Nokia 4A0-F10 Web-Based Practice Test Software

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Nokia 4A0-F10 Exam Syllabus Topics:

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

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Nokia Fixed Networks Fundamentals Sample Questions (Q21-Q26):

NEW QUESTION # 21
In an 802.1X-based subscriber authentication design, which role does the residential gateway normally perform?

Answer: B

Explanation:
The residential gateway normally acts as the 802.1X supplicant. It supplies identity information and participates in the Extensible Authentication Protocol exchange required to obtain network access. The access device or OLT commonly performs the authenticator role, controlling the subscriber-facing port and relaying authentication information between the supplicant and the authentication server. The authentication server, frequently using RADIUS, validates the credentials and returns an authorization result or related policy attributes. The gateway is therefore not itself the RADIUS database or authentication server in this design. A multicast querier performs a separate function by sending IGMP queries to maintain multicast membership information. Before successful authentication, the authenticator generally restricts ordinary subscriber traffic while allowing the authentication exchange required to complete access control.


NEW QUESTION # 22
In a GPON system using Dynamic Bandwidth Allocation, which device determines when an ONT may transmit upstream traffic?

Answer: C

Explanation:
The OLT controls upstream access to the shared GPON medium. Multiple ONTs use the same upstream wavelength, so uncoordinated transmissions could overlap and cause collisions. Through Dynamic Bandwidth Allocation, the OLT evaluates bandwidth requirements and assigns upstream transmission grants to the ONTs. These grants specify when an ONT can transmit and how much upstream capacity it may use. Traffic containers, or T-CONTs, help represent different upstream traffic and service requirements. The passive splitter cannot schedule traffic because it has no processing capability. The residential gateway handles subscriber-side functions, while an aggregation switch forwards Ethernet traffic beyond the access network. Centralized upstream scheduling enables efficient bandwidth sharing and helps the operator support different service priorities and performance commitments across subscribers.


NEW QUESTION # 23
Which Wi-Fi 7 capability allows a compatible device to use more than one frequency-band link as part of the same connection?

Answer: B

Explanation:
Multi-Link Operation is a major Wi-Fi 7 capability that enables compatible devices to establish and coordinate multiple radio links, potentially across frequency bands such as 5 GHz and 6 GHz. Depending on the implementation, traffic can be distributed across links to increase throughput or moved between links to reduce latency and avoid interference. Earlier Wi-Fi generations generally treated a client's band connection more independently. Dynamic Bandwidth Allocation schedules upstream PON capacity, DSL vectoring mitigates copper-pair crosstalk, and VLAN stacking carries multiple VLAN identifiers in Ethernet frames. Multi-Link Operation requires support from both the access point and client. Actual performance also depends on spectrum availability, channel conditions, device capabilities, regulatory constraints, and the capacity of the access point's wired or wireless backhaul.


NEW QUESTION # 24
Why does an access automation platform store operational state, logs, and telemetry in a common data lake?

Answer: B

Explanation:
A common data lake provides a centralized location for operational state, telemetry, logs, alarms, and other information collected from access-network devices and applications. Centralized data enables monitoring tools to correlate information across multiple nodes, evaluate network health, identify trends, and support analytics-driven automation. Historical data can also assist with troubleshooting, performance baselining, capacity planning, and detection of abnormal behavior. The data lake does not replace physical access devices; it stores information describing their operation. It is intended to make relevant information available to authorized applications rather than prevent historical access. It also does not automatically transform subscriber unicast traffic into multicast. Forwarding behavior is controlled through service and network configuration, whereas the data lake supports visibility, analysis, and operational decision-making.


NEW QUESTION # 25
Which Corteca component is intended primarily for use by the subscriber during Wi-Fi installation and management?

Answer: B

Explanation:
The Corteca mobile application provides subscriber-facing capabilities that can support self-installation and home Wi-Fi management. Depending on the enabled service, the subscriber can receive installation guidance, view the home network, manage connected devices, and perform supported troubleshooting or configuration tasks. The service provider uses other Corteca platform components for centralized service management, visibility, and operational control. An OLT network termination card provides access-node network connectivity and is not a subscriber application. An IPFIX collector receives traffic-flow records, while a NETCONF candidate datastore holds proposed device configuration before it is committed. Separating subscriber-facing and operator-facing functions allows the provider to offer controlled self-service capabilities without exposing the complete network-management environment or low-level access-device configuration to the end user.


NEW QUESTION # 26
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