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Framework road change detection map updating

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The Angular change detection mechanism is much more transparent and easier to reason about than its equivalent in Angular 1.

But there are still situations (like when doing performance optimizations) when we really need to know what's going on under the hood.

The processing steps shown in the figure are identical to the traditional solution except the calculations are performed for each grid cell in the study area and the result is a map that identifies the percent change at each location (a decrease of 8.51% for the example location; red tones indicate decreased and green tones indicate increased animal activity).

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It provides an iterative processing environment by logically sequencing map analysis operations and involves: 1) retrieval of one or more map layers from the database, 2) processing that data as specified by the user, 3) creation of a new map containing the processing results, and ) storage of the new map for subsequent processing.

It's a generic mechanism which we can use to add extra functionality to the browser.

Angular uses Zones internally to trigger change detection, but another possible use would be to do application profiling, or keeping track of long stack traces that run across multiple VM turns.

The mathematical structure and classification scheme of Reclassify, Overlay, Distance and Neighbors form a conceptual framework that is easily adapted to modeling spatial relationships in both physical and abstract systems.

However, the ability to simulate various scenarios (e.g., steepness is twice as important as visual exposure and proximity to housing is four times more important than all other considerations) provides an opportunity to fully integrate spatial information into the decision-making process.