Civil Engineering A2Z Solution
Tuesday, 14 June 2016
Saturday, 11 June 2016
Basic Questions For Civil Engineering
Q.1 The foundation in which a
cantilever beam is provided to join two footings, is known as?
Ans..strap footing.
Ans..strap footing.
Q).2 The foundations are
placed below ground level, to increase?
Ans.
a. strength
b. work ability
c. stability of structure
a. strength
b. work ability
c. stability of structure
Q.3 Dado is usually provided
in?
Ans..bath rooms
Ans..bath rooms
Q.4 What are the cause of
failure or the error made in the design of the failed wall is ?
Ans.. The main reason of failure of a wall is overturning.
Ans.. The main reason of failure of a wall is overturning.
Q.5 A flat slab is capable to
withstand ?
Ans..A flat slab is capable to withstand concentrated loads.
Ans..A flat slab is capable to withstand concentrated loads.
Q.6 why we are using crank
length in rcc slab reinforcement?
Ans. We used Crank lengths because the moments at the edge strips are negative while that at middle point are positive, so reinforcement are alternatively equipped at the top and bottom respectively. so just to make connection between the reinforcement and for the slab to behave like a single unit by providing continuous bars, cranking is have to done in slabs.
Ans. We used Crank lengths because the moments at the edge strips are negative while that at middle point are positive, so reinforcement are alternatively equipped at the top and bottom respectively. so just to make connection between the reinforcement and for the slab to behave like a single unit by providing continuous bars, cranking is have to done in slabs.
Thursday, 2 June 2016
Basic Questions for interview of a Civil Engineer
Q.1 What is meant by elastic limit?
Ans. The maximum extent to which a solid may be stretched without permanent alteration of size or shape.
Ans. The maximum extent to which a solid may be stretched without permanent alteration of size or shape.
Q.2 What is the difference between BC and SDBC ?
Ans BC- Bituminous Concrete
SDBC- Semi Dense Bituminous Concrete
Ans BC- Bituminous Concrete
SDBC- Semi Dense Bituminous Concrete
Q.3 What is the basic difference in absorption, adsorption, and sorption?
Ans.Absorption is a phenomenon where an atom, molecule particle or ions enter any bulk phase like gas, solid or liquid. Absorption refers to the phenomenon where energy of photon is transferred to other entity.
Adsorption is quite same to absorption. It refers to the surface rather than a volume. Adsorption occurs when the gas or liquid solute accumulates on the surface of solid. A substance diffuses or mixed in liquid or solid to form a solution.
Q.4 What is the meaning of Fe415 ?
Ans Fe415 rafers for Ferrous material ie iron from which the reinforcement steel bars are manufactured. The number 415 indicates that the Yield Strength (tensile strength when it is subjected to elongation) of steel is 415 N/mm2.
The reinforcement steel bars used in RCC (Reinforced Cement Concrete) are designated in grades of Fe250, Fe415 or Fe500 depending on their Yield Strength.
Ans Fe415 rafers for Ferrous material ie iron from which the reinforcement steel bars are manufactured. The number 415 indicates that the Yield Strength (tensile strength when it is subjected to elongation) of steel is 415 N/mm2.
The reinforcement steel bars used in RCC (Reinforced Cement Concrete) are designated in grades of Fe250, Fe415 or Fe500 depending on their Yield Strength.
Q.5 How are the freeway bridges built?
Ans.The traffic that is likely to go over the bridge at a time is estimated and the cement, rocked with rubber stanchions is placed over the freeway to build a bridge. Off-ramp from freeway to the bridge and on-ramp from the bridge to the freeway are constructed. Cement slabs are placed one by one to build a platform.
Ans.The traffic that is likely to go over the bridge at a time is estimated and the cement, rocked with rubber stanchions is placed over the freeway to build a bridge. Off-ramp from freeway to the bridge and on-ramp from the bridge to the freeway are constructed. Cement slabs are placed one by one to build a platform.
Q.6 A flat slab is capable to withstand ?
Ans..concentrated loads.
Ans..concentrated loads.
Q.7 An R.C.C. column is treated as long if its slenderness ratio is greater than?
Ans..50
Ans..50
Q.8 Difference between routine maintenance and major maintenance for school facilities?
Ans..Routine maintenance is handling the minor repairs of the school campus. Major maintenance can be total reconstruction or renovation of the school.
Ans..Routine maintenance is handling the minor repairs of the school campus. Major maintenance can be total reconstruction or renovation of the school.
Q.9 Cantilever retaining walls can safely be used for a height not more than?
Ans..6 m
Ans..6 m
Q.10 State the applications of modulus of elasticity?
Ans...Modulus of elasticity is related to the flexibility of the material. The value of modulus of elasticity is pretty important in case of deflection of different materials used in building construction.
Ans...Modulus of elasticity is related to the flexibility of the material. The value of modulus of elasticity is pretty important in case of deflection of different materials used in building construction.
Q.11 The minimum number of main steel bars provided in R.C.C.?
Ans. .rectangular columns is 4
circular columns is 6
octagonal columns is 8
Ans. .rectangular columns is 4
circular columns is 6
octagonal columns is 8
Monday, 24 November 2014
Question / Answers For Interview Of a Civil Engineer (Part-1 Reinforcement)
(Part-1 Reinforcement)
Q. What is steel
reinforcement? Why is it required in a concrete structure?
Steel reinforcements are used, generally, in the form of bars
of circular cross section in concrete structure. They are like a skeleton in
human body. Plain concrete without steel or any other reinforcement is strong
in compression but weak in tension. Steel is one of the best forms of
reinforcements, to take care of those stresses and to strengthen concrete to
bear all kinds of loads.
Q. What is
bar-bending-schedule?
Bar-bending-schedule is the schedule of reinforcement bars
prepared in advance before cutting and bending of rebars. This schedule
contains all details of size, shape and dimension of rebars to be cut.
Q. What are the
different types of steel reinforcements being used in a reinforced concrete
structure?
Mild steel bars conforming to IS: 432 (Part I) and
Cold-worked steel high strength deformed bars conforming to IS: 1786 (grade Fe
415 and grade Fe 500, where 415 and 500 indicate yield stresses 415 N/mm2 and
500 N/mm2 respectively) are commonly used. Grade Fe 415 is being used most
commonly nowadays. This has limited the use of plain mild steel bars because of
higher yield stress and bond strength resulting in saving of steel quantity.
Some companies have brought thermo mechanically treated (TMT) and corrosion
resistant steel (CRS) bars with added features. Bars range in diameter from 6
to 50 mm. Cold-worked steel high strength deformed bars start from 8 mm
diameter. For general house constructions, bars of diameter 6 to 20 mm are
used.
Q. Why cover blocks
are required to be placed before concreting? What are their sizes?
Cover blocks are placed to prevent the steel rods from
getting exposed to the atmosphere, and to place and fix the reinforcements as
per the design drawings. Once the steel is exposed to the atmosphere, corrosion
starts. Sometimes it is commonly seen that the cover gets misplaced during the
concreting activity. To prevent this, tying of cover with steel bars using thin
steel wires called binding wires (projected from cover surface and placed
during making or casting of cover blocks) is recommended. Covers should be made
of cement sand mortar (1:3). Ideally, cover should have strength similar to the
surrounding concrete, with the least perimeter so that chances of water to
penetrate through periphery will be minimized. Provision of minimum covers as
per the Indian standards for durability of the whole structure should be
ensured. Shape of the cover blocks could be cubical or cylindrical. However,
cover indicates thickness of the cover block. Normally, cubical cover blocks
are used. As a thumb rule, minimum cover of 2” in footings, 1.5” in columns and
1” for other structures may be ensured.
Q. How important are
transverse reinforcements like links and stirrups? What precautions should
be taken while tying them?
Transverse reinforcements are very important. They not
only take care of structural requirements but also help main reinforcements to
remain in desired position. They play a very significant role while abrupt
changes or reversal of stresses like earthquake etc. They should be closely
spaced as per the drawing and properly tied to the main/longitudinal
reinforcement.
Q. What is a lap or
development length? Where and how should they be provided?
Lap length is the length overlap of bars tied to extend the
reinforcement length.. Lap length about 50 times the diameter of the bar is
considered safe. Laps of neighboring bar lengths should be staggered and should
not be provided at one level/line. At one cross section, a maximum of 50% bars
should be lapped. In case, required lap length is not available at junction
because of space and other constraints, bars can be joined with couplers or
welded (with correct choice of method of welding).
Q. What is anchorage
length?
This is the additional length of steel of one
structure required to be inserted in other at the junction. For example, main
bars of beam in column at beam column junction, column bars in footing etc. The
length requirement is similar to the lap length mentioned in previous question
or as per the design instructions.
Q. What is the
checklist for steel reinforcement before the placement/pour of concrete?
Reinforcement should be free from loose rust, oil paints,
mud etc. it should be cut, bent and fixed properly. The reinforcement shall be
placed and maintained in position by providing proper cover blocks, spacers,
supporting bars, laps etc. Reinforcements shall be placed and tied such that
concrete placement is possible without segregation, and compaction possible by
an immersion vibrator.
Q. For a given
diameter, how do we calculate the weight of steel per meter length of the steel
bar and vice versa?
For any steel reinforcement bar, weight per running meter is
equal to d2/162 Kg, where d is diameter of the bar in mm. For example, 10 mm
diameter bar will weigh 10×10/162 = 0.617 Kg/m.
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