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RCC Structures Design

RCC Structures Design
The steel generally used in R.C.C. work, is

High tension steel
Stainless
High carbon steel
Mild steel

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RCC Structures Design
Piles are usually driven by

Single acting steam hammer
Drop hammer
Diesel operated hammer
All listed here

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RCC Structures Design
After pre-stressing process is completed, a loss of stress is due to

Elastic shortening of concrete
Shrinkage of concrete
Creep of concrete
All of the listed here

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RCC Structures Design
The width of the flange of a T-beam should be less than

One-third of the effective span of the T-beam
Distance between the centers of T-beam
Breadth of the rib plus twelve times the thickness of the slab
Least of the above

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RCC Structures Design
In the zone of R.C.C. beam where shear stress is less than 5 kg/cm², nominal reinforcement is provided at a pitch of

One-half lever arm of the section
Lever arm of the section
One-third lever arm of the section
One and half lever arm of the section

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RCC Structures Design
To ensure uniform pressure distribution, the thickness of the foundation, is

Decreased gradually towards the edge
Kept zero at the edge
Kept uniform throughout
Increased gradually towards the edge

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