Huawei H35-580_V2.0 Latest Mock Test, Test H35-580_V2.0 Pdf

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Huawei H35-580_V2.0 Exam Syllabus Topics:

SectionWeightObjectives
5G Network Planning Basics20%- 5G Site Solution Overview
- 5G Wireless Network Coverage and Capacity Estimation
- 5G Site Survey and Planning
5G Radio Network Basics20%- 5G Network Architecture and Interface
- Overview of 5G Basic Signaling Process
- 5G Overview
- 5G Physical Layer
5G Network Testing and Optimization30%- Radio Network Performance Management Basics
- 5G Network Test and Problem Analysis
- Analysis of 5G Radio Network Coverage Problems
5G Radio Network Basic Feature20%- 5G NR Scheduling Feature
- 5G NR Power Control Feature
- Uplink Fallback to LTE
- NSA Networking Based on EPC Feature
- 5G NR Mobility Management Feature
- 5G MIMO Feature
5G Base Station Basic Operation10%- Huawei 5G Base Station Product Overview
- 5G Base Station Basic Operation

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Huawei HCIA-5G-RNP&RNO V2.0 Sample Questions (Q66-Q71):

NEW QUESTION # 66
The scheduling priority of retransmitted data is higher than that of initially transmitted data.

Answer: B

Explanation:
HARQ retransmissions are prioritized to ensure reliability and reduce packet loss. Therefore, retransmitted data is generally scheduled before new transmissions.


NEW QUESTION # 67
During the downlink MCS adjustment process, the base station makes the adjustment based on which of the following measurements?

Answer: B

Explanation:
Link adaptation aims to maintain a target BLER. Therefore, MCS adjustments are primarily based on the observed PDSCH BLER performance.


NEW QUESTION # 68
In NSA networking, which of the following timers or constants is not used for downlink detection?

Answer: C

Explanation:
N300 is associated with RRC connection establishment procedures rather than radio link failure downlink detection.


NEW QUESTION # 69
For a 60 kHz SCS configuration, how many time slots are included in a radio frame?

Answer: D

Explanation:
For NR:
15 kHz → 10 slots/frame
30 kHz → 20 slots/frame
60 kHz → 40 slots/frame
120 kHz → 80 slots/frame
Thus, a 60 kHz SCS configuration contains 40 slots per radio frame.


NEW QUESTION # 70
How many RBs are included when a bandwidth of 100 MHz and a subcarrier spacing of 60 kHz are used in a
5G cell?

Answer: C

Explanation:
Explanation
To find the number of RBs in a 5G cell, we need to know the bandwidth and the subcarrier spacing of the cell.
The bandwidth is the total frequency range allocated for the cell, while the subcarrier spacing is the frequency separation between adjacent subcarriers in the cell. A RB is a group of 12 consecutive subcarriers in the frequency domain 12. Therefore, the number of RBs in a 5G cell can be calculated by dividing the bandwidth by the product of the subcarrier spacing and 12.
Given that the bandwidth is 100 MHz and the subcarrier spacing is 60 kHz, we can use the following formula to find the number of RBs:
Number of RBs = Bandwidth / (Subcarrier spacing * 12) Number of RBs = 100 MHz / (60 kHz * 12) Number of RBs = 100000 kHz / 720 kHz Number of RBs = 138.888...
However, since the number of RBs must be an integer, we need to round it down to the nearest multiple of
3 3. This is because the NR standard defines different frequency ranges for different subcarrier spacings, and each frequency range has a minimum and maximum number of RBs that are multiples of 3 4. For example, for subcarrier spacing of 60 kHz, the frequency range is from 24250.08 MHz to 52600.08 MHz, and the minimum and maximum number of RBs are 66 and 273, respectively.
Therefore, the closest multiple of 3 to 138.888... is 135. However, this number is not valid because it is lower than the minimum number of RBs for subcarrier spacing of 60 kHz. The next valid multiple of 3 is 273, which is also the maximum number of RBs for subcarrier spacing of 60 kHz. Therefore, the correct answer is C. 273.


NEW QUESTION # 71
......

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