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Nokia 4A0-F10 Exam Syllabus Topics:

SectionObjectives
Nokia fixed access portfolio- Optical Network Terminals (ONTs)
- Home networking devices
- Lightspan FX and MF Optical Line Terminals
- FastMile FWA solutions
Management interfaces and automation- YANG data models
- CLI fundamentals
- NETCONF
- Telemetry and automation concepts
Service delivery and operations- High-Speed Internet (HSI)
- Network monitoring and troubleshooting
- Voice, Internet and IPTV services
- Service provisioning
Software Defined Access Network (SDAN)- Network topology and service health
- Corteca platform
- Subscriber and service management
- Altiplano Access Controller
Fixed network architectures and broadband access- Fixed Wireless Access (FWA)
- Broadband network architecture
- Optical Distribution Network (ODN)
- Passive Optical Networks (PON)
- FTTH and FTTx technologies

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Nokia Fixed Networks Fundamentals Sample Questions (Q27-Q32):

NEW QUESTION # 27
Which YANG node type represents multiple scalar values under the same node name without allowing child nodes?

Answer: C

Explanation:
A YANG leaf-list represents a sequence of scalar values of the same defined type. Like a leaf, each value is terminal and cannot contain child nodes. However, unlike a single leaf, a leaf-list can have multiple entries. A YANG list also supports multiple instances, but each list entry can contain child nodes and is normally identified by one or more key leaves. A container groups related child nodes but does not itself represent a repeated collection of scalar values. A choice defines alternative branches in a data model, allowing one set of nodes from the available cases to be selected. Correctly distinguishing these node types is important when interpreting YANG schemas used to configure and monitor access devices through model-driven management interfaces.


NEW QUESTION # 28
Which component of a typical Optical Distribution Network requires no electrical power to perform its primary function?

Answer: D

Explanation:
A passive optical splitter divides an incoming optical signal into multiple output paths without requiring electrical power. It is a fundamental component of the Optical Distribution Network connecting an OLT to multiple ONTs or ONUs. The splitter does not regenerate, amplify, or actively switch the optical signal. Consequently, splitting introduces optical loss that must be considered when calculating the PON power budget. The OLT and ONT are active devices because they require power to transmit, receive, process, and convert signals. A residential gateway also requires power to provide functions such as routing, firewall enforcement, DHCP, Ethernet switching, and Wi-Fi connectivity. The use of passive splitters reduces the need for powered equipment in the outside plant, which can simplify field maintenance and lower operational costs.


NEW QUESTION # 29
A QoS policy examines a packet's markings and assigns it to a forwarding class. Which QoS function is being performed?

Answer: C

Explanation:
Classification examines packet information and determines how the packet should be treated by the QoS system. The decision can use fields such as VLAN priority, Differentiated Services Code Point, protocol information, or interface context. After classification, the packet is assigned to an appropriate forwarding class and queue so that scheduling, congestion management, and other policies can provide the intended treatment. Shaping controls an outgoing rate by buffering excess traffic, while policing enforces a traffic profile by dropping or remarking nonconforming packets. Optical amplification increases optical signal power and is unrelated to packet classification. Effective classification is essential when a fixed-access network carries services with different requirements, such as voice, IPTV, management traffic, and best-effort Internet access.


NEW QUESTION # 30
Within the ETSI NFV management and orchestration architecture, which functional block manages virtualized compute, storage, and networking resources?

Answer: C

Explanation:
The Virtualized Infrastructure Manager manages the compute, storage, and networking resources that form the NFV Infrastructure. Its responsibilities can include allocating resources to virtual workloads, tracking available capacity, and controlling the virtualized environment. The Virtual Network Functions Manager has a different role: it manages the lifecycle of VNF instances, including operations such as instantiation, scaling, updating, and termination. Higher-level NFV orchestration coordinates network services and resources across the NFV environment. A traditional Network Management System can perform fault, configuration, accounting, performance, and security management, but it is not the NFV functional block specifically defined to control virtual infrastructure resources. An ONT is subscriber-premises access equipment and is unrelated to NFV infrastructure resource management.
Batch 2: Questions 11-20


NEW QUESTION # 31
Which Altiplano intent is used to define the uplink interfaces that connect an OLT toward the aggregation network?

Answer: B

Explanation:
The uplink-connection intent defines how an OLT connects toward the aggregation or transport network. It is used to configure relevant uplink resources, which can include network-facing interfaces and associated parameters supported by the device and intent model. This intent is distinct from the broader device intent and device-configuration information used to identify and configure the particular access node and its assigned profiles. Subscriber authentication, Wi-Fi radio operation, and multicast membership reporting are separate functional areas and are not substitutes for the OLT uplink-connection intent. By representing uplink connectivity as an intent, Altiplano can translate the desired connection into lower-level device configuration and apply it consistently through model-driven management. The resulting configuration must still match the capabilities and physical resources available on the selected OLT.


NEW QUESTION # 32
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