Deck 19: How to Use Distance Calculations and Cost Distance in Arcgis Pro
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Deck 19: How to Use Distance Calculations and Cost Distance in Arcgis Pro
1
In ArcGIS, which of the following tools will determine the least-cost path?
A) Path Finder
B) Cost Path
C) Cost Distance
D) Path Distance
A) Path Finder
B) Cost Path
C) Cost Distance
D) Path Distance
B
2
A lateral link between two grid cells (where one cell has a value of 7 and the other cell has a value of 10) has a cost of:
A) 7
B) (7 + 10) / 2
C) 7 * (1 + 10) / 2
D) 1.414 * 7
A) 7
B) (7 + 10) / 2
C) 7 * (1 + 10) / 2
D) 1.414 * 7
B
3
Which of the following procedures allows you to create a new grid by assigning new grid- cell values to an existing raster?
A) Recost
B) Reproject
C) Regroup
D) Reclass
A) Recost
B) Reproject
C) Regroup
D) Reclass
D
4
Euclidian distance measures:
A) Raster distance
B) Grid distance
C) Network distance
D) Straight-line distance
A) Raster distance
B) Grid distance
C) Network distance
D) Straight-line distance
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5
Which of the following operations assigns grid cells to their closest source grid cell?
A) Arrangement
B) Allocation
C) Reclassify
D) Regiongroup
A) Arrangement
B) Allocation
C) Reclassify
D) Regiongroup
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6
Which of the following procedures will group several grid-cell values together according to a classification scheme?
A) Slice
B) Reclassify
C) Regiongroup
D) Allocate
A) Slice
B) Reclassify
C) Regiongroup
D) Allocate
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7
The set of grid cells that represents the lowest value for accumulated cost to move from a source to a destination is:
A) Path distance
B) Least-cost path
C) Network path
D) Path Allocation
A) Path distance
B) Least-cost path
C) Network path
D) Path Allocation
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8
Euclidian distance is calculated by the:
A) Pythagorean Theorem
B) Dijkstra's Algorithm
C) Douglas-Peucker method
D) Euclid's proof of primes
A) Pythagorean Theorem
B) Dijkstra's Algorithm
C) Douglas-Peucker method
D) Euclid's proof of primes
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9
What is the purpose of a backlink raster?
A) To find the overall total transit cost distance of the path
B) To count the number of cells contributing to the shortest path
C) To determine the shortest path from a source to a cell
D) To backtrack along a pre-determined shortest path
A) To find the overall total transit cost distance of the path
B) To count the number of cells contributing to the shortest path
C) To determine the shortest path from a source to a cell
D) To backtrack along a pre-determined shortest path
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10
A distance raster is created by:
A) Computing the total distance from one edge of the raster to another
B) Figuring out the Euclidian distance from the center of a raster cell to an adjoining cell
C) Calculating the proximity of each raster cell to each other raster cell
D) Determining how far each cell in a raster is away from a feature
A) Computing the total distance from one edge of the raster to another
B) Figuring out the Euclidian distance from the center of a raster cell to an adjoining cell
C) Calculating the proximity of each raster cell to each other raster cell
D) Determining how far each cell in a raster is away from a feature
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11
A diagonal link between two grid cells (assuming both the grid cells have a value of 1) has a cost of:
A) 1.0
B) 1.414
C) (1.0 + 1.414) / 2
D) 1.414 * 2
A) 1.0
B) 1.414
C) (1.0 + 1.414) / 2
D) 1.414 * 2
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12
The total cost of traveling from a source to a grid cell is:
A) Accumulated distance
B) Impedance distance
C) Overland distance
D) Transit Cost distance
A) Accumulated distance
B) Impedance distance
C) Overland distance
D) Transit Cost distance
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