Nokia 4A0-F10 Exam Overview:
| Certification Vendor: | Nokia |
| Exam Name: | Nokia Fixed Networks Fundamentals |
| Exam Number: | 4A0-F10 |
| Real Exam Qty: | 40 |
| Exam Price: | USD $125 |
| Exam Format: | Multiple Choice |
| Available Languages: | English |
| Exam Duration: | 90 minutes |
| Related Certifications: | Nokia Certified Fixed Networks Professional Nokia Certified Fixed Networks Altiplano Administration Specialist Nokia Certified Fiber Access Networks Operation Specialist Nokia Certified Fixed Networks Altiplano Automation Expert Nokia Certified Fixed Networks Wi-Fi Specialist |
| Recommended Training: | Nokia Fixed Networks Certification Program Nokia Fixed Networks Fundamentals Course (FN00200) |
| Exam Registration: | Nokia Fixed Networks Fundamentals Exam Registration Pearson VUE Nokia Certification Program |
| Sample Questions: | Nokia 4A0-F10 Sample Questions |
| Exam Way: | Pearson VUE testing center or Pearson VUE online proctored exam. |
| Pre Condition: | No mandatory prerequisites. |
| Official Syllabus URL: | https://www.nokia.com/networks/training/fnc/exams/fixed-networks-fundamentals/ |
Nokia 4A0-F10 Exam Syllabus Topics:
| Section | Objectives |
|---|---|
| Topic 1: Software Defined Access Network (SDAN) | - Altiplano Access Controller - Subscriber and service management - Network topology and service health - Corteca platform |
| Topic 2: Service delivery and operations | - High-Speed Internet (HSI) - Network monitoring and troubleshooting - Voice, Internet and IPTV services - Service provisioning |
| Topic 3: Management interfaces and automation | - Telemetry and automation concepts - YANG data models - CLI fundamentals - NETCONF |
| Topic 4: Fixed network architectures and broadband access | - FTTH and FTTx technologies - Optical Distribution Network (ODN) - Fixed Wireless Access (FWA) - Passive Optical Networks (PON) - Broadband network architecture |
| Topic 5: Nokia fixed access portfolio | - FastMile FWA solutions - Optical Network Terminals (ONTs) - Home networking devices - Lightspan FX and MF Optical Line Terminals |
Nokia Fixed Networks Fundamentals Sample Questions:
1. In an 802.1X-based subscriber authentication design, which role does the residential gateway normally perform?
A) Authentication server
B) Supplicant
C) Multicast querier
D) RADIUS database
2. Which Wi-Fi 7 capability allows a compatible device to use more than one frequency-band link as part of the same connection?
A) Multi-Link Operation
B) VLAN stacking
C) Dynamic Bandwidth Allocation
D) DSL vectoring
3. Which characteristic distinguishes G.fast from traditional ADSL technologies?
A) G.fast operates only over passive optical splitters.
B) G.fast carries only voice services and does not support broadband data.
C) fast is designed to deliver high broadband rates over relatively short copper loops, frequently using existing building or drop wiring. It uses a much wider and higher-frequency spectrum than traditional ADSL and commonly employs Time Division Duplexing. With TDD, upstream and downstream transmission use the same frequency spectrum during different time intervals. The upstream-to-downstream capacity ratio can therefore be adjusted through the TDD configuration. Higher frequencies can support greater capacity but experience substantial attenuation over distance, which is why G.fast is best suited to short loops. It does not operate through passive optical splitters, although fiber may be deployed close to the subscriber before the final copper segment. G.fast also supports broadband services rather than voice-only delivery.
D) G.fast requires a separate copper pair for upstream and downstream traffic.
E) G.fast commonly uses high frequencies and time-division duplexing over short copper loops.
4. In a GPON system using Dynamic Bandwidth Allocation, which device determines when an ONT may transmit upstream traffic?
A) Ethernet aggregation switch
B) Residential gateway
C) Passive optical splitter
D) Optical line termination
5. Which architectural principle is fundamental to Software-Defined Networking?
A) Removing programmability and APIs from network management
B) Separating the control plane from the data-forwarding plane
C) Requiring every forwarding device to make all policy decisions independently
D) Combining all hardware and software into one fixed proprietary component
Solutions:
| Question # 1 Answer: B | Question # 2 Answer: A | Question # 3 Answer: E | Question # 4 Answer: D | Question # 5 Answer: B |

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