2.1 Explain why a copper hammer should be used, and not a steel hammer, when hammer work is done where flammable vapours are present - NSC Agricultural Technology - Question 2 - 2016 - Paper 1
Question 2
2.1 Explain why a copper hammer should be used, and not a steel hammer, when hammer work is done where flammable vapours are present.
2.2 Give THREE reasons for ad... show full transcript
Worked Solution & Example Answer:2.1 Explain why a copper hammer should be used, and not a steel hammer, when hammer work is done where flammable vapours are present - NSC Agricultural Technology - Question 2 - 2016 - Paper 1
Step 1
Explain why a copper hammer should be used, and not a steel hammer, when hammer work is done where flammable vapours are present.
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Answer
A copper hammer should be used instead of a steel hammer because copper is softer, thus reducing the risk of generating sparks when it strikes hard surfaces. Steel hammers can create sparks due to their hardness, posing a fire hazard in environments with flammable vapours.
Step 2
Give THREE reasons for adding copper to metals to form an alloy.
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Increases Resistance to Corrosion: Copper enhances the corrosion resistance of the alloy.
Enhances Conductivity: The addition of copper improves the electrical and thermal conductivity of the alloy.
Hygienic Properties: Copper is naturally antimicrobial, making the alloys more hygienic for applications in environments that require cleanliness.
Step 3
Name the process that is followed to soften tempered brass products for further working processes.
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The process is called Annealing.
Step 4
Explain why these metal cans must be coated with a thin tin layer.
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The metal cans must be coated with a thin tin layer primarily to prevent corrosion and to protect the contents from contamination. The tin acts as a barrier against moisture and harmful substances, ensuring the food remains safe for consumption.
Step 5
Name THREE important properties of tin.
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Malleability: Tin can be easily worked into different shapes without breaking.
Corrosion Resistance: It resists oxidation and helps prevent rusting of the underlying metal.
Low Melting Point: Tin has a relatively low melting point, making it easy to work with during manufacturing processes.
Step 6
Name THREE elements that are added to steel when manufacturing stainless steel.
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Chromium: This element provides corrosion resistance.
Manganese: It improves the hardness and strength of the steel.
Nickel: Nickel enhances ductility and toughness.
Step 7
Suggest THREE aspects that should be considered when one needs to improve the cohesion properties of an adhesive.
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Surface Preparation: Ensuring surfaces are clean and free of contaminants before applying adhesive.
Curing Conditions: Maintaining appropriate temperature and humidity during the curing process to obtain optimal bond strength.
Adhesive Layer Thickness: Applying an optimal thickness of adhesive to improve the contact area between the surfaces.
Step 8
Name the substance that is added to resin to harden it when doing fiberglass repairs.
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The substance added to resin to harden it is called a hardener or *catalyst.
Step 9
Why is Vesconite extremely suitable for marine application?
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Vesconite is suitable for marine applications because it is resistant to water and does not corrode, making it durable and reliable even when submerged or exposed to harsh marine environments.
Step 10
Give THREE reasons why the machining of Vesconite holds no health risk for the person working with it.
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Non-toxic: Vesconite does not contain any harmful substances such as asbestos or hazardous fibres.
Dust Generation: It does not generate harmful dust when machined, minimizing inhalation risks.
No Harmful Emissions: Machining Vesconite does not release toxic gases or smoke.
Step 11
Discuss THREE reasons for choosing Vesconite over white metal when manufacturing bushes.
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Higher Design Load Limit: Vesconite can support a higher load than white metal.
Reduced Wear: It exhibits better wear resistance, leading to longer service life.
Shrinkage and Expansion: Vesconite does not shrink or expand when exposed to moisture, maintaining dimensional stability.
Step 12
Name TWO preventative measures that may be followed to prevent lightning from damaging the energiser of an electric fence.
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Install Lightning Protectors: This helps to redirect lightning strikes safely to the ground.
Disconnect the Battery: Turning off the energiser and disconnecting the battery during thunderstorms prevents damage.
Step 13
Describe TWO methods that can be used to protect a permanent electric fence energiser system from theft.
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Mounting Height: Install the energiser at a height that is out of reach of potential thieves.
Secure Housing: Use a metal or concrete structure to lock the energiser, making it difficult to steal.
Step 14
State THREE design requirements prescribed for the warning signs that are used on an electric fence.
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Size Specification: Signs must be at least 100 mm x 200 mm in size.
Color Requirements: The signs must have a black inscription on a yellow background.
Content Clarity: The warning must be clearly legible and include the phrase 'TAKE CARE - ELECTRIC FENCE!'
Step 15
State TWO solutions to overcome the problem of reduced earthing efficiency in electric fences due to very dry soil.
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