geometry and strain |
D. | Geometry and loading |
Answer» E. | |
11. |
Finite element method is used for computing _____ and _____ |
A. | Stress and strain |
B. | Nodes and displacement |
C. | Nodes and elements |
D. | Displacement and strain |
Answer» E. | |