Question:

Ratio between length of head rope and length of webbing

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The value of the hanging coefficient (\(E\)) typically ranges between \(0.3\) and \(0.9\), depending on the designed shape of the meshes for different gear types.
  • Length overall
  • Tailoring rate
  • Hanging coefficient
  • None
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The Correct Option is C

Solution and Explanation

Step 1: Understanding the Concept:
Hanging is the process of attaching a sheet of netting to a supporting rope (like a head rope or foot rope) during gear construction.
Key Formula or Approach:
The hanging coefficient (\(E\)) is calculated as: \[ E = \frac{\text{Length of the hung rope}}{\text{Fully stretched length of the netting}} \]

Step 2: Detailed Explanation:

The hanging coefficient (or hanging ratio) determines the shape of the mesh openings when the net is deployed.
A lower hanging coefficient results in narrower, diamond-shaped meshes, whereas a higher hanging coefficient keeps the meshes more open.

Step 3: Final Answer:

Therefore, the ratio between the length of the head rope and the length of the webbing is the hanging coefficient.
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