EGMP2201 PREPAWAY DUMPS, EGMP2201 NEW STUDY MATERIALS

EGMP2201 Prepaway Dumps, EGMP2201 New Study Materials

EGMP2201 Prepaway Dumps, EGMP2201 New Study Materials

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Tags: EGMP2201 Prepaway Dumps, EGMP2201 New Study Materials, EGMP2201 Valid Exam Topics, Test EGMP2201 Questions Answers, Braindump EGMP2201 Free

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Esri EGMP2201 Certification Exam is a valuable credential for professionals involved in Enterprise Geodata Management. EGMP2201 exam offers a comprehensive and rigorous assessment of an individual’s knowledge and skills in managing large geospatial datasets within the ArcGIS platform. A certification in this area can enhance one’s career opportunities, advance organizational goals, and establish a high degree of credibility in the geospatial industry.

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EGMP2201 New Study Materials & EGMP2201 Valid Exam Topics

The web-based Enterprise Geodata Management Professional 2201 (EGMP2201) practice test software can be used through browsers like Firefox, Safari, and Google Chrome. The customers don't need to download or install any excessive plugins or software in order to use the web-based Enterprise Geodata Management Professional 2201 (EGMP2201) practice exam format. The web-based Enterprise Geodata Management Professional 2201 (EGMP2201) practice test software format is supported by different operating systems like Mac, iOS, Linux, Windows, and Android.

Esri Enterprise Geodata Management Professional 2201 Sample Questions (Q51-Q56):

NEW QUESTION # 51
An organization needs to edit GIS data using web services. The data must be stored locally in the organization's servers. Specific business fields must be indexed in the database to help with performance.
Which storage should be used for thedata?

  • A. Hosted relational database
  • B. Enterprise geodatabase
  • C. File geodatabase

Answer: B

Explanation:
Comprehensive Detailed Step-by-Step Explanation with All Enterprise Geodata References:
AnEnterprise geodatabaseis the most appropriate choice for this scenario due to the following reasons:
1. Requirement to Store Data Locally on Organization's Servers
* AnEnterprise geodatabaseallows organizations to store GIS data locally in their own database management systems (DBMS), such as PostgreSQL, SQL Server, or Oracle.
* This meets the requirement of maintaining control over data storage and ensuring the data resides within the organization's infrastructure.
2. Editing GIS Data via Web Services
* Enterprise geodatabases seamlessly integrate with ArcGIS Server, enabling data editing via web services.
* Organizations can publish feature services to allow authorized users to edit GIS data in real-time or in a disconnected environment (via sync).
* These services support advanced editing workflows, including versioning and conflict resolution.
3. Indexing Specific Business Fields for Performance
* Enterprise geodatabases offer robust indexing options to enhance query and editing performance.
* You can:
* Create attribute indexeson fields that are frequently queried.
* Usespatial indexesto improve the speed of spatial queries.
* This level of customization helps meet the performance demands of specific business workflows.
4. Advantages Over Other Storage Options
* File Geodatabase:
* While it is suitable for smaller datasets and local storage, it does not support multi-user editing, integration with web services, or advanced indexing for business fields.
* Hosted Relational Database:
* This option is part of ArcGIS Online or ArcGIS Enterprise managed services and stores data in the cloud, which contradicts the requirement for local storage.
* It also does not provide the same level of control or indexing capabilities as an enterprise geodatabase.
References from Esri Documentation and Learning Resources:
* Enterprise Geodatabases-ArcGIS Pro Documentation
* Configuring Indexes in Geodatabases
* Publishing Feature Services for Editing
Conclusion:
AnEnterprise geodatabasenot only meets all the stated requirements (local storage, web service editing, and indexed fields for performance) but also provides additional scalability, security, and multi-user editing capabilities.


NEW QUESTION # 52
An organization using ArcGIS Enterprise needs to make a map with 10 million features viewable in ArcGIS Online. The data must be kept up to date from an enterprise geodatabase.
Which replication option should the GIS administrator use?

  • A. Distributed collaboration
  • B. Delete and Append the data
  • C. Geodatabase replication

Answer: C

Explanation:
Understanding the Scenario:
* The organization needs to make 10 million features accessible in ArcGIS Online.
* The dataset must remain synchronized with the enterprise geodatabase to ensure it is up to date.
Replication Options Overview:
* Distributed Collaboration:Distributed collaboration enables sharing data across ArcGIS Enterprise and ArcGIS Online. However, it is not ideal for managing large datasets with frequent updates like this scenario.
* Geodatabase Replication:
* Designed for synchronizing data between enterprise geodatabases.
* Supports one-way, two-way, or checkout replication to ensure updates are consistently transferred.
* The best option for synchronizing a large dataset like this with ArcGIS Online via publishing workflows.
* Delete and Append:This approach would involve overwriting the dataset frequently, which is inefficient and unsuitable for a dataset with 10 million features requiring frequent updates.
Steps to Implement Geodatabase Replication:
* Useone-way geodatabase replicationto replicate the dataset from the enterprise geodatabase to a secondary geodatabase.
* Publish the replicated data to ArcGIS Online.
* Set up periodic synchronization to ensure the ArcGIS Online data reflects updates from the enterprise geodatabase.
References:
* Esri Documentation: Geodatabase Replication.
* Best Practices for Large Datasets in ArcGIS Online: Sharing Large Datasets.
Why the Correct Answer is B:Geodatabase replication is explicitly designed for synchronizing large datasets between geodatabases, ensuring data consistency and compatibility with ArcGIS Online.


NEW QUESTION # 53
A user accidentally deletes an enterprise geodatabase feature dataset.
Which technology should be used to resolve the issue?

  • A. Archiving
  • B. High availability
  • C. Backup

Answer: C

Explanation:
Understanding the Scenario:
* An enterprise geodatabase feature dataset is accidentally deleted.
* The organization needs to recover the dataset to its original state.
Available Technologies:
* High Availability:High availability setups (e.g., failover systems) ensure continuous access to geodatabases during hardware or software failures. However, high availability does not restore accidentally deleted data.
* Backup:A backup is a snapshot of the geodatabase taken at a specific point in time. It allows administrators to restore deleted datasets or recover from data loss scenarios.
* Archiving:Archiving tracks historical edits in versioned geodatabases but does not provide recovery for accidentally deleted datasets.
Steps to Recover the Dataset:
* Identify the most recent backup of the enterprise geodatabase.
* Restore the geodatabase or extract the specific feature dataset from the backup.
* Verify the restored data and synchronize it with ongoing updates if necessary.
References:
* Esri Documentation: Backup and Restore.
* Best Practices for Data Protection: Guidelines for implementing regular backups to prevent data loss.
Why the Correct Answer is B:A backup is the most reliable solution for recovering an accidentally deleted feature dataset. High availability ensures uptime but does not address data recovery, and archiving tracks edits rather than preserving entire datasets.


NEW QUESTION # 54
A GIS analyst creates a database view. When the database view is loaded into the map, performance is suboptimal.
Which workflow should the analyst use?

  • A. Export to shapefile
  • B. Join to another feature class
  • C. Register with geodatabase

Answer: C

Explanation:
When a database view performs poorly in a map, registering it with the geodatabase can significantly improve performance.
1. Why Register with the Geodatabase?
* Registering a database view with the geodatabase integrates it into the geodatabase system, enabling:
* Proper use of spatial indexes.
* Optimization of queries by the geodatabase.
* Improved handling of large datasets by leveraging geodatabase-specific performance enhancements.
2. Why Not Other Options?
* Export to Shapefile:
* Shapefiles are a flat file format that lacks indexing and performance optimization. Using shapefiles is not suitable for complex queries or large datasets.
* Join to Another Feature Class:
* Joining data does not address the root cause of performance issues in the view and may further degrade performance if the join adds complexity.
Steps to Register a Database View with the Geodatabase:
* OpenArcGIS Proand connect to the database.
* Use theRegister with Geodatabasetool, specifying the database view.
* Configure the registration to include spatial indexes if the view contains spatial data.
* Save and test the performance of the registered view in a map.
Additional Notes:
* If the database view includes complex SQL logic, simplify the query if possible to further improve performance.
* Ensure that the underlying tables in the view are properly indexed.
References from Esri Documentation and Learning Resources:
* Registering Views with a Geodatabase
* Improving Map Performance with Views
Conclusion:
Registering the database view with the geodatabase enables spatial indexing and geodatabase optimization, addressing performance issues and ensuring efficient rendering and querying.


NEW QUESTION # 55
A large government organization mandates that all departments establish an equivalent data presence in a standby data center.
Which technology should the GIS database administrator recommend?

  • A. Database replication
  • B. Disconnected synchronization
  • C. Geodatabase replication

Answer: A

Explanation:
For a large government organization requiring an equivalent data presence in a standby data center,database replicationis the ideal solution.
1. What is Database Replication?
* Database replication involves duplicating data from a primary database to a secondary database in near real-time or on a scheduled basis.
* This ensures that both databases are synchronized and capable of serving data if one fails.
2. Why Database Replication Fits the Requirement
* Standby Data Center: Database replication provides a fully equivalent copy of the data in the secondary data center.
* High Availability and Disaster Recovery: If the primary database is unavailable, the standby database can immediately take over, ensuring business continuity.
3. Why Not Other Options?
* Geodatabase Replication:
* While it is designed for replicating geodatabase content, it is typically used for GIS-specific workflows, such as syncing field edits. It does not ensure equivalence for non-spatial components of the database.
* It is not ideal for large-scale, organization-wide replication needs.
* Disconnected Synchronization:
* This is used in offline editing workflows where devices sync their edits with a central database at a later time. It is not suitable for maintaining an equivalent standby database.
4. Types of Database Replication
* Asynchronous Replication: Updates are replicated at scheduled intervals, offering flexibility but with slight delays.
* Synchronous Replication: Updates occur in real-time, ensuring both databases are always identical.
Steps to Implement Database Replication:
* Configure the primary and standby databases in the organization's DBMS (e.g., SQL Server, PostgreSQL, Oracle).
* Use the DBMS's built-in replication tools (e.g., SQL Server's Always On, PostgreSQL's Streaming Replication).
* Set up monitoring to ensure the replication process is functioning correctly.
References from Esri Documentation and Learning Resources:
* Database Replication in DBMS
* Disaster Recovery with Database Replication
Conclusion:
Database replicationis the recommended technology to establish an equivalent data presence in a standby data center, ensuring high availability and disaster recovery.


NEW QUESTION # 56
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