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HP HPE7-A07 Exam Syllabus Topics:

TopicDetails
Topic 1
  • WLAN: This HP HPE7-A07 exam topic tests the ability of a senior RF network engineer to design and troubleshoot RF attributes and wireless functions. It also includes building and troubleshooting wireless configurations, critical for optimizing WLAN performance in enterprise environments.
Topic 2
  • Switching: Senior HP RF network engineers must demonstrate proficiency in implementing and troubleshooting Layer 2
  • 3 switching, including broadcast domains and interconnection technologies. This ensures seamless and efficient data flow across network segments.
Topic 3
  • Authentication
  • Authorization: Senior HP RF network engineers are tested on their skills in designing and troubleshooting AAA configurations, including ClearPass integration. This ensures that network access is securely managed according to the customer's requirements.
Topic 4
  • Security: This topic evaluates the ability of a senior HP RF network engineer to design and troubleshoot security implementations, focusing on wireless SSID with EAP-TLS and GBP. It ensures the network is secure from unauthorized access and threats.
Topic 5
  • Connectivity: The topic covers developing configurations, applying advanced networking technologies, and identifying design flaws. It tests the skills of a senior HP RF network engineer in creating reliable, high-performing networks tailored to specific customer needs.
Topic 6
  • Network Stack: This topic of the HP HPE7-A07 Exam evaluates the ability of a senior HP RF network engineer to analyze and troubleshoot network solutions based on customer issues. Mastery of this ensures effective problem resolution in complex network environments.
Topic 7
  • Network Resiliency and Virtualization: This section of the Aruba Certified Campus Access Mobility Expert Written exam assesses the expertise of a senior HP RF network engineer in designing and troubleshooting mechanisms for resiliency, redundancy, and fault tolerance. It is crucial for maintaining uninterrupted network services.

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HP Aruba Certified Campus Access Mobility Expert Written Exam Sample Questions (Q29-Q34):

NEW QUESTION # 29
A customer has recently deployed AP-615s at their new office and is wondering on which band the radios will operate with the default configuration after creating a tri-band SSID. What should you tell them?

Answer: B

Explanation:
The Aruba AP-615 is a tri-band Wi-Fi 6E access point, capable of operating on the 2.4 GHz, 5 GHz, and 6 GHz bands. However, in the default configuration, Aruba AP-615 radios operate in dual-band mode (2.4 GHz and 5 GHz).
The 6 GHz radio (the "E" band for Wi-Fi 6E) remains disabled by default until explicitly enabled by configuration through the ArubaOS or Aruba Central interface.
According to the Aruba Access Point Configuration Guide and Wi-Fi 6E Deployment Guide:
"Tri-band APs such as the AP-615 support operation in 2.4GHz, 5GHz, and 6GHz frequency bands. By default, the AP operates in dual-band mode (2.4GHz and 5GHz). The 6GHz band must be explicitly enabled by configuring the radio profile to tri-band mode." Thus, when a tri-band SSID is created without explicitly modifying the radio band configuration, the AP-615 continues to use 2.4GHz and 5GHz by default.
Option Analysis:
* A. Incorrect - The 6GHz radio is not enabled by default.
* B. Correct - Default operation is on the 2.4GHz and 5GHz bands.
* C. Incorrect - 6GHz is only enabled through manual configuration.
* D. Incorrect - While partially true, the question specifies default tri-band SSID behavior, which defaults to 2.4GHz and 5GHz.
Final Verified answer: B
Reference Sources (HPE Aruba Official Materials):
* Aruba Wi-Fi 6E Access Point Configuration and Deployment Guide
* Aruba AP-610 Series Datasheet
* ArubaOS 10.x Access Point Configuration Guide - Radio Profiles and Band Operation


NEW QUESTION # 30
A customer is planning to add loT devices that connect wirelessly to the existing 802.1X SSlD. The customer will use ClearPass to authenticate the IoT devices by MAC address but other devices will still need to authenticate by only 802 1X Exhibit.

The customer provided the current configuration and reported their non-loT 802. IX devices are no longer able to connect. Which configuration change can be made to fix the issue?

Answer: B

Explanation:
The existing configuration for the WLAN ssid-profile has enabled MAC authentication which, while suitable for IoT devices that may not support 802.1X, can interfere with the normal 802.1X authentication process for other devices. By removing the mac-authentication directive from the WLAN configuration, the non-IoT
802.1X devices should be able to connect without issues as the authentication process will not be disrupted by MAC authentication checks. This adjustment ensures that the WLAN ssid-profile is correctly aligned with the authentication requirements for both IoT and non-IoT devices within the network environment, conforming to the best practices for mixed-device WLAN configurations.


NEW QUESTION # 31

A network administrator attempts to improve multicast traffic flow and performs some packet captures for validation. What can the network administrator conclude from the results?

Answer: A

Explanation:
The packet decode excerpt shows a QoS Data frame, not a multicast-control low-rate frame.
Frame control flags indicate:
* Subtype: QoS Data # This is unicast, not broadcast/multicast
* From DS bit = 1, To DS bit = 0 # Wireless unicast from AP to client
* High-rate MCS data present # Indicates optimized transmission speed
This behavior aligns directly with Dynamic Multicast Optimization (DMO).
Aruba DMO Overview - Official Behavior
ArubaOS Wi-Fi optimization guides state:
"Dynamic Multicast Optimization converts multicast packets into unicast transmissions and sends them using the highest supported data rate, improving delivery reliability and efficiency." This means:
Before DMO
After DMO
Multicast sent at lowest basic rate (e.g., 6 Mbps)
Converted to unicast # can use high PHY rates (e.g., 300 Mbps+)
High drop probability
Reliable delivery
Poor performance
Optimized throughput
The packet remaining a Data/QoS Data subtype is correct - DMO does not change the 802.11 frame Type field; it changes transmission handling and rate control.
Why the Other Options Are Incorrect
Option
Why Incorrect
A BCMCO does not exist - incorrect feature name
B Type consistency is not the key validation point - rate increase is
D Packet length always appears in frame decode; optimization never hides it
# Final Verified answer: C
The data rate increased from 6 Mbps to 300 Mbps because Dynamic Multicast Optimization (DMO) was configured.


NEW QUESTION # 32
Refer to the exhibit.

Which statement is true?

Answer: C

Explanation:
The exhibit shows a series of 802.1X authentication steps with multiple "Deauthentication" frames, which indicate that the client is not successfully completing the authentication process. Since the frames show repeated attempts at authentication followed by deauthentication, this suggests that the client is failing the
802.1X authentication process, which is required for network access in a WPA2/WPA3-Enterprise security environment.


NEW QUESTION # 33
Your customer asked for help to apply an ACL for wireless guest users with the following criteria:
* Wi-Fi guests are on VLAN 555
* allow internet access
* only allow access to public DNS servers
* deny access to all internal networks except for any DHCP server
These session ACLs are already present in the CLI of the mobility gateway group:

You have access to the CLl. Which user role meets all the criteria?

Answer: C

Explanation:
Based on the criteria provided for wireless guest users, the correct user role configuration must allow internet access, only allow access to public DNS servers, deny access to all internal networks except for any DHCP server, and place the Wi-Fi guests on VLAN 555. The ACLs must permit services necessary for basic internet access (such as DNS and DHCP) and block access to internal networks.
Option A satisfies these criteria with the following configurations:
user-role "WiFi-guest": This defines the role for Wi-Fi guests.
access-list session dhcp-acl: This applies the access list that likely permits DHCP, which is necessary for guests to obtain an IP address.
access-list session dns-acl: This applies the DNS access list, which likely restricts guests to using public DNS servers.
access-list session internal-networks: This applies the internal networks access list, which denies access to internal networks.
vlan 555: This sets the VLAN for Wi-Fi guests to 555.
Options B, C, and D are incorrect because they includeaccess-list session allowallwhich would permit all traffic, contradicting the requirement to deny access to all internal networks.


NEW QUESTION # 34
......

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