What are the impurities added while manufacturing steel?
The main advantage, from my point of view, is that it may so happen that we may want to demolish a wall in the house for what so ever reason, but we can't dismantle or harm the slab since its a structural member. The second reason is that a slab may run continuously throughout the structure; hence wRead more
The main advantage, from my point of view, is that it may so happen that we may want to demolish a wall in the house for what so ever reason, but we can’t dismantle or harm the slab since its a structural member.
The second reason is that a slab may run continuously throughout the structure; hence we can lay straight cables throughout the structure and provide connection where ever required, but in case of walls, we may not find this convenient.
Also, if the walls are periphery or exterior walls, which may be directly exposed to rains, then it may cause Earthing issues.
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In steelmaking, impurities such as nitrogen, silicon, phosphorous, sulfur and excess carbon are removed from the source iron and alloying elements such as manganese, nickel, chromium, carbon, and vanadium are added to produce different grades of steel.
In steelmaking, impurities such as nitrogen, silicon, phosphorous, sulfur and excess carbon are removed from the source iron and alloying elements such as manganese, nickel, chromium, carbon, and vanadium are added to produce different grades of steel.
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