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WorksheetsBUILDING TECHNOLOGY LONG QUIZ
Total questions: 30
Worksheet time: 15mins
1. A mortar of cementitious material ( lime, gypsum or
cement), sand and water which is applied in coats (layers)
to masonry surfaces, lath or various types of plaster board
to give a hard finish surface to interior or exterior walls
and ceilings.
a. Plaster
b. Cement mortar
c. Lime mortar
d. Gypsum plaster
2. Plaster of Paris mixed with clay, lime and other materials
in combinations covered by trademarks or patents
a. Plaster
b. Cement mortar
c. Lime mortar
d. Gypsum plaster
3. Gypsum plaster mixed with ingredients develop more adhesive
strength in combinations covered by trademarks or patents.
Used for interior finish for smooth concrete walls or
ceilings.
a. Gypsum plaster
b. Lightweight gypsum
c. Bonding plaster
d. High-strength gypsum
4. Plaster of Paris mixed with alum or borax or other
materials and burned (calcined) at 932°F. Mixed on the job
with water, lime putty and fine white sand as hard finish
for two and three-coat gypsum plaster. For interior use
only
a. Plaster of paris
b. Molding plaster
c. Keene’s cement
d. Portland cement
5. A brick or block masonry extending over the thickness of
the wall
a. Header
b. Stretcher
c. Soldier
d. Sailor
6. a black substance available in solid, semi-solid, or liquid
states at normal temperatures. Composed of mixed
indeterminate hydrocarbons, appreciably soluble only in
carbon disulfide or other volatile liquid hydrocarbon.
a. Silicone Sealant
b. Bituminous cement
c. Asphalt
d. Volatile cement
7. Composed of a variety of products from thin liquids to
heavy paste, often one or more asphalts dissolved in
solvent are filled with minerals and fibers to meet
requirements of different coating uses and provide tough,
durable films resistant to the passage of water vapor.
a. Integral waterproofing compounds
b. Asphalt emulsions
c. Cutback asphalts
d. Membrane waterproofing
8. Layers of waterproofing materials used in this method range
from ordinary tar paper laid with coal-tar pitch to
asbestos or asphalted felt laid in asphalt.
a. Integral waterproofing compounds
b. Asphalt emulsions
c. Cutback asphalts
d. Membrane waterproofing
9. prevent the passage of water even under conditions of
hydrostatic pressure. It is used where ground-water
conditions are severe or the need to protect subgrade space
from moisture is critical.
a. Liquid waterproofing
b. Dampproofing
c. Waterproofing
d. Cement plaster dampproofing
10. Another term for parge coating, is light gray in color
and troweled on.
a. Liquid waterproofing
b. Dampproofing
c. Waterproofing
d. Cement plaster dampproofing
11. In warmer regions, these may be used in roofs and walls
to reduce the flow of solar heat into the building. These
are thin sheets or panels faced with a bright metal foil
that blocks the transmission of infrared (heat) radiation.
a. Vapor retarders
b. Air barriers
c. Radiant barriers
d. Airtight Drywall approach
12. a membrane of metal foil, plastic, treated paper,or
primer paint placed on the warm side of thermal insulation
to prevent water vapor from entering the insulation and
condensing into liquid.
a. Vapor retarders
b. Air barriers
c. Radiant barriers
d. Airtight Drywall approach
13. They significantly reduce building energy consumption and
help protect enclosure assemblies from moisture
condensation by restricting the infiltration of humid air.
a. Vapor retarders
b. Air barriers
c. Radiant barriers
d. Airtight Drywall approach
14. In this method, meticulous attention is given to sealing
joints between these panels and framing members so as to
create a continuous air-impermeable boundary around
interior conditioned spaces
a. Vapor retarders
b. Air barriers
c. Radiant barriers
d. Airtight Drywall approach
15. Its role increases in importance in colder climates, as
thermal insulation levels increase, and for interior spaces
such as pools or spas with high humidity levels.
a. Vapor retarders
b. Air barriers
c. Radiant barriers
d. Airtight Drywall approach
16. Individual pieces of glass are known as ___
a. Glaze
b. Glazings
c. Lites
d. Glazier
17. This glass was first produced, in France, in the late
17th century. Molten glass was cast into frames, spread
into sheets by rollers, cooled, then ground flat and
polished with abrasives, first on one side and then the
other. The result was a costly glass of near-perfect
optical quality in sheets of unprecedentedly large size.
a. Float glass
b. Plate glass
c. Crown glass
d. Cylinder glass
18. Glass that has higher residual stresses than
heat-strengthened glass and is about four times as strong
in bending as annealed glass.
a. Heat treated glass
b. Heat strengthened glass
c. Laminated glass
d. Tempered glass
19. This glass is made by sandwiching a transparent polyvinyl
butyral (PVB) interlayer between sheets of glass and
bonding the three layers together
a. Heat treated glass
b. Heat strengthened glass
c. Laminated glass
d. Tempered glass
20. This glass is about twice as strong in bending as
annealed glass and is more resistant to thermal stress. It
usually has fewer distortions than tempered glass.
a. Heat treated glass
b. Heat strengthened glass
c. Laminated glass
d. Tempered glass
21.
a. Coursed Ashlar
b. Random Ashlar
c. Coursed Rubble
d. Random Rubble
22.
a. Coursed Ashlar
b. Random Ashlar
c. Coursed Rubble
d. Random Rubble
23.
a. Coursed Ashlar
b. Random Ashlar
c. Coursed Rubble
d. Random Rubble
24.
a. Coursed Ashlar
b. Random Ashlar
c. Coursed Rubble
d. Random Rubble
25.
a. Herringbone
b. Diagonal Herringbone
c. Chevron
d. Basket weave
26.
a. Ribbed split face unit
b. Ribbed face unit
c. Scored face unit
d. Flutted face unit
27.
a. Ribbed split face unit
b. Ribbed face unit
c. Scored face unit
d. Flutted face unit
28.
a. Ribbed split face unit
b. Ribbed face unit
c. Scored face unit
d. Flutted face unit
29.
a. Ribbed split face unit
b. Ribbed face unit
c. Scored face unit
d. Flutted face unit
30.
a. Split block
b. Slump block
c. Ribbed split block
d. Striated block
