4A0-F10 Trustworthy Exam Content | 4A0-F10 Preparation

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Nokia 4A0-F10 Exam Syllabus Topics:

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

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4A0-F10 Trustworthy Exam Content Exam Pass Certify | 4A0-F10: Nokia Fixed Networks Fundamentals

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Nokia Fixed Networks Fundamentals Sample Questions (Q18-Q23):

NEW QUESTION # 18
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 # 19
Which Lightspan interface type normally connects an access node directly to subscriber-facing equipment?

Answer: D

Explanation:
A User Network Interface is the subscriber-facing interface through which an access node connects to customer-side equipment or services. Depending on the access technology, this relationship can involve ONTs, subscriber ports, or other access termination functions. A Network-to-Network Interface connects the access node toward another network device, typically the Ethernet aggregation or transport network. A subtending interface is used when one access node is connected through another access node, allowing the downstream node's traffic to reach the aggregation network through the upstream node. A loopback interface is a logical interface generally used for management, routing identification, or testing and is not a physical subscriber connection. Correctly distinguishing UNI, NNI, and subtending roles is essential when interpreting an access-node datapath.


NEW QUESTION # 20
In an 802.1X-based subscriber authentication design, which role does the residential gateway normally perform?

Answer: D

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 # 21
What does hardware abstraction provide in a disaggregated access network?

Answer: B

Explanation:
Hardware abstraction separates higher-level control and management functions from many platform-specific implementation details. It can provide controllers and applications with consistent models or interfaces for operating different supported hardware platforms. This makes automation, service development, and multivendor management more practical because applications do not need to reproduce every low-level procedure for each device. Abstraction does not require all platforms to contain identical components, nor does it eliminate actual differences in capacity, features, or operational constraints. Those differences must still be represented where relevant. It also does not make active access equipment passive. In a disaggregated access architecture, software is divided into functional modules, and standardized or well-defined interfaces allow those modules to interact with abstracted device resources and with higher-level orchestration or assurance applications.


NEW QUESTION # 22
Which characteristic distinguishes G.fast from traditional ADSL technologies?

Answer: E


NEW QUESTION # 23
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