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Nokia NRN-522 Exam is an online exam that is conducted by Pearson VUE, a leading provider of computer-based testing services. NRN-522 exam consists of 60 multiple-choice questions, and the candidate has 90 minutes to complete the exam. The passing score for the exam is 70%, and the exam fee is $200.

Nokia NRN-522 exam is designed for network professionals who want to advance their skills and knowledge in the field of 5G RAN (Radio Access Network) operations. Nokia 5G RAN Network Operations Expert certification exam covers a range of topics related to Nokia's 5G RAN network, including network planning and optimization, troubleshooting, performance management, and security. It is an ideal certification for professionals who work in the telecommunications industry and are responsible for managing and maintaining 5G networks.

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Prepare for the Nokia NRN-522 exam with ease using Pass4cram Nokia NRN-522 exam questions in a convenient PDF format. Our PDF files can be easily downloaded and accessed on various devices, including PCs, laptops, Macs, tablets, and smartphones. With the Nokia 5G RAN Network Operations Expert (NRN-522) PDF questions, you have the flexibility to study anytime and anywhere, eliminating the need for additional classes. Our comprehensive PDF guide contains all the essential information required to pass the NRN-522 in one shot.

Nokia NRN-522 (Nokia 5G RAN Network Operations Expert) Exam is designed to test the knowledge and skills of professionals working in the field of 5G RAN network operations. NRN-522 exam is an advanced level certification that is ideal for individuals who have completed the Nokia 5G NR certification and have a few years of experience working in the 5G RAN network domain.

Nokia 5G RAN Network Operations Expert Sample Questions (Q58-Q63):

NEW QUESTION # 58
A NOC engineer increases the configuredMaxTxPower parameter for a 5G cell as part of a coverage improvement initiative. What is the most likely operational consequence of this change?

Answer: A

Explanation:
The configuredMaxTxPower parameter sets the maximum transmit power level the cell is permitted to use for its downlink transmissions, including reference signals and traffic channels. Increasing this value generally allows the cell's signal to reach further and penetrate obstacles more effectively, potentially expanding the effective coverage area and improving signal quality for UEs at the cell edge. However, because radio signals do not respect cell boundaries, a higher transmit power also means the cell's signal will be stronger when received by UEs and sensors in neighboring cell areas, which can increase co-channel or adjacent-channel interference - particularly relevant in dense deployments where cells are closely spaced. This trade-off means power changes should be planned carefully and their impact monitored through KPIs such as SINR and throughput in both the target cell and its neighbors. The parameter has no direct effect on software version, bandwidth configuration, or neighbor relation status, which are governed independently.


NEW QUESTION # 59
After exhausting standard remote troubleshooting steps for a persistent Major alarm that remains unresolved, what is the appropriate NOC action?

Answer: B

Explanation:
When standard remote troubleshooting steps for a persistent Major alarm have been exhausted without resolution, the appropriate NOC action is to follow the organization's defined escalation procedures - this may involve escalating to a higher-tier technical support team, a specialist engineering group, or field operations for a possible site visit, depending on the nature of the fault. Critically, the engineer should document the troubleshooting steps already performed, observations made, and relevant data gathered (alarm history, performance data, configuration checks), so the receiving team can proceed efficiently without repeating completed work. Ignoring the alarm leaves a genuine network issue unaddressed and risks breaching service level agreements. Deleting the alarm from NetAct does not resolve the underlying fault and removes valuable diagnostic history. Locking all cells across the entire network is a drastic, disproportionate action that would itself cause a massive outage and is never an appropriate response to a single persistent alarm.


NEW QUESTION # 60
Which NetAct Fault Management view should a NOC engineer use to see alarms that are currently outstanding and affecting the network, as opposed to alarms that have already been resolved?

Answer: C

Explanation:
The Active Alarms list in NetAct Fault Management displays alarms that are currently outstanding (uncleared) and affecting the network in real time, making it the primary view NOC engineers monitor to identify ongoing issues requiring attention and to prioritize response based on severity. The Alarm History
/Log, in contrast, contains records of past alarms - including those already cleared - which is useful for trend analysis, post-incident reviews, and identifying recurring or intermittent faults over time, but is not the appropriate view for real-time triage of current network health. PM Reports relate to performance counters and KPI trends, not fault/alarm conditions, and the Software Inventory view shows deployed software versions across elements rather than fault information. For day-to-day monitoring and prioritizing immediate response efforts, the Active Alarms list is the correct view.


NEW QUESTION # 61
What does the term 'Single RAN' refer to in the context of Nokia AirScale base stations?

Answer: A

Explanation:
Single RAN describes Nokia's architecture in which a common AirScale hardware platform - including the System Module and compatible radio units - can run multiple radio access technologies (2G GSM, 3G WCDMA, 4G LTE, and 5G NR) concurrently on the same site, with the technology mix and capacity determined by software configuration and licensing rather than separate dedicated hardware per generation.
This dramatically simplifies site footprint, power usage, and lifecycle management, and allows 5G to be introduced onto existing sites by adding software/capacity rather than deploying entirely new cabinets. It is unrelated to antenna count limits or SIM card types, and AirScale platforms also support multi-operator RAN sharing, so it does not restrict usage to a single operator. For NOC personnel, Single RAN means configuration, fault, and software management for several technologies may be addressed through the same base station and management session.


NEW QUESTION # 62
A NOC engineer reviewing UE measurement reports notices that two physically adjacent 5G cells are broadcasting the identical Physical Cell Identity (PCI), causing UEs to receive ambiguous reference signals.
What is this condition called, and what is the appropriate remote corrective action?

Answer: C

Explanation:
A PCI collision occurs when two neighboring (geographically adjacent or mutually visible) cells are configured with the same Physical Cell Identity, causing UEs to be unable to reliably distinguish between them based on their synchronization and reference signals. This leads to degraded reference signal measurements, failed handovers, and potential interference between the two cells' signals. This is distinct from PCI confusion, where two non-adjacent cells that share a PCI are both neighbors of a third common cell, creating ambiguity during handover target selection even though the two same-PCI cells are not directly adjacent. The correct remediation for a PCI collision is a PCI replanning exercise, reassigning one of the conflicting cells to a unique PCI value that avoids both direct reuse with its neighbors and problematic modulo relationships that affect reference signal sequences. This is typically performed remotely via configuration management without requiring a site visit.


NEW QUESTION # 63
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