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NEW QUESTION # 53
Your network infrastructure transports data, voice, and video traffic. Users are complaining that voice and video calls are not performing to their expectations. In this scenario, which technology would you implement to improve voice and video performance on your network?
Answer: B
Explanation:
In a network that carries diverse types of traffic like data, voice, and video, ensuring the performance of latency-sensitive applications such as voice and video calls is crucial. Class of Service (CoS) is a technology designed to prioritize network traffic, ensuring that critical applications like voice and video receive the necessary bandwidth and minimal latency. CoS mechanisms can include traffic classification, traffic policing, queue management, and scheduling. By implementing CoS, network administrators can assign higher priority to voice and video traffic, thus improving their performance across the network and addressing the users' complaints about call quality.
NEW QUESTION # 54
You are unable to remotely access your Juniper device using the CLI. Referring to the exhibit, which command would you add to the existing configuration to enable remote CLI access?
Answer: D
Explanation:
In Junos OS, remote access to the device's CLI is commonly facilitated through Secure Shell (SSH), a protocol providing secure command-line access over an insecure network. The given exhibit indicates an attempt to set a root authentication password but does not show configuration for enabling remote access services. To enable SSH, which is not shown in the configuration snippet, you need to configure the device to accept SSH connections. This is done by enabling the SSH service within the system services hierarchy of the configuration. The correct command to add to the existing configuration for enabling remote CLI access via SSH is set system services ssh. This command activates the SSH service, allowing secure remote logins to the device.
NEW QUESTION # 55
Which two statements describe rollback configuration behavior in Junos OS? (Choose two.)
Answer: B,C
Explanation:
Junos OS incorporates a robust configuration versioning and recovery system designed to protect against configuration errors and human oversight. A key feature of this system is that rollback files are stored automatically by the device after each successful commit. These files represent a historical record of previous active configurations. By default, the system maintains a set number of these files, allowing an administrator to revert to a previous state (e.g., rollback 1) if the most recent changes result in unexpected network instability.
Another critical safety mechanism is the behavior associated with the commit confirmed command. If an administrator issues this command but fails to provide a subsequent confirmation within a designated timeframe (defaulting to 10 minutes), the system assumes a loss of management connectivity. Consequently, the rollback configurations are applied automatically after the commit confirmed timeout to restore the previous known-good state. This is an essential best practice for remote configuration management. It is important to note that rollback 0 refers to the currently active configuration, not the factory default, and that while Junos supports maintaining a large number of rollback files, the primary operational benefit lies in the automated storage and confirmation-based recovery processes that ensure the device remains reachable and stable. Reference: Configuration Basics, Rollback Configurations, Commit Confirmed Logic.
NEW QUESTION # 56
Click the Exhibit button.
How is traffic, sourced from 10.0.0.0/8, treated by the firewall filter shown in the exhibit?
Answer: B
Explanation:
Junos OS firewall filters operate on a sequential, "first-match" logic, but their behavior is significantly influenced by the use of terminating versus non-terminating actions. In this exhibit, a packet with a source address of 10.0.0.0/8 is evaluated against the filter named test.
Evaluation begins with term 1. The packet matches the source-address criteria, triggering the actions defined in the then statement. The first action is log, which sends the packet header information to the firewall task buffer for logging. The second action is next term. This is a critical non-terminating action; it instructs the Packet Forwarding Engine (PFE) to continue the evaluation process using the subsequent term in the filter rather than stopping after the match.
Evaluation then moves to term 2. Because term 2 contains no from match conditions, it acts as a
"catch-all" for any traffic that reaches it. The action in this term is reject. This is a terminating action that discards the packet and sends an ICMP "destination unreachable" message back to the source. Therefore, the packet is first recorded by the logging process and is subsequently dropped by the rejection mechanism. If next term had not been present in term 1, the packet would have been implicitly accepted (as any matched term without a terminating action like discard, reject, or accept defaults to an implicit accept in that specific term). However, the explicit instruction to move forward ensures the packet hits the reject statement.
NEW QUESTION # 57
Which type of device uses the destination IP address to forward packets?
Answer: A
Explanation:
A Layer 3 router uses the destination IP address to forward packets. The correct answer is A.
Routers operate at Layer 3 of the OSI model and make forwarding decisions based on IP addresses. They are responsible for routing packets across different networks by examining the destination IP address contained in the packet's header.
NEW QUESTION # 58
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