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SAP Certified Associate - Data Engineer - SAP BW/4HANA Sample Questions (Q17-Q22):
NEW QUESTION # 17
Which options do you have to combine data from SAP BW bridge a customer space in SAP Datasphere core?
Note: There are 2 correct answers to this question.
- A. *Import objects from the customer space to the SAP BW bridge space.
*Create additional views in the SAP BW bridge space to combine data. - B. *Import SAP BW bridge objects to the SAP BW bridge space.
*Share the generated remote tables with the customer space.
*Create additional views in the customer space to combine data. - C. *Import SAP BW bridge objects to the customer space.
*Create additional views in the customer space to combine data. - D. *Import SAP BW bridge objects to the SAP BW bridge space.
*Create additional views in the customer space.
*Share the created views with the SAP BW bridge space to combine data.
Answer: B,C
Explanation:
Combining data from SAP BW Bridge and the customer space in SAP Datasphere Core requires careful planning to ensure seamless integration and efficient data access. Let's analyze each option to determine why A and B are correct:
* Explanation:
* Step 1: Importing SAP BW Bridge objects into the SAP BW Bridge space ensures that the data remains organized and aligned with its source.
* Step 2: Sharing the generated remote tables with the customer space allows the customer space to access the data without duplicating it.
* Step 3: Creating additional views in the customer space enables users to combine the shared data with other datasets in the customer space.
* This approach leverages the concept of "remote tables" in SAP Datasphere, which provides a virtual link to the data in the SAP BW Bridge space. It avoids unnecessary data replication and ensures efficient data access.
2. Option B: Import SAP BW bridge objects to the customer space and create views to combine data Explanation:
Step 1: Importing SAP BW Bridge objects directly into the customer space simplifies the data model by consolidating all required data in one location.
Step 2: Creating additional views in the customer space allows users to combine the imported data with other datasets within the same space.
Reference: This approach is suitable when the customer space is the primary workspace for data modeling and analysis. It eliminates the need for cross-space sharing but may involve some data duplication.
3. Option C: Import SAP BW bridge objects to the SAP BW bridge space, create views in the customer space, and share views with the SAP BW bridge spaceExplanation: Sharing views created in the customer space back to the SAP BW Bridge space is not a standard practice. Views in SAP Datasphere are typically used within the space where they are created, and sharing them across spaces can lead to complexity and inefficiency.
Reference: SAP Datasphere emphasizes clear separation between spaces to maintain governance and performance. Cross-space sharing of views is not supported or recommended.
4. Option D: Import objects from the customer space to the SAP BW bridge space and create views to combine dataExplanation: Importing objects from the customer space into the SAP BW Bridge space reverses the typical data flow and introduces unnecessary complexity. The SAP BW Bridge space is designed to host data from SAP BW Bridge, while the customer space is intended for custom data modeling and integration.
Reference: SAP Datasphere follows a unidirectional flow where data from SAP BW Bridge is shared with the customer space, not the other way around.
NEW QUESTION # 18
Which layer of the layered scalable architecture (LSA++) of SAP BW/4HANA is designed as the main storage for harmonized consistent data?
- A. Flexible Enterprise Data Warehouse Core layer
- B. Open Operational Data Store layer
- C. Virtual Data Mart layer
- D. Data Acquisition layer
Answer: A
Explanation:
TheLayered Scalable Architecture (LSA++)of SAP BW/4HANA is a modern data warehousing architecture designed to simplify and optimize the data modeling process. It provides a structured approach to organizing data layers, ensuring scalability, flexibility, and consistency in data management. Each layer in the LSA++ architecture serves a specific purpose, and understanding these layers is critical for designing an efficient SAP BW/4HANA system.
* LSA++ Overview:The LSA++ architecture replaces the traditional Layered Scalable Architecture (LSA) with a more streamlined and flexible design. It reduces complexity by eliminating unnecessary layers and focusing on core functionalities. The main layers in LSA++ include:
* Data Acquisition Layer: Handles raw data extraction and staging.
* Open Operational Data Store (ODS) Layer: Provides operational reporting and real-time analytics.
* Flexible Enterprise Data Warehouse (EDW) Core Layer: Acts as the central storage for harmonized and consistent data.
* Virtual Data Mart Layer: Enables virtual access to external data sources without physically storing the data.
* Flexible EDW Core Layer:TheFlexible EDW Core layeris the heart of the LSA++ architecture. It is designed to store harmonized, consistent, and reusable data that serves as the foundation for reporting, analytics, and downstream data marts. This layer ensures data quality, consistency, and alignment with business rules, making it the primary storage for enterprise-wide data.
* Other Layers:
* Data Acquisition Layer: Focuses on extracting and loading raw data from source systems into the staging area.It does not store harmonized or consistent data.
* Open ODS Layer: Provides operational reporting capabilities and supports real-time analytics.
However, it is not the main storage for harmonized data.
* Virtual Data Mart Layer: Enables virtual access to external data sources, such as SAP HANA views or third-party systems.It does not store data physically.
* Option A: Open Operational Data Store layerThis option is incorrect because the Open ODS layer is primarily used for operational reporting and real-time analytics. While it stores data, it is not the main storage for harmonized and consistent data.
* Option B: Data Acquisition layerThis option is incorrect because the Data Acquisition layer is responsible for extracting and staging raw data from source systems. It does not store harmonized or consistent data.
* Option C: Flexible Enterprise Data Warehouse Core layerThis option is correct because the Flexible EDW Core layer is specifically designed as the main storage for harmonized, consistent, and reusable data. It ensures data quality and alignment with business rules, making it the central repository for enterprise-wide analytics.
* Option D: Virtual Data Mart layerThis option is incorrect because the Virtual Data Mart layer provides virtual access to external data sources. It does not store data physically and is not the main storage for harmonized data.
* SAP BW/4HANA Modeling Guide: The official documentation highlights the role of the Flexible EDW Core layer as the central storage for harmonized and consistent data. It emphasizes the importance of this layer in ensuring data quality and reusability.
* SAP Note 2700850: This note explains the LSA++ architecture and its layers, providing detailed insights into the purpose and functionality of each layer.
* SAP Best Practices for BW/4HANA: SAP recommends using the Flexible EDW Core layer as the foundation for building enterprise-wide data models.It ensures scalability, flexibility, and consistency in data management.
Key Concepts:Verified Answer Explanation:SAP Documentation and References:Practical Implications:
When designing an SAP BW/4HANA system, it is essential to:
* Use the Flexible EDW Core layer as the central repository for harmonized and consistent data.
* Leverage the Open ODS layer for operational reporting and real-time analytics.
* Utilize the Virtual Data Mart layer for accessing external data sources without physical storage.
By adhering to these principles, you can ensure that your data architecture is aligned with best practices and optimized for performance and scalability.
References:
SAP BW/4HANA Modeling Guide
SAP Note 2700850: LSA++ Architecture and Layers
SAP Best Practices for BW/4HANA
NEW QUESTION # 19
Which request-based deletion is possible in a DataMart DataStore object?
- A. Only the most recent non-activated request in the inbound table
- B. Any non-activated request in the inbound table
- C. Only the most recent request in the active data table
- D. Any request in the active data table
Answer: C
Explanation:
In SAP BW/4HANA, aDataMart DataStore Object (DSO)is used to store detailed data for reporting and analysis. Request-based deletion allows you to remove specific data requests from the DSO. However, there are restrictions on which requests can be deleted, depending on whether they are in the inbound table or the active data table. Below is an explanation of the correct answer:
A). Only the most recent request in the active data tableIn a DataMart DSO, request-based deletion is possible only for themost recent requestin theactive data table. Once a request is activated, it moves from the inbound table to the active data table. To maintain data consistency, SAP BW/4HANA enforces the rule that only the most recent request in the active data table can be deleted. Deleting older requests would disrupt the integrity of the data.
* Steps to Delete a Request:
* Navigate to the DataStore Object in the SAP BW/4HANA environment.
* Identify the most recent request in the active data table.
* Use the request deletion functionality to remove the request.
* The SAP BW/4HANA Data Modeling Guide explicitly states that request-based deletion in the active data table is restricted to the most recent request to ensure data consistency.
Incorrect OptionsB. Any non-activated request in the inbound tableNon-activated requests reside in theinbound tableand can be deleted individually without restriction. However, this option is incorrect because the question specifically refers to theactive data table, not the inbound table.
Reference: The SAP BW/4HANA documentation confirms that non-activated requests in the inbound table can be deleted freely, but this is outside the scope of the question.
C). Only the most recent non-activated request in the inbound tableThis statement is incorrect because there is no restriction on deleting non-activated requests in the inbound table. All non-activated requests in the inbound table can be deleted individually, regardless of their order.
Reference: The SAP BW/4HANA Data Modeling Guide clarifies that non-activated requests in the inbound table do not have the same restrictions as those in the active data table.
D). Any request in the active data tableThis option is incorrect because SAP BW/4HANA does not allow the deletion of any request in the active data table. Only the most recent request can be deleted to maintain data integrity.
Reference: The SAP BW/4HANA Administration Guide explicitly prohibits the deletion of arbitrary requests in the active data table, as it could lead to inconsistencies.
ConclusionThe correct answer regarding request-based deletion in a DataMart DataStore Object is:Only the most recent request in the active data table.
This restriction ensures that data consistency is maintained while still allowing users to remove the latest data if needed.
NEW QUESTION # 20
For what reasons is the start process a special type of process in a process chain? Note: There are 2 correct answers to this question.
- A. It can be a successor to another process.
- B. Only one start process is allowed for each process chain.
- C. It is the only process that can be scheduled without a predecessor.
- D. It can be embedded in a Meta chain.
Answer: B,C
Explanation:
Thestart processin an SAP BW/4HANA process chain is a unique and essential component. It serves as the entry point for executing the chain and has specific characteristics that distinguish it from other processes.
Below is a detailed explanation of why the verified answers are correct.
* Process Chain Overview:A process chain in SAP BW/4HANA is a sequence of processes (e.g., data loads, transformations, reporting) that are executed in a predefined order. The start process initiates the execution of the chain.
* Start Process Characteristics:
* The start process is mandatory for every process chain.
* It determines when and how the process chain begins execution.
* It does not require a predecessor process to trigger its execution.
* Meta Chains:A meta chain is a higher-level process chain that controls the execution of multiple sub- process chains. While the start process can be part of a meta chain, this is not its defining characteristic.
Key Concepts:
* Option A: Only one start process is allowed for each process chain.
* Why Correct?Every process chain must have exactly one start process. This ensures that there is a single, unambiguous entry point for the chain. Multiple start processes would create ambiguity about where the chain begins.
* Option B: It can be embedded in a Meta chain.
* Why Incorrect?While the start process can technically be part of a meta chain, this is not a unique feature of the start process. Other processes in a chain can also be embedded in a meta chain, so this is not a distinguishing reason.
* Option C: It can be a successor to another process.
* Why Incorrect?The start process cannot have a predecessor because it is the first process in the chain. By definition, it initiates the chain and cannot depend on another process to trigger it.
* Option D: It is the only process that can be scheduled without a predecessor.
* Why Correct?The start process is unique in that it can be scheduled independently without requiring a predecessor. This allows the process chain to begin execution based on a schedule or manual trigger.
Verified Answer Explanation:
* SAP BW/4HANA Process Chain Guide:The guide explains the role of the start process in initiating a process chain and emphasizes that only one start process is allowed per chain.
* SAP Note 2700850:This note highlights the scheduling capabilities of the start process and clarifies that it does not require a predecessor.
* SAP Best Practices for Process Chains:SAP recommends using the start process as the sole entry point for process chains to ensure clarity and consistency in execution.
SAP Documentation and References:
NEW QUESTION # 21
In which ODP context is the operational delta queue (ODQ) managed by the target system?
- A. ODP_BW
- B. ODP_CDS
- C. ODP SAP
- D. ODP_HANA
Answer: A
Explanation:
In the context ofOperational Data Provisioning (ODP), theoperational delta queue (ODQ)is a critical component that manages delta records for incremental data extraction. The management of the ODQ depends on the specific ODP context, particularly whether the target system or source system is responsible for maintaining the delta queue.
* ODP_BW (Option A):
* In theODP_BWcontext, theoperational delta queue (ODQ)is managed by thetarget system(SAP BW/4HANA).
* This means that SAP BW/4HANA takes responsibility for tracking and managing delta records, ensuring that only new or changed data is extracted during subsequent loads.
* This approach is commonly used when the source system does not natively support delta management or when the target system needs more control over the delta handling process.
* ODP_SAP (Option B):In theODP_SAPcontext, thesource system(e.g., SAP ERP) manages the operational delta queue. This is the default behavior for SAP source systems, where the source system maintains the delta queue and provides delta records to the target system upon request.
* ODP_CDS (Option C):TheODP_CDScontext is used for extracting data from Core Data Services (CDS) views in SAP HANA or SAP S/4HANA. In this context, delta handling is typically managed by the source system (SAP HANA or S/4HANA) and not the target system.
* ODP_HANA (Option D):TheODP_HANAcontext is used for extracting data from SAP HANA-based sources. Similar to ODP_CDS, delta handling in this context is managed by the source system (SAP HANA) rather than the target system.
* ODP_BW:
* Delta queue is managed by the target system (SAP BW/4HANA).
* Suitable for scenarios where the source system does not support delta management or when the target system requires more control.
* ODP_SAP:
* Delta queue is managed by the source system (e.g., SAP ERP).
* Default context for SAP source systems.
* ODP_CDS and ODP_HANA:
* Delta handling is managed by the source system (SAP HANA or S/4HANA).
* SAP Note 2358900 - Operational Data Provisioning (ODP) in SAP BW/4HANA:This note provides an overview of ODP contexts and their respective delta handling mechanisms.
* SAP BW/4HANA Data Modeling Guide:This guide explains the differences between ODP contexts and how they impact delta management in SAP BW/4HANA.
* Link:SAP BW/4HANA Documentation
Why Other Options Are Incorrect:Key Points About ODP Contexts:References to SAP Data Engineer - Data Fabric:By understanding the ODP context, you can determine how delta records are managed and ensure that your data extraction processes are optimized for performance and accuracy.
NEW QUESTION # 22
......
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