Complete Test Bank with 165 Practice
Questions, Answers & Detailed Explanations
for Dubai Municipality G+1 Contractors
Exam Success
Description:
Master the Dubai Municipality G+1 Contractor Exam with this comprehensive 2026/2027
test bank featuring 165 exam-style questions, accurate answers, and in-depth explanations.
Covers concrete technology, structural analysis, reinforcement detailing, formwork,
foundation design, soil mechanics, masonry construction, and Dubai Municipality
regulatory requirements. Updated for 2026/2027 academic standards with ACI and BS code
references. Perfect for contractors, engineers, and construction professionals preparing for
the DM G+1 certification. Practice with real exam scenarios and boost your pass rate.
Download now and ace your DM G+1 exam on the first attempt!
, DM G+1 Exam Test Bank 2026/2027 | 165 Questions & Answers
SECTION A: CONCRETE TECHNOLOGY AND MATERIALS
Question 1:
The recommended duration for proper curing of concrete in standard conditions is:
A) 7 days
B) 14 days
C) 21 days
D) 28 days
Answer: A) 7 days
Explanation: Proper curing of concrete should be continued for a minimum of 7 days under
normal conditions to ensure adequate hydration and strength development. While 28 days
represents the standard for achieving design strength, the minimum curing period specified in
most building codes is 7 days for ordinary Portland cement concrete under favorable temperature
conditions.
Question 2:
Which of the following is classified as a non-destructive test for concrete evaluation?
A) Core sampling
B) Compression test on cubes
C) Rebound hammer test
D) Tensile split test
Answer: C) Rebound hammer test
Explanation: The Rebound Schmidt hammer test is classified as a non-destructive testing
method used to assess concrete surface hardness and estimate compressive strength without
causing damage to the structural element. Core sampling, compression testing, and tensile split
testing all involve damaging or removing material from the structure.
,Question 3:
The modulus of elasticity of normal-weight concrete can be estimated using which expression?
A) (57000) × √(fc')
B) (4700) × √(fc')
C) 29000000 N/mm²
D) 210000 N/mm²
Answer: B) (4700) × √(fc')
Explanation: The modulus of elasticity of concrete is commonly estimated using the expression
Ec = 4700√(fc') in MPa units according to ACI 318 code provisions. This relationship accounts
for the compressive strength of concrete and provides a reasonable approximation for normal-
weight concrete mixtures.
Question 4:
When the temperature of fresh concrete exceeds 32°C during casting operations, which method
is most appropriate to reduce the temperature to acceptable levels?
A) Adding additional water
B) Adding fly ash
C) Adding silica fume
D) Adding ice to the mix
Answer: D) Adding ice to the mix
Explanation: When concrete temperature exceeds 32°C, adding ice to the mix is the most
effective method to reduce concrete temperature. This approach lowers the temperature without
significantly altering the water-cement ratio, maintaining workability and strength properties.
Adding extra water would increase the water-cement ratio and reduce strength.
, Question 5:
The Poisson's ratio for structural steel is approximately:
A) 0.20
B) 0.30
C) 0.40
D) 0.50
Answer: B) 0.30
Explanation: The Poisson's ratio for structural steel is typically taken as 0.30. This value
represents the ratio of transverse strain to axial strain when the material is subjected to uniaxial
stress within its elastic range.
Question 6:
What is the effect of excessive water addition to a concrete mix on its compressive strength?
A) Increases the compressive strength
B) Remains constant
C) Decreases the compressive strength
D) Has no relation to compressive strength
Answer: C) Decreases the compressive strength
Explanation: Adding excessive water to a concrete mix increases the water-cement ratio, which
directly reduces compressive strength. Higher water content creates more capillary voids in the
hardened cement paste, reducing density and resulting in lower strength. The relationship
between water-cement ratio and concrete strength is inversely proportional.
Question 7:
Which type of cement according to ASTM C150 is recommended when moderate sulfate
resistance is required for concrete elements?
A) Type I
B) Type II