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HP HPE7-A07 Exam Syllabus Topics:| Topic | Details | | Topic 1 | - Routing: This Aruba Certified Campus Access Mobility Expert Written exam section measures the ability to design and troubleshoot routing topologies and functions, ensuring that data efficiently navigates through complex networks, a key skill for HP solutions architects.
| | Topic 2 | - Troubleshooting: This topic of the HP HPE7-A07 exam assesses skills of a senior HP RF network engineer in troubleshooting. It also assesses the ability to remediate issues in campus networks. It is vital for ensuring network reliability and minimizing downtime in critical environments.
| | Topic 3 | - 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 4 | - 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.
| | Topic 5 | - 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 6 | - 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 7 | - 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 8 | - Performance Optimization: The Aruba Certified Campus Access Mobility Expert Written exam focuses on analyzing and remediating performance issues within a network. It measures the ability of a senior RF network engineer to fine-tune network operations for maximum efficiency and speed.
| | Topic 9 | - 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.
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HP Aruba Certified Campus Access Mobility Expert Written Exam Sample Questions (Q90-Q95):NEW QUESTION # 90
You configured a WPA3-SAE with the following MAC Authentication Role Mapping in Cloud Authentication and Policy:

With further default settings assume a new Android phone is connected to the network. Which role will the client be assigned after connecting for the first time?
- A. unmatched-device
- B. lot-local
- C. byod
- D. client will be rejected network access
Answer: A
Explanation:
The configuration shown in the third exhibit details a client role mapping that associates different client profile tags with specific client roles. When a new device, such as an Android phone, connects to the network, it will be profiled and assigned a role based on the mappings defined. If the device does not match any predefined profiles, it would be assigned the "unmatched-device" role. This is under the assumption that default settings are in place and the client does not match the criteria for any of the specific roles like "byod",
"iot-internet", or "iot-local". Therefore, an Android phone connecting for the first time and not matching any specific profile tag would be assigned to the "unmatched-device" role.
NEW QUESTION # 91
A customer has interfering devices that are seen over the air. They contact you and ask you to configure RAPIDS to help identify interfering and rogue APs.
HPE Aruba Networking Central identifies a rogue AP and displays the connected switch port.
How can HPE Aruba Networking Central identify which switch port the AP is connected to?
- A. Device profiling on the switch
- B. From the switch LLDP neighbors table
- C. From the switch MAC address table
- D. From the AP MAC address table
Answer: B
Explanation:
Comprehensive and Detailed Explanation (Verified Extract from HPE Aruba Networking Central and ClearPass Documentation) RAPIDS (Rogue AP Detection System) in Aruba Central or AirWave works by correlating information between wireless and wired infrastructure to detect rogue devices and identify their wired connectivity location.
When Aruba Central detects a rogue AP or interfering device, it uses wired-side discovery mechanisms such as LLDP (Link Layer Discovery Protocol) to trace the device's physical connection.
If the managed switch supports LLDP, it advertises and records neighbor information, including device type, MAC address, and connected port. Aruba Central queries this LLDP neighbor table from managed switches to determine the exact switch port where the rogue AP is physically connected.
Aruba Central and RAPIDS Documentation Extract:
"Aruba Central correlates rogue or interfering AP MAC addresses with wired-side discovery data. Using LLDP neighbor table information from managed switches, Central identifies the physical switch port where the rogue device is connected." Other options such as the MAC address table can show where a MAC is learned, but LLDP provides the direct, authenticated neighbor relationship that allows Aruba Central to accurately identify the rogue AP connection point and display it in the dashboard.
Option Analysis:
* A. Incorrect - Device profiling identifies endpoint types, not wired connection ports for rogue AP detection.
* B. Incorrect - MAC tables alone don't provide direct port-device mapping context for rogue detection in Central.
* C. # Correct - Aruba Central uses LLDP neighbor data from managed switches to map rogue or interfering APs to specific switch ports.
* D. Incorrect - AP MAC address tables exist in controllers or APs, not in Central's rogue-tracking mechanism.
# Final Verified answer: C
# Reference Sources (HPE Aruba Official Materials):
* Aruba Central Administration and RAPIDS Configuration Guide
* ArubaOS-Switch and CX Network Management Fundamentals - LLDP Discovery Integration
* Aruba Certified Network Security Professional (ACNSP) Study Guide - Rogue AP Detection and Wired Correlation
NEW QUESTION # 92
Exhibit.

Which would explain this issue?
- A. HTTPS wildcard certificates are not supported
- B. HTTPS certificate is not required in ClearPass Guest.
- C. captiveportal-login aruba-training com needs to be entered m the Address field for the ClearPass Guest
- D. ".aruba-training com needs to be entered in the Address field for the ClearPass Guest
Answer: D
Explanation:
The correct address for the ClearPass Guest should match the FQDN of the HTTPS certificate installed on the device, which is often the FQDN of the vendor's product. This ensures secureand proper redirection to the captive portal during the authentication process. The FQDN should be entered in the Address field for ClearPass Guest configuration.
NEW QUESTION # 93
You are testing the use of the automated port-access role configuration process using RadSec authentication over VXLAN. During your testing you observed that the RadSec connection will fan during the digital certificate exchange What would be the cause of this Issue?
- A. The RadSec server was defined on the switch using an IPv6 address that was unreachable
- B. The switch is configured to establish a TLS connection with a proxy server, not the radius server.
- C. The RADIUS TCP packets are Being dropped and the TLS tunnel is not established.
- D. Tracking mode was set to "dead-only", and the RadSec server was marked as unreachable.
Answer: C
Explanation:
During the testing of RadSec authentication over VXLAN, if the RadSec connection fails during the digital certificate exchange, it typically indicates an issue with the establishment of the TLS tunnel, which is required for RadSec's secure communication. The failure of TLS tunnel establishment can occur due to RADIUS TCP packets being dropped, preventing the secure exchange of digital certificates necessary for RadSec authentication. The other options, such as IPv6 address reachability, tracking mode settings, and proxy server misconfiguration, are not directly related to the failure of the TLS tunnel establishment during the certificate exchange process
NEW QUESTION # 94
Refer to the exhibit.


A network administrator is validating client connectivity and executes the show command shown in the exhibit. Which authentication method was used by the wireless station?
- A. 802.1X machine authentication
- B. 802.1X user authentication
- C. WEBauth authentication
- D. MAC authentication
Answer: B
Explanation:
The provided output is from the command:
(MC2) #show auth-tracebuf mac <MAC>
This command traces the authentication exchange between the access point (or mobility controller) and the RADIUS server for a specific client. The trace provides insight into the 802.1X authentication sequence and RADIUS responses.
From the exhibit:
* EAPOL (Extensible Authentication Protocol over LAN) Messages Observed:
* eap-id-req
* eap-id-resp
* eap-req
* eap-resp
* eap-success
These messages clearly indicate that an 802.1X (EAP-based) authentication took place. MAC authentication (MAB) or WebAuth would not include multiple EAP identity and response messages.
* RADIUS Messages:
* rad-req, rad-resp, rad-accept from /RADIUS1
* The presence of rad-accept indicates successful authentication.
Exact extract from ArubaOS (AOS-S/AOS 10 WLAN Authentication Guide):
"When the trace output shows EAP identity requests, EAP responses, and a RADIUS Access-Accept message, the authentication method in use is 802.1X (EAP-based user authentication). The presence of EAP-Success following the Access-Accept confirms successful 802.1X authentication."
* Follow-on WPA2 Key Exchange:
* Lines show wpa2-key1, wpa2-key2, wpa2-key3, and wpa2-key4.
* This sequence occurs after 802.1X authentication completes and is used to establish encryption keys for a WPA2 Enterprise session.
Exact extract from Aruba WLAN Troubleshooting Guide:
"After successful 802.1X authentication (EAP-Success), the controller exchanges four WPA2 keys with the station to derive the session keys used for data encryption. This confirms WPA2-Enterprise with 802.1X was used."
* No Indication of MAC or WebAuth:
* MAC authentication would show mac-auth or macauth messages instead of eap-id-req/resp.
* WebAuth involves HTTP-based redirection and is not visible in auth-tracebuf as EAP transactions.
Exact extract:
"MAC authentication shows 'macauth start' and 'macauth accept' entries, not EAPOL frames. WebAuth authentication uses a web redirect and does not appear as EAP frames in the trace buffer." Therefore, the trace confirms a WPA2-Enterprise 802.1X user authentication, where the user's credentials were validated by the RADIUS server, followed by the WPA2 key handshake.
Why the Other Options Are Incorrect:
* A. MAC authentication:Would show MAC-based request/response entries (macauth), not eap-id-req
/resp.
* C. WEBauth authentication:WebAuth occurs over HTTP/HTTPS and does not involve EAP messages; thus, no eap-id or eap-success would be seen.
* D. 802.1X machine authentication:Machine authentication occurs before user logon and is typically identified in logs by a computer account (e.g., host/computername$). Here, the username and context indicate a user-level session.
References of HPE Aruba Networking Switching Documents or Study Guide:
* ArubaOS 8/10 WLAN Authentication and Security Configuration Guide - "802.1X EAP Authentication and Trace Analysis."
* Aruba WLAN Troubleshooting Guide - "Using show auth-tracebuf to validate EAP authentication."
* Aruba Campus Wireless Design Fundamentals - "Understanding WPA2-Enterprise authentication flow (EAPOL, RADIUS, WPA2 4-Way Handshake)."
* Aruba Access Security and AAA Implementation Guide - "Distinguishing between MAC, WebAuth, and 802.1X authentication in debug outputs."
NEW QUESTION # 95
......
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