4A0-F10 Valid Exam Answers | Reliable 4A0-F10 Dumps Pdf

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Nokia 4A0-F10 Exam Syllabus Topics:

SectionObjectives
Introduction to Fixed Networks- FTTH, FTTx and FWA solutions
- Broadband access fundamentals
Broadband Services- Lightspan service components
- Internet, IPTV and voice services
Access Network- Multicast and QoS principles
- Access network architecture
- OLT functions
Fixed Networks Management- Netconf/YANG and telemetry
- NFV and SDN concepts
- Altiplano Software-Defined Access Network (SDAN)
Home Network- Home devices and connectivity
- Wi-Fi fundamentals

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Nokia Fixed Networks Fundamentals Sample Questions (Q24-Q29):

NEW QUESTION # 24
What is the primary function of the cladding in an optical fiber?

Answer: C


NEW QUESTION # 25
How does an ADSL connection support simultaneous traditional voice and broadband data over the same copper pair?

Answer: D

Explanation:
ADSL uses frequency-division techniques to place traditional analog voice and broadband data in different portions of the available copper-pair spectrum. The lower-frequency range is reserved for voice, while higher-frequency ranges carry upstream and downstream DSL data. Filters or splitters separate these frequency ranges at the subscriber and network sides, allowing a telephone call and an Internet session to operate simultaneously. The services are not required to alternate in time, and an optical wavelength is not involved because ADSL operates over copper. GPON time-slot scheduling applies to upstream transmissions from ONTs on a passive optical network, not to ADSL voice separation. Line quality, loop length, attenuation, and interference affect the data rate that ADSL can achieve.


NEW QUESTION # 26
In a Lightspan High-Speed Internet service architecture, what is the role of the HSI VPLS on the IHUB?

Answer: A

Explanation:
The HSI VPLS on the integrated hub provides the Layer 2 switching context used to carry High-Speed Internet traffic between HSI forwarders and the network-facing side of the access node. Subscriber traffic arriving through an ONT is associated with an HSI forwarder on the relevant line termination resources. The forwarder connects that traffic to the HSI VPLS, which then switches it toward one or more NNIs leading to the aggregation network. The VPLS does not perform optical-to-analog voice conversion, Wi-Fi radio management, or DSL vectoring. Those functions belong to different service components or technologies. This logical service architecture allows subscriber-facing resources and network-facing interfaces to participate in a controlled Ethernet forwarding domain while supporting the required service separation and policies.


NEW QUESTION # 27
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: C

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 # 28
Which Altiplano intent is used to define the uplink interfaces that connect an OLT toward the aggregation network?

Answer: A

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 # 29
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