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NEW QUESTION # 29
When creating an application architecture roadmap, the WHAT and WHERE are defined in a rather straightforward way, while the WHOM may differ by context. Multiple roadmap clusters may apply a variety of WHOM dimensions. For example, procurement vs. asset management. Which of the following definitions are correct? Note. There are 3 correct answers to this question.
Answer: B,C,D
Explanation:
Explanation
The WHOM dimension of an application architecture roadmap defines the different groups of stakeholders or users that are involved in or affected by the application. The WHOM dimension can vary depending on the context and the scope of the roadmap. For example, in the context of procurement vs. asset management, the WHOM dimension could include material groups/products, groups of persons, and working model as possible clusters. These clusters represent different categories of items, people, and locations that are relevant for the procurement and asset management processes. For example:
Material groups/products: This cluster could include different types of materials or products that are procured or managed by the organization, such as raw materials, spare parts, direct materials, or indirect materials. These categories could have different requirements, standards, or regulations that affect the application architecture.
Groups of persons: This cluster could include different types of people that are involved in or benefit from the procurement and asset management processes, such as permanent staff, contracted staff, or students. These groups could have different roles, responsibilities, or access rights that affect the application architecture.
Working model: This cluster could include different modes or locations of work that are supported by the procurement and asset management processes, such as home office, head quarter, or affiliate. These modes or locations could have different technical, legal, or organizational implications that affect the application architecture.
The other option (A) is not a correct definition of a WHOM dimension cluster, because it does not represent a group of stakeholders or users, but rather a group of assets or resources that are managed by the organization.
Asset classes/vehicles, production machines, and office equipment are examples of WHAT dimension clusters, which define the different types of assets or resources that are relevant for the application architecture.
Verified References: Strategic Architecture Roadmap for Composable Enterprise Applications, What is an application architecture?, Phase C: Information Systems Architectures - Application Architecture
NEW QUESTION # 30
When creating an application architecture roadmap, the WHAT and WHERE are defined in a rather straightforward way, while the WHOM may differ by context. Multiple roadmap clusters may apply a variety of WHOM dimensions. For example, procurement vs. asset management. Which of the following definitions are correct? Note. There are 3 correct answers to this question.
Answer: B,C,D
Explanation:
When creating an application architecture roadmap, the 'WHOM' dimension refers to the stakeholders or entities that will be impacted by or interact with the application. This dimension can vary greatly depending on the context and the specific focus areas of the roadmap. The correct answers that define the 'WHOM' dimension in various contexts are:
B . Material Groups/Products: This refers to the categorization of items such as raw materials, spare parts, direct materials, and indirect materials. These groups are relevant stakeholders in the context of procurement and supply chain management applications.
C . Groups of Persons/Business Expense: This includes different categories of personnel such as permanent staff, contracted staff, and students. It also encompasses different types of expenses like operational expenditure and capital expenditure, which are crucial considerations for financial management and human resource management applications.
D . Working model: This pertains to the various operational models such as home office, headquarters, and affiliates. These models are significant for applications that manage organizational structures, remote work capabilities, and location-based access to resources.
A . Asset Classes/Vehicles is not a correct answer as it describes types of assets rather than stakeholders or entities interacting with the application.
Reference:
SAP. (n.d.). SAP Enterprise Architecture Framework. SAP Community.
The Open Group. (2018). TOGAF Version 9.2: Enterprise Architecture Framework.
International Organization for Standardization. (2015). ISO/IEC/IEEE 42010:2011 - Systems and software engineering - Architecture description.
NEW QUESTION # 31
As a result of solution mapping, business capabilities might require services which partners have implemented in SAP BTP. Which SAP components and services, if any, are required to integrate such BTP partner services with an on-premise SAP S/4HANA system (hybrid scenario)?
Answer: B
Explanation:
In a hybrid scenario, where business capabilities require services which partners have implemented in SAP BTP and an on-premise SAP S/4HANA system, the following SAP components and services are required to integrate such BTP partner services with the on-premise system:
SAP Cloud Connector: The SAP Cloud Connector is a software component that allows you to connect your on-premise SAP systems to SAP BTP. The Cloud Connector provides a secure connection between your on-premise system and SAP BTP, and it also makes your on-premise system available to applications and services in SAP BTP.
SAP BTP Destination Service: The SAP BTP Destination Service is a service that provides a single point of entry for accessing on-premise systems from SAP BTP. The Destination Service makes it easy to manage and secure connections to on-premise systems, and it also provides a way to federate data from different on-premise systems.
In order to integrate BTP partner services with an on-premise SAP S/4HANA system, you will need to install the SAP Cloud Connector on your on-premise system and register the Cloud Connector with SAP BTP. You will also need to create a destination in the SAP BTP Destination Service for your on-premise system. Once you have done this, you will be able to access the on-premise system from applications and services in SAP BTP.
It is important to note that you can also use other SAP components to integrate on-premise systems with SAP BTP. However, the SAP Cloud Connector and the SAP BTP Destination Service are the most commonly used components for this purpose.
To integrate BTP partner services with an on-premise SAP S/4HANA system, you need to use the SAP Cloud Connector, which is a reverse proxy that establishes a secure connection between your on-premise system and your SAP BTP subaccount5. The Cloud Connector acts as a bridge between your on-premise network and a trusted subaccount on SAP BTP6. It allows you to access resources in your on-premise network from applications running on SAP BTP without exposing your internal landscape to the internet7.
To simplify the configuration and consumption of the Cloud Connector connection, you can use the SAP BTP Destination Service, which is a service that allows you to define and manage destinations for accessing remote systems from applications running on SAP BTP8. A destination is a set of properties that contains information such as the URL, authentication method, proxy type, and additional parameters of a remote system9. By using the Destination Service, you can centrally manage and securely store the connection details of your on-premise system and consume them from your BTP partner services.
Verified : 5: https://help.sap.com/viewer/cca91383641e40ffbe03bdc78f00f681/Cloud/en-US/e6c7616abb5710148cfcf3e75d96d596.html | 6: https://help.sap.com/viewer/cca91383641e40ffbe03bdc78f00f681/Cloud/en-US/8d3b28a7c1644a1c9d1ee165ec0a8cf4.html | 7: https://help.sap.com/viewer/cca91383641e40ffbe03bdc78f00f681/Cloud/en-US/e54cc8fbbb571014a4d9e7f02f9fa8e4.html | 8: https://help.sap.com/viewer/cca91383641e40ffbe03bdc78f00f681/Cloud/en-US/3cb7b81115c44cf594e0e3631291af94.html | 9: https://help.sap.com/viewer/cca91383641e40ffbe03bdc78f00f681/Cloud/en-US/e54f70d327154aa0a4ba36ce7ac49c83.html
NEW QUESTION # 32
Which programming model would you suggest that ABAP developers use when SAP extensions should be built following the clean-core strategy?
Answer: C
Explanation:
For ABAP developers looking to build SAP extensions that adhere to the clean-core strategy, the recommended programming model is the RESTful Application Programming (RAP) model. RAP is designed specifically for developing SAP Fiori applications and services with a focus on maintaining a clean and stable core while allowing for extensions.
RESTful Application Programming (RAP) offers a modern ABAP programming model that supports development both in the cloud and on-premise. It is centered around services that are exposed through RESTful APIs, making it ideal for creating clean, decoupled extensions that do not interfere with the core S/4HANA system. This approach supports the clean-core strategy by enabling developers to create extensions that communicate with the core system via stable, well-defined APIs without modifying the core system itself.
Option A, SAP Cloud Application Programming (CAP), although a robust model for cloud-native application development, is not specific to ABAP and does not inherently align with the ABAP developer environment. Option B, the SAP Classic Extensibility model, often involves direct modifications to the core system, which contradicts the principles of the clean-core strategy.
Reference:
SAP documentation on RESTful Application Programming Model.
SAP community articles and guides on developing with RAP.
NEW QUESTION # 33
Green Elk & Company is the world's leading manufacturer of agricultural and forestry machinery. The former company slogan "Elk always runs has recently been changed to "Elk feeds the world". One of Green Elk's strategic goals is to increase its revenue in the emerging markets of China, India, and other parts of Asia by 80% within three years. This requires a new business model that caters to significantly smaller farms with limited budgets. The CIO asks you, the Chief Enterprise Architect, to present an Architecture Roadmap that addresses the business challenge. According to the SAP Enterprise Architecture Framework, what is the best answer?
Answer: B
Explanation:
Explanation
The SAP Enterprise Architecture Framework (EAF) defines an Architecture Roadmap as a "high-level plan that describes the sequence of activities and deliverables required to achieve the target architecture." The roadmap should be based on the artifacts of the previous phases of the EAF, such as the Business Strategy Map, the Solution Concept, and the Baseline Business and Solution Architecture.
The first step in creating an Architecture Roadmap is to define the initiatives that will be needed to achieve the target architecture. These initiatives should be aligned with the business outcomes that the organization is trying to achieve.
The next step is to detail the business capabilities and solutions that will be needed to support the initiatives.
This will help to ensure that the roadmap is realistic and achievable.
Finally, the roadmap should be created in two versions: an outcome-based roadmap and an application-specific roadmap. The outcome-based roadmap will show how the initiatives will achieve the business outcomes. The application-specific roadmap will show how the solutions will be implemented.
By following these steps, you can create an Architecture Roadmap that will help you to achieve your organization's strategic goals.
Here are some of the benefits of creating an Architecture Roadmap:
It can help you to visualize the sequence of activities and deliverables required to achieve your goals.
It can help you to identify dependencies between activities and deliverables.
It can help you to track progress and to make adjustments as needed.
It can help you to communicate your plans to stakeholders.
Therefore, an Architecture Roadmap can be a valuable tool for managing complex transformations.
According to the SAP Enterprise Architecture Framework, which is a methodology and toolset by the German multinational software company SAP that helps enterprise architects define and implement an architecture strategy for their organizations, the steps involved in creating an Architecture Roadmap are:
Reuse the artifacts of previous phases as input for creating roadmaps. The previous phases of the architecture development cycle are: architecture vision, business architecture, information systems architecture, and technology architecture. The artifacts of these phases provide the information and guidance for defining the scope, objectives, stakeholders, requirements, constraints, and solutions of the architecture project. Some of the artifacts that can be reused for creating roadmaps are: stakeholder map, business strategy map, solution strategy, solution context diagram, solution component diagram, solution application use-case diagram, solution value flow diagram, etc.
Start with a roadmap construction table, by defining initiatives and business outcomes, and detailing the business capabilities and solutions. A roadmap construction table is a tool that helps to structure and organize the information and elements that are needed to create a roadmap. It consists of four columns:
initiatives, business outcomes, business capabilities, and solutions. Initiatives are the strategic actions or projects that are planned to achieve the business goals and drivers. Business outcomes are the measurable results or benefits that are expected from implementing the initiatives. Business capabilities are the skills, resources, and competencies that are required or need to mature to support the initiatives and outcomes. Solutions are the products or services that are used or delivered to enable the capabilities and outcomes.
Create two versions of a roadmap (outcome-based and application-specific). A roadmap is a visual representation of the transition architectures that will move the organization from its current state (baseline architecture) to its desired future state (target architecture). A roadmap shows the sequence and timing of the transition architectures, as well as the deliverables, resources, and risks associated with each transition architecture. There are two types of roadmaps that can be created: outcome-based and application-specific. An outcome-based roadmap focuses on the business outcomes that are achieved by implementing the transition architectures. An application-specific roadmap focuses on the solutions or applications that are implemented or changed by the transition architectures.
The other options (A, B, C) are not correct for how to present an Architecture Roadmap that addresses the business challenge because they either skip or misrepresent some of the steps in creating an Architecture Roadmap. For example:
Option A is not correct because it does not include reusing the artifacts of previous phases as input for creating roadmaps, which is an important step to ensure alignment and consistency with the architecture project. It also suggests creating a work breakdown structure instead of a roadmap construction table, which is not a tool in this framework.
Option B is not correct because it does not include creating two versions of a roadmap (outcome-based and application-specific), which is an important step to provide different perspectives and levels of detail for the roadmap. It also suggests focusing on the target architecture instead of the transition architectures, which is not a logical approach since the latter determine how to achieve the former.
Option C is not correct because it does not include starting with a roadmap construction table, which is an important step to structure and organize the information and elements that are needed to create a roadmap. It also suggests focusing on the business strategy map instead of the initiatives and outcomes, which is not a sufficient level of detail for creating a roadmap.
NEW QUESTION # 34
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