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Juniper JN0-106 Exam Overview:

Certification Vendor:Juniper Networks
Exam Name:Junos, Associate (JNCIA-Junos)
Exam Number:JN0-106
Exam Duration:90 minutes
Exam Price:$200 USD
Certificate Validity Period:3 years
Passing Score:Pass or Fail
Related Certifications:JNCIS-ENT
JNCIA-Junos
JNCIS-SP
Exam Format:Multiple Choice
Real Exam Qty:65
Available Languages:English
Sample Questions:Juniper JN0-106 Sample Questions
Exam Way:Pearson VUE Test Center or Online Proctored Exam
Pre Condition:No prerequisite certification required
Official Syllabus URL:https://learningportal.juniper.net/juniper/user_activity_info.aspx?id=14354

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Juniper JN0-106 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Routing Policy and Firewall Filters: Covers how to control traffic flow on Junos devices using routing policies and firewall filters, including policy structure, match criteria, filter actions, and unicast RPF.
Topic 2
  • User Interfaces: Covers how to navigate and use the Junos CLI and J-Web interface, including configuration management, output filtering, and working with active versus candidate configurations.
Topic 3
  • Configuration Basics: Covers the essential steps for configuring a Junos device from factory default, including user accounts, interfaces, authentication, system services like NTP and SNMP, and configuration archival.
Topic 4
  • Operational Monitoring and Maintenance: Covers the tools and procedures used to monitor, maintain, and troubleshoot Junos devices, including show
  • monitor commands, network utilities, OS upgrades, and password recovery.
Topic 5
  • Junos OS Fundamentals: Covers the architecture of Junos OS, focusing on the separation of control and forwarding planes and how traffic is processed by the routing and packet-forwarding engines.
Topic 6
  • Routing Fundamentals: Covers core routing concepts on Junos devices, including routing and forwarding tables, route preference, static routing, routing instances, and an introduction to dynamic routing protocols.

Juniper Junos, Associate (JNCIA-Junos) Sample Questions (Q58-Q63):

NEW QUESTION # 58
You have just increased the MTU size of interface ge-0/0/0 and committed the configuration.
Which command would help you identify the applied MTU change?

Answer: B

Explanation:
After increasing the MTU size of an interface and committing the configuration, the command to verify the applied MTU change is D, "show interfaces ge-0/0/0." This command displays detailed information about the interface, including the current MTU size, making it the best choice for verifying the applied changes.


NEW QUESTION # 59
You are using the factory default configuration on a new Juniper router. You must successfully commit the configuration and activate the device. Which component must be configured before Junos OS will allow you to accomplish this task?

Answer: D

Explanation:
When a Junos device is initialized for the first time or after a factory reset, it operates with a " factory-default
" configuration. This configuration contains the minimum settings necessary for the device to boot, but it lacks essential security parameters. The Junos OS kernel enforces a strict security mechanism that prevents any administrator from successfully executing a commit command until a root-level password has been defined.
Specifically, the root-authentication object must be configured under the [edit system] hierarchy. This requirement ensures that no Junos device is deployed into a production environment with an open, unauthenticated root account. If an administrator attempts to commit changes without this setting, the configuration parser will return a " missing mandatory statement " error and the commit process will fail.
While other settings-such as a system hostname, management IP address (on the fxp0 or me0 interfaces), or logical interface configurations-are critical for operational readiness, they are not strictly enforced by the system validation logic for the initial activation. Only the root-authentication (which can be a plain-text password or an encrypted key) is a hard prerequisite for transitioning the device from a default state to an active, running configuration.
Reference: Configuration Basics, Initial Configuration, System Security.


NEW QUESTION # 60
What is the primary purpose of an IPv6 link-local address?

Answer: B

Explanation:
IPv6 link-local addresses, which are identified by the fe80::/10 prefix, are a mandatory component of the IPv6 architecture. The primary purpose of a link-local address is to enable immediate communication between devices located on the same local network segment (the same " link " ) without the requirement for a global unicast address or an external routing infrastructure. These addresses are non-routable, meaning they are never forwarded by a router to another network segment.
Every IPv6-enabled interface on a Junos device automatically generates a link-local address, typically derived from the interface ' s MAC address using the EUI-64 format or a stable privacy algorithm. These addresses are essential for several core functions: they are used by the Neighbor Discovery Protocol (NDP) to resolve MAC addresses, they serve as the source address for routing protocol adjacency formation (such as OSPFv3 or RIPng), and they are frequently used as the next-hop address in IPv6 routing tables. While they do not provide Layer 2 connectivity themselves (which is the role of the MAC address), they provide the necessary Layer 3 link-level presence required for nodes to discover one another and communicate across the physical medium before any global addressing is configured.
Reference: Networking Fundamentals, IPv6 Addressing and Link-Local Scope.


NEW QUESTION # 61
In Junos OS, which command is used to display the current active configuration as it is running on the device, including all inherited and default values?

Answer: D

Explanation:
The "show configuration" command displays the active configuration hierarchy. While additional options can change format, this base command reveals the running configuration. It does not show commit history or operational interface status, which are handled by different commands.


NEW QUESTION # 62
You are configuring a new router and want to ensure that you can recover from future misconfigurations. In this scenario, what should you do after completing the initial configuration?

Answer: B

Explanation:
In the Junos OS architecture, maintaining a reliable recovery point is a critical post-installation task. While the system automatically archives previous configurations as " rollback " files every time a commit is performed, these files are transient and can eventually be rotated out of the default 50-file history as new changes are made. To ensure a permanent and reliable recovery state, a Senior Architect should manually create a rescue configuration .
The rescue configuration is a specifically designated file used to restore a device to a known-working state if it becomes unreachable or the configuration becomes corrupted. Unlike standard rollbacks, the rescue configuration is only created or updated when an administrator explicitly issues the operational mode command request system configuration rescue save. This ensures that even if several subsequent commits flush the desired initial state from the standard rollback archive, the " safe harbor " configuration remains intact on the storage media. This state can then be re-activated via the rollback rescue command in configuration mode followed by a commit. Setting a rescue configuration after the initial setup is a foundational best practice for disaster recovery and operational stability, providing a " last resort " configuration that is immune to the automated rotation of the commit history.
Reference: Operational Monitoring and Maintenance, Rescue Configuration and Recovery.


NEW QUESTION # 63
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