Which conductor is designed from many thin strands twisted together to provide flexibility?

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Multiple Choice

Which conductor is designed from many thin strands twisted together to provide flexibility?

Explanation:
Stranded conductors are designed from many thin strands twisted together to provide flexibility. This structure lets each strand move a bit relative to the others, so the overall wire can bend, twist, and route around obstacles without breaking or kinking. That makes stranded conductors ideal for cables that must flex or be handled frequently, like patch cords or flexible power cords. In contrast, a solid conductor is a single solid wire and is much stiffer, making it harder to bend. The other terms aren’t about conductor construction: one refers to a network channel type, another to a method of combining signals by frequency, and the last to digitizing analog signals—all unrelated to how a conductor is built for flexibility.

Stranded conductors are designed from many thin strands twisted together to provide flexibility. This structure lets each strand move a bit relative to the others, so the overall wire can bend, twist, and route around obstacles without breaking or kinking. That makes stranded conductors ideal for cables that must flex or be handled frequently, like patch cords or flexible power cords. In contrast, a solid conductor is a single solid wire and is much stiffer, making it harder to bend. The other terms aren’t about conductor construction: one refers to a network channel type, another to a method of combining signals by frequency, and the last to digitizing analog signals—all unrelated to how a conductor is built for flexibility.