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Nokia 4A0-F10 Exam Syllabus Topics:

SectionObjectives
Access Network- Optical Line Terminal (OLT) functionality
- Multicast protocols for video distribution
- Access network architecture
- Quality of Service (QoS) fundamentals
Home Network- Home network device management
- Home network connectivity
- Wi-Fi fundamentals
- Home network devices
Fixed Networks Management- Altiplano SDAN Controller
- IPFIX telemetry collection
- Nokia SDAN solution
- NETCONF and YANG
- Corteca home device controller
- NFV and SDN fundamentals
Introduction to Fixed Networks- FTTH concepts and solutions
- Fixed Wireless Access (FWA)
- Broadband access services
- Broadband network fundamentals
- FTTx concepts and solutions
Broadband Services- Lightspan service components
- Intent mapping to network layers
- Voice services
- IPTV services
- Intent-Based Networking (IBN)
- High-speed Internet services
- Value-added and triple-play services

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Nokia Fixed Networks Fundamentals Sample Questions (Q34-Q39):

NEW QUESTION # 34
A YANG model specifies that a configuration leaf can contain an integer from 1 through 4094. What is the principal benefit of this restriction?

Answer: D

Explanation:
YANG can define data types, ranges, patterns, mandatory nodes, default values, and relationships between configuration elements. A range restriction allows management software and network devices to verify that a submitted value falls within the permitted limits. For example, restricting a VLAN-related integer to an appropriate range prevents clearly invalid values from being accepted. This model-driven validation reduces configuration errors and makes automation more predictable. A passive optical splitter has no processing capability and cannot correct invalid configuration. The restriction also does not convert a value into an Ethernet frame or prevent NETCONF access. Instead, NETCONF can carry configuration data structured according to the YANG model, and the server can reject an <edit-config> request when the proposed data violates applicable schema constraints.


NEW QUESTION # 35
Which traffic-delivery method is commonly used for a live IPTV channel watched simultaneously by many subscribers?

Answer: A

Explanation:
Live IPTV channels are commonly distributed using multicast because many subscribers may request the same content at the same time. The network carries a shared stream across common paths and replicates packets only where delivery paths branch toward participating receivers. Subscribers signal membership using protocols such as IGMP. This approach is more bandwidth-efficient than delivering a separate unicast copy from the source to every viewer. Video on Demand is commonly delivered using unicast because each viewer may start, pause, or seek through different content independently. NETCONF notifications carry management events rather than television content. IPTV is packet-based and does not require a separate analog transmission for every copper pair. Effective multicast deployment also depends on correct group control, snooping, routing, QoS, and service-forwarding configuration.


NEW QUESTION # 36
A provider wants to separate every subscriber's traffic throughout the access network, even when subscribers use the same service. Which VLAN model best meets this requirement?

Answer: B

Explanation:
A VLAN-per-subscriber model assigns a distinct VLAN context to each subscriber, providing clear Layer 2 separation between subscribers even when they consume the same service. This can simplify subscriber identification and support individual policy or forwarding treatment, but it requires the network to accommodate a larger number of VLANs. In a VLAN-per-service model, multiple subscribers using the same service can share a service VLAN toward the aggregation network. The access node must then preserve subscriber isolation through other forwarding controls and map traffic correctly between subscriber-facing and network-facing interfaces. Using one untagged VLAN for the entire access network provides insufficient segmentation. Assigning a VLAN to each multicast channel categorizes content rather than uniquely separating individual subscribers and therefore does not meet the stated requirement.


NEW QUESTION # 37
What is the primary purpose of vectoring in a DSL access network?

Answer: B

Explanation:
DSL vectoring is primarily used to reduce or cancel far-end crosstalk between copper pairs operating within the same cable bundle. Crosstalk can significantly reduce the attainable data rate, particularly with high-frequency technologies such as VDSL2. A vectoring system measures interference among coordinated lines and generates compensating signals that counteract the crosstalk. This can improve connection stability and allow lines to operate closer to their theoretical performance. Vectoring is different from bonding. Bonding combines the capacity of multiple physical copper pairs to increase the aggregate subscriber bitrate. Vectoring also does not divide optical signals because that is the function of a splitter in a passive optical network. Its effectiveness generally depends on coordinating the relevant DSL lines through compatible access equipment.


NEW QUESTION # 38
What is a key characteristic of software disaggregation in an access network?

Answer: A

Explanation:
Software disaggregation separates access-network software into modules, with each module responsible for a particular functional area. Defined interfaces allow these modules to interact with one another, with higher-level applications, and with abstracted hardware resources. This architecture can improve development flexibility, automation, scalability, and the ability to introduce new functions without replacing an entire vertically integrated platform. It does not mean that all physical constraints disappear or that every module can operate on every device without adaptation. Embedding every function permanently in one appliance describes a tightly integrated architecture rather than disaggregation. APIs are important because they enable communication and programmability between components. Passive optical splitters cannot execute software because they contain no powered processing or control functions.


NEW QUESTION # 39
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