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[[["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complicated / too many steps","tooComplicatedTooManySteps","thumb-down"],["Out of date","outOfDate","thumb-down"],["Samples / code issue","samplesCodeIssue","thumb-down"],["Other","otherDown","thumb-down"]],["Last updated 2024-06-05 UTC."],[[["\u003cp\u003eReturns the bounding rectangle (Geometry) that encompasses the entire MultiLineString geometry.\u003c/p\u003e\n"],["\u003cp\u003eAccepts optional \u003ccode\u003emaxError\u003c/code\u003e and \u003ccode\u003eproj\u003c/code\u003e arguments for reprojection and output projection control.\u003c/p\u003e\n"],["\u003cp\u003e\u003ccode\u003emaxError\u003c/code\u003e manages the error tolerance during reprojection, while \u003ccode\u003eproj\u003c/code\u003e defines the output projection (defaults to EPSG:4326).\u003c/p\u003e\n"],["\u003cp\u003eUseful for determining the overall spatial extent of a MultiLineString.\u003c/p\u003e\n"]]],["The `bounds` method calculates and returns the bounding rectangle of a given geometry. It accepts optional `maxError` and `proj` arguments to specify error tolerance and projection, respectively, defaulting to `null` and `EPSG:4326`. The method is demonstrated using a `MultiLineString` object in both JavaScript and Python examples. These examples create a `MultiLineString`, compute its bounding rectangle, and display both geometries on a map.\n"],null,[]]