Deck 7: How to Edit Data With Arcgis Pro
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Deck 7: How to Edit Data With Arcgis Pro
1
A geodatabase topology represents:
A) How landforms, contours, and landscape features are stored in a geodatabase
B) The object-oriented nature of connectivity, containment, and adjacency properties
C) How different feature datasets are stored in a hierarchy in a geodatabase
D) A set of rules applied to the feature classes of a feature dataset in order to remove errors
A) How landforms, contours, and landscape features are stored in a geodatabase
B) The object-oriented nature of connectivity, containment, and adjacency properties
C) How different feature datasets are stored in a hierarchy in a geodatabase
D) A set of rules applied to the feature classes of a feature dataset in order to remove errors
D
2
Which describes how closely the non-spatial features of a dataset match their real-world locations?
A) Logical consistency
B) Temporal accuracy
C) Attribute accuracy
D) Positional accuracy
A) Logical consistency
B) Temporal accuracy
C) Attribute accuracy
D) Positional accuracy
C
3
A node that incorrectly does not reach another line to intersect with it is considered:
A) A transverse point
B) A snap shortfall
C) An undershoot
D) An overshoot
A) A transverse point
B) A snap shortfall
C) An undershoot
D) An overshoot
C
4
When a vertex of a line goes beyond its target location, this is:
A) A topological line
B) A snap break
C) An overshoot
D) A tolerance error
A) A topological line
B) A snap break
C) An overshoot
D) A tolerance error
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5
A measurement for examining whether the same rules were used throughout a dataset describes:
A) Logical consistency
B) Temporal accuracy
C) Attribute accuracy
D) Positional accuracy
A) Logical consistency
B) Temporal accuracy
C) Attribute accuracy
D) Positional accuracy
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6
Which describes how closely the spatial features of a dataset match their real-world locations?
A) Logical consistency
B) Temporal accuracy
C) Attribute accuracy
D) Positional accuracy
A) Logical consistency
B) Temporal accuracy
C) Attribute accuracy
D) Positional accuracy
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7
The time period and currentness of a dataset describes:
A) Temporal accuracy
B) Logical consistency
C) Completeness
D) Attribute accuracy
A) Temporal accuracy
B) Logical consistency
C) Completeness
D) Attribute accuracy
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8
Always making a correct GPS measurement when constructing a GIS dataset refers to which of the following?
A) High accuracy, high precision
B) Low accuracy, high precision
C) Low accuracy, low precision
D) High accuracy, low precision
A) High accuracy, high precision
B) Low accuracy, high precision
C) Low accuracy, low precision
D) High accuracy, low precision
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9
Accuracy defines:
A) The amount of detail being used in a measurement
B) How closely a measurement represents the real-world items being measured
C) The error threshold (i.e., maximum allowable error) for a measurement
D) How often a measurement is made correctly
A) The amount of detail being used in a measurement
B) How closely a measurement represents the real-world items being measured
C) The error threshold (i.e., maximum allowable error) for a measurement
D) How often a measurement is made correctly
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10
Topology represents:
A) The study of Earth's landforms
B) How objects relate or connect to one another independent of their coordinates
C) How two or more objects occupy the same space
D) The study of ensuring high data quality
A) The study of Earth's landforms
B) How objects relate or connect to one another independent of their coordinates
C) How two or more objects occupy the same space
D) The study of ensuring high data quality
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11
The data sources and processes used in preparing a dataset describe its:
A) Feature source
B) Historical accuracy
C) Purpose
D) Lineage
A) Feature source
B) Historical accuracy
C) Purpose
D) Lineage
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12
In the snapping process:
A) The user drags a vertex within a pre-determined distance of another feature to snap the two items together.
B) Any vertices that are within a pre-determined radius of one another are automatically snapped.
C) Any vertex will automatically snap to its nearest line when snapping is activated.
D) A vertex must be first manually selected and split into two or more vertices prior to activating snapping.
A) The user drags a vertex within a pre-determined distance of another feature to snap the two items together.
B) Any vertices that are within a pre-determined radius of one another are automatically snapped.
C) Any vertex will automatically snap to its nearest line when snapping is activated.
D) A vertex must be first manually selected and split into two or more vertices prior to activating snapping.
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13
Polygons can be reshaped in ArcGIS by adjusting which of the following?
A) The vertices of the polygon
B) The attributes of the polygon
C) The shapefile of the polygon
D) The .prj file of the polygon
A) The vertices of the polygon
B) The attributes of the polygon
C) The shapefile of the polygon
D) The .prj file of the polygon
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14
How closely a vertex must be placed within a feature to activate snapping describes:
A) Topological Editing
B) Node Locking
C) Positional Accuracy
D) Snapping Tolerance
A) Topological Editing
B) Node Locking
C) Positional Accuracy
D) Snapping Tolerance
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15
If a dataset representing 50 water wells has 55 points in the layer, which error has occurred?
A) Attribute
B) Temporal
C) Commission
D) Omission
A) Attribute
B) Temporal
C) Commission
D) Omission
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16
Precision defines:
A) The amount of attributes being used in a measurement
B) How closely a measurement represents the real-world items being measured
C) The error threshold (i.e., maximum allowable error) for a measurement
D) How often a measurement is made correctly
A) The amount of attributes being used in a measurement
B) How closely a measurement represents the real-world items being measured
C) The error threshold (i.e., maximum allowable error) for a measurement
D) How often a measurement is made correctly
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17
Consistently making the same incorrect GPS measurement when constructing a GIS dataset refers to which of the following?
A) High accuracy, high precision
B) Low accuracy, high precision
C) Low accuracy, low precision
D) High accuracy, low precision
A) High accuracy, high precision
B) Low accuracy, high precision
C) Low accuracy, low precision
D) High accuracy, low precision
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