For a corner angle greater than 60°, how are the anchors positioned?

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Multiple Choice

For a corner angle greater than 60°, how are the anchors positioned?

Explanation:
For a corner angle greater than 60°, the correct approach is to position the anchors such that the conductors are deadened in each direction. This means that the tension on the conductors is properly managed to ensure structural stability and prevent undue stress on the poles and anchors. By deadening the conductors, the system maintains proper alignment and reduces the risk of conductor sag or displacement due to external forces like wind or ice. In construction and utility work, it's critical to have the right positioning to manage electrical conductors effectively. This method minimizes the likelihood of failure and enhances the durability of the installation. In contrast, the other positioning methods would not provide the same levels of tension management or stability necessary for angles exceeding 60°. For instance, positioning anchors parallel to the line may not adequately address forces acting on the pole, while placing anchors close together could create instability rather than support. Ensuring equal distance from the pole could lead to imbalances that compromise the entire installation. Thus, positioning the anchors to deaden the conductors in each direction is the most effective and prudent choice.

For a corner angle greater than 60°, the correct approach is to position the anchors such that the conductors are deadened in each direction. This means that the tension on the conductors is properly managed to ensure structural stability and prevent undue stress on the poles and anchors. By deadening the conductors, the system maintains proper alignment and reduces the risk of conductor sag or displacement due to external forces like wind or ice.

In construction and utility work, it's critical to have the right positioning to manage electrical conductors effectively. This method minimizes the likelihood of failure and enhances the durability of the installation.

In contrast, the other positioning methods would not provide the same levels of tension management or stability necessary for angles exceeding 60°. For instance, positioning anchors parallel to the line may not adequately address forces acting on the pole, while placing anchors close together could create instability rather than support. Ensuring equal distance from the pole could lead to imbalances that compromise the entire installation. Thus, positioning the anchors to deaden the conductors in each direction is the most effective and prudent choice.

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