TECHNICIAN EXAMINATION WITH
QUESTIONS AND VERIFIED ANSWERS,
PLUS DETAILED RATIONALES/EXPERT
VERIFIED FOR GUARANTEED PASS
2026/LATEST UPDATE/INSTANT
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1.
A construction materials technician is performing quality-control testing
on a compacted aggregate base course. The primary purpose of
determining the in-place density is to:
A. Determine the aggregate's mineralogical composition
B. Verify that the material has achieved the specified degree of
compaction
C. Determine the aggregate's Los Angeles abrasion value
D. Establish the cement content of the base course
Answer: B. Verify that the material has achieved the specified
degree of compaction
Rationale: In-place density testing compares the density actually
achieved in the field with the applicable laboratory maximum dry
density or other specified reference. Adequate compaction is essential
because insufficient density can lead to excessive settlement, rutting,
reduced strength, and premature pavement failure.
2.
During a moisture-density test, a technician obtains a maximum dry
density of 121.0 pcf and an optimum moisture content of 11.5%. A field
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,test produces a dry density of 115.0 pcf. What is the approximate
percent compaction?
A. 90.1%
B. 92.5%
C. 95.0%
D. 97.2%
Answer: C. 95.0%
Rationale: Percent compaction is calculated as field dry density
divided by laboratory maximum dry density, multiplied by 100. Thus,
(115.0 ÷ 121.0) × 100 ≈ 95.0%. The moisture content must also be
considered because density alone does not establish whether the
material is being compacted near the appropriate moisture condition.
3.
Which condition would most likely cause a soil to be difficult to
compact even though the specified compactive effort is being applied?
A. Moisture content substantially above optimum
B. Properly graded aggregate at optimum moisture
C. Soil moisture content near optimum
D. Uniformly distributed compactive effort
Answer: A. Moisture content substantially above optimum
Rationale: Excess water can occupy the soil voids and prevent
particles from being brought into a stable, dense arrangement. The
result may be pumping, rutting, instability, or a condition commonly
described as a "wet" or "soupy" subgrade.
4.
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,A technician is conducting a sieve analysis of aggregate. What is the
principal purpose of the test?
A. Determine aggregate compressive strength
B. Determine particle-size distribution
C. Determine cement setting time
D. Determine asphalt binder viscosity
Answer: B. Determine particle-size distribution
Rationale: Sieve analysis separates aggregate into size fractions and
allows the technician to construct a gradation curve. Gradation affects
workability, stability, void structure, permeability, and the performance
of aggregate used in pavement and concrete mixtures.
5.
A representative aggregate sample is being prepared for sieve analysis.
Why is sample reduction important?
A. To deliberately remove undesirable particles
B. To produce a smaller sample that remains representative of the
original material
C. To increase the percentage passing the No. 200 sieve
D. To alter the aggregate's gradation before testing
Answer: B. To produce a smaller sample that remains
representative of the original material
Rationale: A laboratory test sample must accurately represent the
stockpile, truckload, or other material source from which it was
obtained. Improper reduction can introduce bias by preferentially
retaining or removing certain particle sizes.
6.
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, An aggregate sample contains a substantial amount of material passing
the No. 200 sieve. Which test is particularly useful for determining the
amount of material finer than the No. 200 sieve?
A. Wash sieve analysis
B. Slump test
C. Proctor compaction test
D. Air-content test
Answer: A. Wash sieve analysis
Rationale: Washing helps separate fine particles adhering to larger
aggregate particles and permits a more accurate determination of
material passing the No. 200 sieve. Proper control of fines is important
because excessive fines can influence water demand, coating,
workability, and pavement performance.
7.
What is the primary concern when a concrete technician obtains a slump
substantially higher than the project specification?
A. The concrete necessarily contains too much cement
B. The concrete may have excessive water or otherwise be outside the
approved mixture requirements
C. The aggregate must have excessive abrasion resistance
D. The concrete must have insufficient air entrainment
Answer: B. The concrete may have excessive water or otherwise be
outside the approved mixture requirements
Rationale: Slump is an indication of concrete consistency. An
unexpectedly high slump can indicate excess mixing water, admixture
effects, temperature-related behavior, or another mixture issue. The
technician should investigate rather than simply assuming that water
was added.
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