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This section includes 19 Mcqs, each offering curated multiple-choice questions to sharpen your Prestressed Concrete Structures knowledge and support exam preparation. Choose a topic below to get started.
1. |
The strain compatibility method is generally applicable for __________ |
A. | Under & over reinforcement sections |
B. | Partially prestressed sections |
C. | Mid span sections |
D. | Fully prestressed sections |
Answer» B. Partially prestressed sections | |
2. |
How much percentage of tensile strain is assumed at the failure of under reinforced sections? |
A. | 0.7% |
B. | 0.5% |
C. | 0.4% |
D. | 0.2% |
Answer» D. 0.2% | |
3. |
The number of steps to be followed in the strain compatibility method is? |
A. | 4 |
B. | 7 |
C. | 10 |
D. | 6 |
Answer» E. | |
4. |
The stress-strain characteristics of steel used as prestressing tendons are necessary for __________ |
A. | Principal computation |
B. | Stress computation |
C. | Flexural computation |
D. | Strain computation |
Answer» D. Strain computation | |
5. |
The flexural compression stress in the compressive zone follows the __________ |
A. | Block curve |
B. | Anchorage curve |
C. | Mid span |
D. | Stress strain curve |
Answer» E. | |
6. |
The stress distribution in the compression zone of concrete can be defined by means of __________ |
A. | Specific gravity |
B. | Coefficient |
C. | Modulus of elasticity |
D. | Span moment |
Answer» C. Modulus of elasticity | |
7. |
The resistance of concrete is neglected at __________ |
A. | Tension |
B. | Compression |
C. | Shear |
D. | Breakage |
Answer» B. Compression | |
8. |
The distribution of concrete in the strain compatibility method is? |
A. | Aligned |
B. | Curved |
C. | Linear |
D. | Bent |
Answer» D. Bent | |
9. |
The estimation based on compatibility of the strain of prestressed concrete involves __________ |
A. | Flexural strength |
B. | Tensile strength |
C. | Compressive strength |
D. | Bulking strength |
Answer» B. Tensile strength | |
10. |
HOW_MUCH_PERCENTAGE_OF_TENSILE_STRAIN_IS_ASSUMED_AT_THE_FAILURE_OF_UNDER_REINFORCED_SECTIONS??$ |
A. | 0.7% |
B. | 0.5% |
C. | 0.4% |
D. | 0.2% |
Answer» D. 0.2% | |
11. |
The_strain_compatibility_method_is_generally_applicable_for:$ |
A. | Under & over reinforcement sections |
B. | Partially prestressed sections |
C. | Mid span sections |
D. | Fully prestressed sections |
Answer» B. Partially prestressed sections | |
12. |
Who suggested a graphical version compatibility method? |
A. | Cornd |
B. | Morsch |
C. | Lin |
D. | Musy |
Answer» C. Lin | |
13. |
The number of steps to be followed in the strain compatibility method is: |
A. | 4 |
B. | 7 |
C. | 10 |
D. | 6 |
Answer» E. | |
14. |
The stress strain characteristics of steel used as prestressing tendons is necessary for: |
A. | Principal computation |
B. | Stress computation |
C. | Flexural computation |
D. | Strain computation |
Answer» D. Strain computation | |
15. |
The flexural compression stress in the compressive zone follows the: |
A. | Block curve |
B. | Anchorage curve |
C. | Mid span |
D. | Stress strain curve |
Answer» E. | |
16. |
The stress distribution in the compression zone of concrete can be defined by means of: |
A. | Specific gravity |
B. | Coefficient |
C. | Modulus of elasticity |
D. | Span moment |
Answer» C. Modulus of elasticity | |
17. |
The resistance of concrete is neglected at: |
A. | Tension |
B. | Compression |
C. | Shear |
D. | Breakage |
Answer» B. Compression | |
18. |
The distribution of concrete in strain compatibility method is: |
A. | Aligned |
B. | Curved |
C. | Linear |
D. | Bent |
Answer» D. Bent | |
19. |
The estimation based on compatibility of strain of prestressed concrete involves: |
A. | Flexural strength |
B. | Tensile strength |
C. | Compressive strength |
D. | Bulking strength |
Answer» B. Tensile strength | |