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Juniper JN0-106 Exam Syllabus Topics:

SectionObjectives
Networking Fundamentals- OSI and TCP/IP models
- IPv4/IPv6 addressing basics
- Subnetting concepts
- Routing fundamentals
Junos OS Fundamentals- Operational vs configuration mode
- Junos OS architecture
- Junos CLI navigation and commands
- Configuration hierarchy and commit model
Security and Network Services Basics- Firewall filters basics
- NAT concepts overview
Configuration and Monitoring- Interface configuration
- Monitoring and troubleshooting tools
- System services and users
Routing Fundamentals in Junos- OSPF basics
- Static routing
- Dynamic routing overview

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Quiz JN0-106 - Professional Junos, Associate (JNCIA-Junos) Verified Answers

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Juniper Junos, Associate (JNCIA-Junos) Sample Questions (Q11-Q16):

NEW QUESTION # 11
Which two statements are true about the firewall filter configuration shown in the exhibit? (Choose two.)

Answer: A,B

Explanation:
The exhibit illustrates the configuration of a firewall filter named mgmt_fill and its subsequent application to an interface. The first true statement is that the filter is applied to a physical interface . The configuration shows the filter attached to me0 , which in Junos nomenclature represents the Management Ethernet port-a dedicated physical port for out-of-band management traffic. This is separate from logical or virtual interfaces, as me0 provides the physical link for administrative access.
The second true statement is that the filter evaluates SSH packets egressing from the management interface . In the provided snippet, term t1 specifically matches the destination-port ssh , and the filter is applied to the interface unit. When a filter is applied to an interface, it can monitor traffic entering or leaving the device. Furthermore, the filter utilizes a count action (count c1), which is a non-terminating action used to provide telemetry on specific traffic types passing through that physical port. There is no mention of a syslog or log action in the configuration, meaning that while packets are counted, they are not being written to the system log files. This configuration is a standard method for hardening the management plane and tracking administrative session activity on the Routing Engine. Reference: Routing Policy and Firewall Filters, Firewall Filter Actions, Management Interfaces.


NEW QUESTION # 12
You are asked to view the real-time usage statistics for the busiest interfaces on a device running Junos OS. Which command will achieve this task?

Answer: C

Explanation:
To view real-time usage statistics for the busiest interfaces on a device running Junos OS, the correct command is B, "monitor interface traffic." This command provides a dynamic, real-time view of the traffic flowing through the interfaces, allowing administrators to quickly identify and monitor the busiest interfaces on the device.


NEW QUESTION # 13
Click the Exhibit button.

Referring to the exhibit, what would be the next-hop address for the packet destined for the
10.0.0.0/24 network if the ge-0/0/1 interface goes down?

Answer: B

Explanation:
If the ge-0/0/1.0 interface goes down, the route to 10.0.0.0/24 learned via ge-0/0/1.0 (10.12.0.1) is lost. The router will use the next available route, which is the static route to 10.0.0.0/24 via
10.23.0.3 on ge-0/0/2.0.


NEW QUESTION # 14

Referring to the exhibit, you are configuring a Junos router to provide connectivity to a building across town on the network 10.10.10.0/24. The next-hop router is at 10.10.1.1, which is reachable using interface ge-0/0/1.
After committing the configuration in the exhibit, users report they still cannot reach the 10.10.10.0/24 network, and the route does not appear as active in the routing table. In this scenario, which statement is correct?

Answer: B

Explanation:
In Junos OS, the Routing Engine (RE) performs a validation check on every entry in the Routing Information Base (RIB). For a static route to be considered valid and transition to an active state in the inet.0 table, its designated next hop must be resolvable . A next-hop address is resolvable only if the router has an existing route (typically a directly connected route) to that specific IP address.
According to the exhibit, the static route for 10.10.10.0/24 has been configured with a next hop of 10.1.1.1 .
However, the scenario states that the actual gateway router is located at 10.10.1.1 . If the local interface (ge-0
/0/1) is configured with an IP in the 10.10.1.0/x subnet, the router will have a direct route to 10.10.1.1, but it will likely have no path to the 10.1.1.1 address provided in the exhibit.
Because the router cannot resolve the next hop 10.1.1.1 , the static route is placed in an " inactive " or " hidden " state. It will not be installed in the forwarding table pushed to the Packet Forwarding Engine (PFE), and standard show route commands will not display it unless specific flags like hidden or all are used. This logic ensures that the router does not attempt to forward packets into a " black hole " where the gateway is logically unreachable. To fix this, the administrator must modify the configuration to point to the correct, reachable next-hop address of 10.10.1.1.
Reference: Routing Fundamentals, Static Route Resolution, and Troubleshooting Routing Tables.


NEW QUESTION # 15
Your system administrator notified the infrastructure team that all server NICs will be moving to jumbo frames. All of the NICs used by servers are 1 gigabit. The starting frame size will be 4K.
The exact frame size may change depending on testing results. In this scenario, which choice would provide a flexible solution?

Answer: C

Explanation:
Using a configuration group allows you to centrally define the MTU for all 1 gigabit interfaces and apply it consistently, making future adjustments simple and scalable without modifying each interface individually.


NEW QUESTION # 16
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