Exam Huawei H35-663 Lab Questions, Valid H35-663 Mock Test
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Huawei H35-663 certification exam covers a wide range of topics related to 5GtoB service planning and design. These topics include the basics of 5GtoB services, network architecture design, service planning and design, network optimization, and troubleshooting. H35-663 Exam is designed to test the candidate's understanding of these topics and their ability to apply this knowledge in real-world scenarios.
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Valid H35-663 Mock Test, H35-663 Valid Test Sample
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Huawei H35-663 (HCSP-Field-5GtoB Service Planning and Design V1.0) Exam is a certification exam that focuses on the planning and design of 5GtoB (Business) services. It is designed for individuals who are interested in becoming certified in the field of 5GtoB service planning and design. H35-663 exam is a great way for individuals to showcase their skills and knowledge in this area and to demonstrate their expertise to potential employers.
To take the Huawei H35-663 Exam, candidates must have a solid understanding of key 5G concepts, such as network slicing, edge computing, and virtualization. They must also be familiar with the latest 5G technologies and standards, including 3GPP Release 15 and 16. In addition, candidates should have experience in planning and designing 5G services for businesses, as well as a strong grasp of project management principles.
Huawei HCSP-Field-5GtoB Service Planning and Design V1.0 Sample Questions (Q41-Q46):
NEW QUESTION # 41
When designing a 5G network, what is the purpose of network slicing?
Answer: C
Explanation:
Network slicing is a key concept in 5G network design, and it involves dividing a single physical network into multiple virtual networks, each with its own unique set of characteristics and capabilities. Each virtual network, or "slice," can be tailored to the specific needs of different users, applications, or services, providing different levels of service and quality of experience.
Network slicing allows 5G networks to support a wide range of use cases, from massive IoT deployments to ultra-reliable low-latency applications, by providing dedicated network resources and QoS guarantees for each slice. This approach enables operators to maximize network efficiency and resource utilization, while also ensuring that each user or application receives the appropriate level of service.
In summary, the purpose of network slicing in 5G network design is to provide different levels of service to different users or applications, by dividing the network into multiple virtual networks, each with its own unique set of characteristics and capabilities.
NEW QUESTION # 42
What is the purpose of a Service Level Agreement (SLA) in 5G service planning and design?
Answer: D
Explanation:
The purpose of a Service Level Agreement (SLA) in 5G service planning and design is to define the quality of service expected by the customer.
An SLA is a contract between the network operator and the customer that defines the level of service to be provided. It specifies the performance metrics that the network operator must meet, such as network availability, reliability, and response time, as well as the consequences if the metrics are not met, such as service credits or penalties.
SLAs are important in 5G service planning and design because they help ensure that the network operator and the customer have a clear understanding of the quality of service expected, and provide a framework for managing the relationship between the two parties. By defining the expected service levels and the consequences if they are not met, SLAs can help improve customer satisfaction and trust, and can help the network operator prioritize network resources to meet the most critical service requirements.
NEW QUESTION # 43
What are the different types of 5G network services? Select all that apply.
Answer: C
Explanation:
All of the above are types of 5G network services. Enhanced Mobile Broadband (eMBB) offers high-speed data transfer for bandwidth-intensive applications such as streaming media and virtual reality. Ultra-Reliable and Low-Latency Communications (URLLC) provides reliable and low-latency connectivity for mission-critical applications such as remote surgery and autonomous driving. Massive Machine-Type Communications (mMTC) supports a large number of connected devices with low power consumption and low data rates. Advanced Proximity Services (APS) enable high-precision location-based services and support for device-to-device communication.
NEW QUESTION # 44
If an operator wants to optimize 5G network coverage, which of the following techniques should they use?
Answer: D
Explanation:
To optimize 5G network coverage, an operator can use both cell splitting and sectorization techniques.
Cell splitting involves dividing a large cell into smaller cells to improve coverage and capacity in areas with high user density. This technique can help reduce interference and improve network performance by allocating more resources to smaller cells.
Sectorization involves dividing a cell into multiple sectors, with each sector using a different set of frequencies or time slots. This technique can help improve network performance in areas with high traffic volumes by increasing the number of available channels and reducing interference.
By using both cell splitting and sectorization techniques, operators can optimize 5G network coverage and performance, especially in areas with high user density and heavy traffic volumes.
NEW QUESTION # 45
What are the different types of 5G network slicing? Select all that apply.
Answer: C
Explanation:
All of the above are types of 5G network slicing. Radio Access Network (RAN) slicing involves the allocation of dedicated radio resources to specific user groups or services. Core Network slicing involves the separation of network functions and resources to support specific service requirements. Transport Network slicing involves the partitioning of transport resources to support specific service requirements. Service Function chaining slicing involves the chaining of network functions to provide end-to-end services with specific characteristics.
NEW QUESTION # 46
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