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[General] HPE7-A07 New Study Notes | HPE7-A07 Actual Exam Dumps

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【General】 HPE7-A07 New Study Notes | HPE7-A07 Actual Exam Dumps

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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
  • 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 4
  • 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 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 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 7
  • 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 8
  • 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 9
  • 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.

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HP Aruba Certified Campus Access Mobility Expert Written Exam Sample Questions (Q68-Q73):NEW QUESTION # 68
Exhibit.

Which wireless connection phase has Just been completed?
  • A. L3 authentication and encryption
  • B. 802.11 enhanced open association
  • C. L2 authentication and encryption
  • D. MAC Authentication and 4-way handshake
Answer: C
Explanation:
The wireless connection phase that has just been completed is L2 authentication and encryption. This phase includes processes such as the Extensible Authentication Protocol (EAP) exchange, RADIUS requests and responses, and the 4-way handshake which is characteristic of WPA2-AES encryption.

NEW QUESTION # 69

Which statement is true given the following CLI output from a CX 6300?
  • A. The overlay loopback addresses are advertised in the fabric with 24-bit subnet masks
  • B. There are no active fabric clients on the CX switch with RD 172.16.10.1
  • C. A wired client with IP address 10.203.1.100 is on a remote CX 6300 in the fabric with loopback IP address 172.21.11.2
  • D. A wired client with IP address 10.203.1.100 has a host route that is not being properly advertised
Answer: C
Explanation:
The CLI output shown is from the Aruba CX 6300 running AOS-CX, displaying the routing table in an EVPN-VXLAN fabric environment.
Key details from the output:
Prefix Nexthop Interface Origin/Type Distance/Metric
10.203.1.0/24 - vlan203 C [0/0]
10.203.1.1/32 - vlan203 L [0/0]
10.203.1.100/32 172.21.11.2 - B/EV [200/0]
172.21.11.4/32 172.21.11.2 - B/EV [200/0]
172.21.11.5/32 - loopback3 L [0/0]
From this, we can interpret the following:
* Routes marked as B/EV originate from BGP EVPN, meaning they are advertised and learned over the VXLAN fabric.
* The next hop 172.21.11.2 indicates that these routes are learned from another fabric device with loopback address 172.21.11.2.
* The route 10.203.1.100/32 is a host route (specific endpoint) reachable via that remote switch.
According to the Aruba CX EVPN-VXLAN Fabric Deployment Guide:
"In a VXLAN fabric, host routes (/32) are dynamically advertised using EVPN Type 2 routes.
These routes include MAC/IP bindings of endpoints connected to remote VTEPs (loopbacks).
The next-hop address in the routing table corresponds to the VTEP IP (loopback address) of the remote switch where the client resides." Thus, the presence of a /32 route (10.203.1.100/32) with next hop 172.21.11.2 indicates that this wired client resides behind another CX 6300 fabric node whose VTEP address is 172.21.11.2.
Option Analysis:
* A. Correct - The /32 route confirms that 10.203.1.100 is reachable via remote CX at 172.21.11.2 (remote VTEP).
* B. Incorrect - The RD information isn't shown here; this statement cannot be validated and contradicts visible EVPN entries.
* C. Incorrect - The route is properly advertised and reachable via EVPN; no indication of advertisement failure.
* D. Incorrect - Overlay loopbacks (172.21.11.x) are advertised as /32 host routes, not /24 subnets.
Final Verified answer: A
Reference Sources (HPE Aruba Official Materials):
* Aruba AOS-CX EVPN-VXLAN Fabric Deployment and Configuration Guide
* Aruba CX 6300 Routing and BGP Configuration Guide
* Aruba Certified Switching Professional (ACSP) Study Guide - EVPN-VXLAN Route Interpretation

NEW QUESTION # 70
Exhibit.

An engineer has applied the above configuration to R1 and R2 However the routers OSPF adjacency never progresses past the "EXSTART-DR" slate as shown below.

Which configuration action on either router will allow R1 and R2 to progress past the "EXSTART/DR" state?
  • A. Ensure the OSPF process is not configured with passive-interface default.
  • B. Remove the layer 3 MTU configuration.
  • C. Change the IP address and mask applied to interface 1/1/1.
  • D. Change R1 and R2 to a network type of point-to-point.
Answer: D
Explanation:
In OSPF, the "EXSTART/DR" state indicates that the routers are trying to establish an adjacency but are unable to progress. This can happen if the OSPF network type is incorrectly configured for the type of connection between the routers. Given that R1 and R2 are connected via a point-to-point link (as suggested by the /31 subnet), setting the network type to point-to-point on both routers will remove the need for DR/BDR election, which is unnecessary on a point-to-point link, and allow OSPF to progress past the "EXSTART" state and form a full adjacency.

NEW QUESTION # 71
A customer has recently deployed a wireless system using AP-535S to provide connectivity for their employees who are responsible tor uploading large video files for review. The customer wants to use features that provide throughput gains for large data uploads.
Which feature can be enabled to meet the requirement and simultaneously allow spatially separated clients access to the channel?
  • A. Ul-TXBF
  • B. OFOMA
  • C. UL MU-MIMO
  • D. DL MU-MIMO
Answer: C
Explanation:
UL MU-MIMO, or Uplink Multi-User Multiple Input Multiple Output, is a technology that allows multiple clients to transmit data to the access point simultaneously, increasing overall throughput and efficiency, especially for upload-heavy scenarios like video file uploads. This technology enables spatially separated clients to access the channel at the same time, which can improve performance for clients when uploading large files.

NEW QUESTION # 72
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?
  • A. Remove mac-authentication from the WLAN configuration
  • B. Modify opmode wpa3-aes-gcm-256 to opmode wpa2-aes
  • C. Add i2-autn-fairtnrougn to the WLAN configuration
  • D. Modify max-authentication failures to 0.
Answer: A
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 # 73
......
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