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Esri Enterprise Geodata Management Professional 2201 Sample Questions (Q59-Q64):

NEW QUESTION # 59
A wells feature class has one row per well. A well_inspections table has one row for each time a well was inspected. All inspection dates need to be displayed as labels clustered around each well on the map.
Which kind of association should be used to meet this requirement?

  • A. Relationship class
  • B. Join
  • C. Relate

Answer: C

Explanation:
Scenario Overview:
The wells feature class has one row per well.
The well_inspections table has one row for each inspection of a well.
Inspection dates from the well_inspections table need to be displayed as labels clustered around each well on the map.
The goal is to establish a connection between these two datasets without permanently joining them, as the data is being displayed dynamically (inspection dates are clustered around the wells).
Relates in Geodatabases:
A relate is a type of table association in which tables are linked by a common key field but remain separate.
Relates allow for dynamic queries to retrieve related records without duplicating or permanently associating the data.
Using a relate, you can query all inspection dates for a specific well dynamically, display them on the map as labels, and preserve the integrity of both the wells and inspections datasets.
(ArcGIS Documentation: Relates)
Alternative Options:
Option A: Join
A join merges two tables into one virtual table, based on a shared key. However, this approach is static and inappropriate for displaying dynamically clustered labels since the tables would need to be rejoined after every update.
Option C: Relationship Class
A relationship class is a more permanent association that enforces rules between two datasets. It is ideal for maintaining relationships between data but is unnecessary for dynamically labeling inspection dates on the map.
Thus, a relate is the most efficient and appropriate option for this scenario.


NEW QUESTION # 60
An organization has a requirement to allow editing of feature classes in mobile and web apps. A database administrator will need to add indexes to feature classes to improve performance on common queries.
Where should these feature classes be stored?

  • A. Mobile geodatabase
  • B. File geodatabase
  • C. Enterprise geodatabase

Answer: C

Explanation:
Understanding the Scenario:
* The organization requires feature classes to beeditable in mobile and web apps.
* Performance optimization through indexing is also needed for common queries.
Feature Class Storage Options:
* Enterprise Geodatabase:
* Supports multiuser environments, making it suitable for mobile and web app editing.
* Allows indexing at the database level, which improves query performance for large datasets.
* Provides robust versioning, replication, and sync capabilities for mobile workflows.
* File Geodatabase:
* Supports single-user access and lacks enterprise-grade indexing and multiuser editing capabilities.
* Does not meet the requirements for web and mobile app editing.
* Mobile Geodatabase:
* Optimized for mobile apps but does not support the enterprise-level indexing and multiuser workflows required for this scenario.
Steps for Storing and Optimizing Feature Classes:
* Store the feature classes in an enterprise geodatabase.
* Create indexes on frequently queried columns to optimize performance for mobile and web app queries.
* Use tools likeArcGIS Proto publish feature services for mobile and web app editing.
References:
* Esri Documentation: Enterprise Geodatabases Overview.
* Indexing for Performance Optimization: Guidelines for improving query performance in enterprise environments.
Why the Correct Answer is A:Enterprise geodatabases are the only storage option that supports multiuser editing in mobile and web apps and provides advanced indexing capabilities. File and mobile geodatabases lack the necessary functionality for this use case.


NEW QUESTION # 61
A user in an organization is granted read/write access to the data. The user saves the username and password in a connection file for convenience. This user creates layer files that save visualization properties and organizes them in folders on the server for the viewers to access.
Which issue is caused by this workflow?

  • A. Viewers can add and delete fields
  • B. Viewers lose access to the data
  • C. Viewers are provided with editing access

Answer: C

Explanation:
Understanding the Scenario:
* A user saves a connection file withread/write credentialsand creates layer files for visualization.
* Viewers access these layer files, potentially exposing the saved credentials.
Key Issue with the Workflow:
* Saved Credentials in Connection File:Connection files can store usernames and passwords for convenience, but when shared, the credentials grant others the same level of access as the original user.
* Impact of Read/Write Credentials:Viewers can inadvertently perform edits (e.g., add/delete fields or modify data) because the layer files inherit the permissions of the stored connection file.
Steps to Resolve the Issue:
* Avoid saving credentials in the connection file or use a connection withread-only accessfor shared layers.
* Use proper publishing workflows to share layers with predefined permissions via feature or map services.
References:
* Esri Documentation: Sharing Layer Files.
* Managing User Access in ArcGIS: Best practices for securing connection files and controlling access levels.
Why the Correct Answer is C:Sharing layer files with stored credentials inadvertently grants viewers the same level of access as the user who created the connection file. This results in viewers being able to perform edits, violating intended data security policies.


NEW QUESTION # 62
An organization uses a two-way replica to share edits for a polygon feature class with a field office. After months of synchronizing edits, a schema change takes place using the following workflow;
* A new field called a legal_area is added to a polygon feature class in the parent geodatabase
* An editor uses the Calculate Geometry tool to calculate legal_area for each polygon
* The child geodatabase does not have the legal_area field in the polygon feature class
* The parent geodatabase synchronizes the replica to the child geodatabase What happens during synchronization?

  • A. An error message occurs
  • B. The synchronization adds the missing field
  • C. The synchronization succeeds

Answer: A

Explanation:
Understanding the Scenario:
* A two-way replica exists between a parent geodatabase and a child geodatabase to share edits.
* A schema change (adding the legal_area field) occurs in the parent geodatabase but is not applied to the child geodatabase.
* The parent synchronizes the replica, attempting to push changes that include edits to the new field.
Replica Synchronization Behavior:
* Schema Changes and Replication:Replication does not automatically synchronize schema changes such as adding new fields. Schema updates need to be manually applied to both parent and child geodatabases before synchronization.
* Conflict during Synchronization:If schema changes (like adding a field) are made in the parent geodatabase but not replicated in the child geodatabase, synchronization attempts to apply edits referencing the missing field. This results in an error because the child geodatabase does not recognize the new field.
References:
* Esri Documentation: Schema Changes and Replication.
* Error Handling in Synchronization: Guidance on managing synchronization issues due to schema mismatches.
Why the Correct Answer is A:During synchronization, an error occurs because the legal_area field does not exist in the child geodatabase. Synchronization cannot succeed unless both replicas have compatible schemas.


NEW QUESTION # 63
After running a Compress, the GIS administrator needs to check if the Adds and Deletes tables for Buildings are empty before unregistering as versioned.
What should be referenced by the GIS administrator?

  • A. gdbjtems
  • B. table_registry
  • C. sdejayers

Answer: C

Explanation:
To determine if theAddsandDeletestables for the "Buildings" dataset are empty before unregistering as versioned, the GIS administrator needs to reference thesde_layerstable.
1. Purpose of the sde_layers Table
* Thesde_layerstable tracks the relationship between base tables and the associated delta tables (Adds and Deletes).
* For each versioned dataset, the sde_layers table contains entries linking the dataset to its corresponding A and D tables (e.g., A_<ObjectID> and D_<ObjectID>).
2. Steps to Verify Adds and Deletes
* Identify theObjectIDof the Buildings dataset in thesde_layerstable.
* Query the Adds table (A_<ObjectID>) and Deletes table (D_<ObjectID>) associated with the Buildings dataset:
SELECT COUNT(*) FROM A_<ObjectID>;
SELECT COUNT(*) FROM D_<ObjectID>;
* If both queries return 0, the Adds and Deletes tables are empty, and it is safe to unregister the dataset as versioned.
3. Why Not Other Options?
* table_registry: This table tracks registered datasets but does not provide information about delta tables or their contents.
* gdb_items: This table stores metadata for datasets but does not have details on delta table contents.
References from Esri Documentation and Learning Resources:
* Compressing a Geodatabase-ArcGIS Pro Documentation
* Delta Tables in Versioned Geodatabases
Conclusion:
The GIS administrator must query thesde_layerstable to verify the Adds and Deletes tables before unregistering the dataset as versioned.


NEW QUESTION # 64
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