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AI and Network OperationsmediumDrag & DropObjective-mapped

CCNA AI and Network Operations Practice Question

This 200-301 practice question tests your understanding of ai and network operations. This is a configuration task: choose the command set that satisfies every stated requirement. Small differences — like 'secret' vs 'password' or 'transport input ssh' vs 'all' — change whether the answer is correct. After answering, compare your reasoning against the explanation and wrong-answer breakdown below. Once you have made your selection, read the full explanation to reinforce the concept and understand why each distractor is designed to mislead on exam day.

Drag and drop the following steps into the correct order to retrieve the current OSPF configuration via RESTCONF and apply a change to the OSPF process ID on a Cisco IOS-XE device.

Question 1mediumdrag order
Review the full OSPF breakdown →

Answer choices

Why each option matters

Answer the question above first, then reveal the full breakdown to understand why each option is right or wrong.

Correct answer & explanation

Send a GET request to retrieve the current OSPF configuration.

First, send a GET request to retrieve the current OSPF configuration. Then parse the JSON/XML payload to identify the OSPF process ID. Next, modify the OSPF process ID in the payload. Finally, send a PUT or PATCH request to apply the change.

Key principle: OSPF neighbour adjacency depends on matching area, hello/dead timers, network type, and authentication — IP reachability alone is not enough.

Answer analysis

Option-by-option breakdown

For each option: why learners choose it and why it is or isn't the right answer here.

  • Send a GET request to retrieve the current OSPF configuration.

    Why this is correct

    This is the first step because you must obtain the existing configuration before making any changes. RESTCONF uses GET to retrieve the current state of the OSPF process.

    Related concept

    OSPF neighbours must agree on key parameters.

  • Parse the retrieved JSON/XML payload to identify the OSPF process ID.

    Why this is correct

    This is incorrect because parsing should occur after retrieving the configuration, but before modifying the payload. However, the correct order places parsing after retrieval and before modification.

    Related concept

    OSPF neighbours must agree on key parameters.

  • Modify the OSPF process ID in the payload.

    Why this is correct

    This is incorrect because modification must happen after parsing the retrieved configuration, not before. The payload must be based on the current configuration.

    Related concept

    OSPF neighbours must agree on key parameters.

  • Send a PUT or PATCH request to apply the change.

    Why this is correct

    This is incorrect because the change must be applied after modifying the payload, not before. PUT/PATCH is the third step, not the first.

    Related concept

    OSPF neighbours must agree on key parameters.

Common exam traps

Common exam trap: OSPF can fail even when IP connectivity looks correct

OSPF neighbour formation depends on matching areas, timers, network type, authentication and passive-interface behaviour. Do not choose an answer only because the devices can ping.

Detailed technical explanation

How to think about this question

OSPF questions usually test the details that control adjacency and route selection. Read the neighbour state, area, router ID and interface configuration before deciding what is wrong.

KKey Concepts to Remember

  • OSPF neighbours must agree on key parameters.
  • Router ID selection can affect neighbour relationships and LSDB output.
  • OSPF cost influences the preferred path.
  • A route can appear in OSPF information but not become the installed route.

TExam Day Tips

  • Check area mismatch first when OSPF adjacency fails.
  • Review passive interfaces when a network is advertised but no neighbour forms.
  • Use show ip ospf neighbor and show ip route clues carefully.

Key takeaway

OSPF neighbour adjacency depends on matching area, hello/dead timers, network type, and authentication — IP reachability alone is not enough.

Real-world example

How this comes up in practice

A network engineer at a university connects two campus buildings via a fibre link. Both routers run OSPF, but no adjacency forms — even though both routers can ping each other. The engineer finds one router is in area 0 and the other in area 1. OSPF adjacency requires matching area numbers, hello/dead timers, and network type. IP reachability alone is not enough.

What to study next

Got this wrong? Here's your next step.

Review OSPF neighbour requirements — matching area type, hello and dead timers, network type, stub flags, and authentication. Study show ip ospf neighbor states (INIT, 2-WAY, FULL). Then practise related 200-301 OSPF questions on adjacency and route selection.

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FAQ

Questions learners often ask

What does this 200-301 question test?

AI and Network Operations — This question tests AI and Network Operations — OSPF neighbours must agree on key parameters..

What is the correct answer to this question?

The correct answer is: Send a GET request to retrieve the current OSPF configuration. — First, send a GET request to retrieve the current OSPF configuration. Then parse the JSON/XML payload to identify the OSPF process ID. Next, modify the OSPF process ID in the payload. Finally, send a PUT or PATCH request to apply the change.

What should I do if I get this 200-301 question wrong?

Review OSPF neighbour requirements — matching area type, hello and dead timers, network type, stub flags, and authentication. Study show ip ospf neighbor states (INIT, 2-WAY, FULL). Then practise related 200-301 OSPF questions on adjacency and route selection.

What is the key concept behind this question?

OSPF neighbours must agree on key parameters.

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Last reviewed: Jun 6, 2026

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