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Returns the result of subtracting the 'right' geometry from the 'left' geometry.
Usage
Returns
MultiPoint.difference(right, maxError, proj)
Geometry
Argument
Type
Details
this: left
Geometry
The geometry used as the left operand of the operation.
right
Geometry
The geometry used as the right operand of the operation.
maxError
ErrorMargin, default: null
The maximum amount of error tolerated when performing any necessary reprojection.
proj
Projection, default: null
The projection in which to perform the operation. If not specified, the operation will be performed in a spherical coordinate system, and linear distances will be in meters on the sphere.
[[["Easy to understand","easyToUnderstand","thumb-up"],["Solved my problem","solvedMyProblem","thumb-up"],["Other","otherUp","thumb-up"]],[["Missing the information I need","missingTheInformationINeed","thumb-down"],["Too complicated / too many steps","tooComplicatedTooManySteps","thumb-down"],["Out of date","outOfDate","thumb-down"],["Samples / code issue","samplesCodeIssue","thumb-down"],["Other","otherDown","thumb-down"]],["Last updated 2023-10-06 UTC."],[[["`difference()` returns the result of subtracting the 'right' geometry from the 'left' geometry, essentially removing the overlapping portion of the 'left' geometry that is also present in the 'right' geometry."],["This method can be applied to a MultiPoint geometry, allowing users to find the points in the MultiPoint that do not fall within the boundaries of another geometry."],["`maxError` and `proj` are optional parameters that can be used to control the accuracy and projection of the operation, respectively."]]],[]]