100% PASS QUIZ EGMP2201 - VALID NEW ENTERPRISE GEODATA MANAGEMENT PROFESSIONAL 2201 TEST TEST

100% Pass Quiz EGMP2201 - Valid New Enterprise Geodata Management Professional 2201 Test Test

100% Pass Quiz EGMP2201 - Valid New Enterprise Geodata Management Professional 2201 Test Test

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Esri EGMP2201 (Enterprise Geodata Management Professional 2201) Exam is a certification program designed for professionals who work with geospatial data in an enterprise setting. Enterprise Geodata Management Professional 2201 certification program is offered by Esri, a leading company in the field of geographic information system (GIS) technology. The EGMP2201 Exam is designed to test an individual’s proficiency in geodata management, including data storage, analysis, and dissemination.

Esri EGMP2201 Certification Exam is a comprehensive and challenging exam that covers a wide range of topics related to geodata management. EGMP2201 exam consists of 100 multiple-choice questions and must be completed within three hours. The questions are designed to test the candidates' understanding of geodata management principles and their ability to apply these principles in real-world scenarios.

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Esri Enterprise Geodata Management Professional 2201 Sample Questions (Q36-Q41):

NEW QUESTION # 36
AGIS data administrator is creating new feature classes within an enterprise geodatabase using the following workflow:
* Five feature classes are added to a feature dataset
* The feature dataset is registered as versioned without the move-edits-to-base option
* Then another feature class is added to the same feature dataset
Users receive error messages when trying to edit any of the feature classes within the feature dataset.
What should the administrator do?

  • A. Switch the editing workflow to versioned editing with the move-edits-to-base option
  • B. Register as versioned on the feature dataset one additional time
  • C. Unregister as versioned on the feature dataset and then register as versioned again

Answer: C

Explanation:
Scenario Overview:
* Five feature classes are added to afeature dataset, which is registered as versionedwithout the move- edits-to-base option.
* Afterward, another feature class is added to the same feature dataset.
* Users encounter errors when trying to edit any feature class in the feature dataset.
Cause of the Problem:When a feature dataset is registered as versioned, all feature classes within it must maintain consistency in their versioning state. Adding a new feature class to a previously versioned feature dataset can disrupt the synchronization, causing errors during editing.
Solution:
* Unregister as versioned on the feature dataset:This removes versioning from all feature classes in the dataset, resetting their versioning state.
* Register the feature dataset as versioned again:This ensures all feature classes, including the newly added one, are correctly registered with the same versioning state.(ArcGIS Documentation: Registering Datasets as Versioned) Alternative Options:
* Option B:Registering the feature dataset again would not resolve the issue because versioning conflicts persist unless the entire feature dataset is unregistered and re-registered.
* Option C:Switching to the move-edits-to-base option is unnecessary and alters the editing workflow, which may not align with the current setup or user needs.
Thus, the administrator shouldunregister the feature dataset as versioned and re-register itto resolve the errors.


NEW QUESTION # 37
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. Relate
  • B. Relationship class
  • C. Join

Answer: A

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 # 38
Slow performance is observed on a query of an indexed attribute on a large feature class in an enterprise geodatabase.
* A SOL trace reveals that the attribute index is not being used in the query
* The indexed attribute values have a high degree of uniqueness
* The delta tables do not have very many rows
Which tool should be used to resolve this issue?

  • A. Compress Geodatabase
  • B. Rebuild Indexes
  • C. Analyze Datasets

Answer: B

Explanation:
When experiencing slow performance on a query of an indexed attribute in a large feature class within an enterprise geodatabase, and a SQL trace reveals that the attribute index is not being utilized despite the attribute values having a high degree of uniqueness and the delta tables containing few rows, the appropriate action is to rebuild the indexes.
Understanding Indexes in Enterprise Geodatabases:
Indexes are critical for enhancing query performance in databases. They allow the database management system (DBMS) to locate and retrieve data efficiently. Over time, as data is inserted, updated, or deleted, indexes can become fragmented or outdated, leading to suboptimal query performance.
ARCGIS PRO
Rebuilding Indexes:
The Rebuild Indexes tool in ArcGIS Pro is designed to rebuild existing attribute or spatial indexes in enterprise geodatabases. This process reorganizes the index structure, ensuring that the DBMS can effectively utilize the indexes during query execution.
ARCGIS PRO
Steps to Rebuild Indexes:
Access the Rebuild Indexes Tool:
In ArcGIS Pro, navigate to the Analysis tab and click on Tools.
In the Geoprocessing pane, search for and select the Rebuild Indexes tool.
Configure the Tool Parameters:
Input Database Connection: Specify the connection to your enterprise geodatabase.
Include System Tables: Decide whether to include system tables in the rebuild process. Including system tables can help maintain the overall health of the geodatabase but may increase processing time.
Execute the Tool:
Click Run to initiate the index rebuilding process. Monitor the progress and ensure the process completes without errors.
Alternative Options:
Compress Geodatabase: The Compress operation reduces the size of the geodatabase by removing redundant states and versions. While it can improve performance, it doesn't directly address index fragmentation.
Analyze Datasets: The Analyze Datasets tool updates database statistics, which helps the DBMS optimize query execution plans. However, if indexes are fragmented, analyzing datasets alone may not resolve performance issues.
Given the symptoms described-specifically, the attribute index not being used in queries-the most effective solution is to rebuild the indexes to ensure they are properly structured and utilized by the DBMS during query execution.


NEW QUESTION # 39
A database administrator needs to move the enterprise geodatabase to a new server. The new enterprise geodatabase must be kept intact.
Which process should be used?

  • A. Export to file geodatabase
  • B. Two-way replication
  • C. RDBMS export/import

Answer: C

Explanation:
To move an enterprise geodatabase to a new server while keeping it intact, theRDBMS export/importprocess is the appropriate method.
1. Why Use RDBMS Export/Import?
* Enterprise geodatabases are tightly integrated with the underlying RDBMS (e.g., SQL Server, PostgreSQL, Oracle). Exporting and importing the entire database ensures that:
* All geodatabase configurations (e.g., tables, indexes, metadata) are preserved.
* No data integrity is lost during the migration process.
* This method maintains the geodatabase's structure and relationships.
2. Why Not Other Options?
* Export to File Geodatabase:
* While exporting to a file geodatabase allows for data transfer, it does not preserve the enterprise geodatabase structure, including user permissions, versioning, and replication configurations.
* Two-Way Replication:
* Replication is designed for synchronizing data changes between geodatabases, not for moving an entire geodatabase to a new server. It may also leave some administrative configurations behind.
3. Steps for RDBMS Export/Import
* Export the Database:
* Use the RDBMS tools (e.g., pg_dump for PostgreSQL, SQL Server Management Studio) to create a full backup of the geodatabase.
* Ensure all related schemas, indexes, and metadata are included.
* Import to the New Server:
* Set up the RDBMS on the new server and configure it for enterprise geodatabases.
* Import the backup file to restore the geodatabase on the new server.
* Post-Migration Steps:
* Reconfigure connections in ArcGIS Pro or ArcGIS Server to point to the new geodatabase.
* Test to ensure all functionality works as expected.
References from Esri Documentation and Learning Resources:
* Backing Up and Restoring an Enterprise Geodatabase
* RDBMS Tools for Backup and Restore
Conclusion:
TheRDBMS export/importprocess ensures a complete migration of the enterprise geodatabase to a new server while preserving all configurations and data integrity.


NEW QUESTION # 40
A data owner creates a one-way replica parent-to-child for a single feature class to share data from a production geodatabase to a public-facing geodatabase.
* The data owner synchronizes once a week to share updated data
* In time, the data owner wants to add a new attribute field/field type and calculates new attribute values
* The data owner synchronizes the replicas, but the new field and values are not present in the child replica
* In the public-facing geodatabase, the data owner adds the same attribute field and field type
* The data owner synchronizes the replicas again, and the values are not replicated in the child replica How should the data owner resolve this issue?

  • A. Unregister the replica pairs, recreate the replica, and Synchronize Changes
  • B. Unregister the replica pair?, run Enable Replica Tracking and Synchronize Change?
  • C. Unregister the replica pairs, run Feature Compare and Synchronize Changes

Answer: A

Explanation:
Scenario Overview:
* A one-way replica from parent to child geodatabase is created for a single feature class.
* The data owner adds anew attribute fieldin the parent geodatabase, calculates values, and attempts to synchronize the replica.
* The new field and its values do not appear in the child replica, even after manually adding the field to the child geodatabase.
Why Recreate the Replica?
* The issue arises becauseschema changes(e.g., adding new fields) are not automatically propagated in one-way replication workflows. Synchronization only applies to data changes, not schema updates.
* To ensure the schema changes are recognized, thereplica pair must be recreatedwith the updated schema.(ArcGIS Documentation: Geodatabase Replication and Schema Changes) Steps to Resolve the Issue:
* Unregister the Replica:Remove the existing replica pair from both the parent and child geodatabases.
* Recreate the Replica:Create a new one-way replica between the parent and child geodatabases. This new replica will include the updated schema.
* Synchronize Changes:Perform synchronization to transfer data, including the new field and calculated values, to the child geodatabase.
Alternative Options:
* Option A:Enabling replica tracking does not address schema synchronization and would not resolve the issue.
* Option B:Running Feature Compare is helpful for analyzing schema differences but does not propagate schema changes.
Thus, the data owner mustunregister the replica pairs, recreate the replica with the updated schema, and synchronize changesto resolve the issue.


NEW QUESTION # 41
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