In GD&T, when evaluating a hole's true position relative to two datums, the axis must lie within what type of tolerance zone?

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Multiple Choice

In GD&T, when evaluating a hole's true position relative to two datums, the axis must lie within what type of tolerance zone?

Explanation:
For a hole’s true position relative to two datums, the axis is constrained by a cylindrical tolerance zone. This means the axis must lie within a right circular cylinder whose diameter equals the positional tolerance and whose axis is aligned with the hole axis. The cylinder provides a uniform radial limit in all directions perpendicular to the hole axis, which is exactly what a true position requirement needs when controling where the axis can be relative to the datums. Planar or conical zones would impose limits in planes or along a taper, and a spherical zone would bound distance from a point rather than radial displacement about the axis, so they don’t correctly represent the axis location in this context. Hence, a cylindrical tolerance zone is the appropriate choice.

For a hole’s true position relative to two datums, the axis is constrained by a cylindrical tolerance zone. This means the axis must lie within a right circular cylinder whose diameter equals the positional tolerance and whose axis is aligned with the hole axis. The cylinder provides a uniform radial limit in all directions perpendicular to the hole axis, which is exactly what a true position requirement needs when controling where the axis can be relative to the datums. Planar or conical zones would impose limits in planes or along a taper, and a spherical zone would bound distance from a point rather than radial displacement about the axis, so they don’t correctly represent the axis location in this context. Hence, a cylindrical tolerance zone is the appropriate choice.

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