4.1 Name TWO reactions which take place during the hydration process of cement - NSC Civil Technology Civil Services - Question 4 - 2017 - Paper 1
Question 4
4.1 Name TWO reactions which take place during the hydration process of cement.
4.2 Briefly motivate why cement must not be stored longer than three months.
4.3 Na... show full transcript
Worked Solution & Example Answer:4.1 Name TWO reactions which take place during the hydration process of cement - NSC Civil Technology Civil Services - Question 4 - 2017 - Paper 1
Step 1
Name TWO reactions which take place during the hydration process of cement.
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Answer
Chemical reaction: When water is added to cement, a chemical reaction occurs leading to the formation of compounds such as calcium silicate hydrate (C-S-H), which is responsible for strength development.
Physical reaction: Water also causes the cement to bind and harden through a physical process, thus forming a solid mass.
Step 2
Briefly motivate why cement must not be stored longer than three months.
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Answer
Cement has a limited shelf life due to its propensity to absorb moisture from the air. If stored for more than three months, it may become lumpy or harden, losing its hydraulic properties and resulting in compromised strength and workability in concrete mixes.
Step 3
Name ONE purpose of lime in a mortar mix.
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Lime in a mortar mix improves workability and plasticity, making it easier to handle and apply. This is particularly beneficial when sand particles are insufficient, ensuring smoother application and better adhesion.
Step 4
Which ingredient is first put into the concrete mixer when concrete must be mixed?
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The first ingredient typically added to the concrete mixer is aggregates, such as gravel or stone, to provide the bulk of the concrete mix.
Step 5
Name THREE methods that can be used for curing concrete.
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Retaining formwork: Keeping the formwork on the cast concrete to retain moisture.
Covers: Using wet burlap or plastic sheeting to cover the concrete to minimize moisture loss.
Ponding: Creating ponds of water on the surface of the concrete to ensure continuous hydration.
Step 6
Briefly motivate why the cube test must be performed on concrete.
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The cube test is performed to determine the compressive strength of concrete. This test ensures that the concrete mix has been properly formulated and cured, and helps verify that the concrete will perform adequately under load.
Step 7
Name TWO uses of each of the following materials in the construction trade:
4.7.1 Copper
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Electrical wires: Used for wiring systems due to its excellent electrical conductivity.
Water pipes: Utilized in plumbing for its anti-corrosive properties.
Step 8
4.7.2 Zink
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Alloy material: Used to strengthen other metals in various structural applications.
Roofing sheets: Employed in construction for roofing, providing durability and weather resistance.
Step 9
Make a neat sketch to illustrate the profile of channel iron.
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(Insert a sketch here) The channel iron typically resembles a 'C' shape, which provides strength and support in construction applications.
Step 10
Name THREE properties of a good preservative for wood.
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Easily absorbed: The preservative should penetrate the wood fibers effectively.
Non-toxic: It should not pose harmful effects to humans or the environment.
Resistant to water: The preservative should help protect wood from moisture damage and decay.
Step 11
Briefly describe the composition of plywood.
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Plywood is composed of multiple layers, or 'plies', of thin veneer sheets that are glued together. The direction of the grain in each layer is alternated to enhance strength and stability, reducing the risk of warping.
Step 12
Use the quantity list on ANSWER SHEET A and determine the volume of concrete which will be needed for a floor with a length of 6 m, width of 3 m and thickness of 75 mm.
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To find the volume of concrete needed:
extVolume=extLengthimesextWidthimesextThickness
Converting thickness into meters: 75 mm = 0.075 m.
Thus:
extVolume=6imes3imes0.075=1.35extm3
Step 13
Use the quantity list on ANSWER SHEET A and determine the number of bricks which will be needed for a cavity wall with a height of 4 m and a length of 2.4 m.
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To find the number of bricks needed, first calculate the area of the wall:
extArea=extHeightimesextLength=4imes2.4=9.6extm2
Assuming standard brick size is approximately 0.2 m²:
ext{Number of bricks} = rac{ ext{Area}}{ ext{Area of one brick}} = rac{9.6}{0.2} = 48 ext{ bricks}