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Title: HPE7-A07 Latest Dumps Free, New HPE7-A07 Exam Topics
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HP HPE7-A07 Exam Syllabus Topics:
TopicDetails
Topic 1
  • 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 2
  • 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 3
  • 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 4
  • 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 5
  • 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 6
  • 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 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.
Topic 8
  • 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.

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HP Aruba Certified Campus Access Mobility Expert Written Exam Sample Questions (Q62-Q67):NEW QUESTION # 62
Refer to the exhibit.

To which devices has AP-1 established tunnels?
Answer: B
Explanation:
The command shown in the exhibit is:
Access-1# show ubt state
This command displays the User-Based Tunneling (UBT) status on an Aruba CX switch. UBT allows wired access devices (like CX 6300/6400) to extend tunneled connectivity to Aruba gateways, using GRE tunnels for user traffic.
The output contains the following sections:
1. Local Conductor Server (LCS) State
Primary : 172.16.200.252 ready_for_bootstrap operational_primary
Secondary : 172.16.200.253 ready_for_bootstrap operational_secondary
This confirms that two gateways (IP 172.16.200.252 and 172.16.200.253) form an LCS pair in an Aruba gateway cluster.
Exact extract:
"The Local Conductor Servers (LCS) represent the pair of Aruba Gateways that control and terminate UBT tunnels. One operates as the primary (active) and the other as the secondary (standby). These gateways must be configured as a cluster pair."
2. Switch Anchor Controller (SAC) State
Active : 172.16.200.252 20:4c:03:81:e7:ca registered
Standby : 172.16.200.253 20:4c:03:b2:12:0a registered
Both gateways are registered as active and standby switch anchor controllers. This is a clear indication that the switch (Access-1) has successfully established tunnels to both gateways within the cluster.
Exact extract:
"The Switch Anchor Controller (SAC) section lists both cluster members to which the switch forms GRE tunnels. The switch maintains active and standby tunnels for redundancy."
3. User Anchor Controller (UAC) State
Each connected user is mapped to a User Anchor Controller (UAC) - one of the two gateways - depending on cluster load balancing:
User Anchor Controller (UAC): 172.16.200.252
User Anchor Controller (UAC): 172.16.200.253
Each user session is anchored on a specific gateway within the cluster. The presence of two different UAC IPs confirms that users are being distributed across both gateways - a behavior that occurs only in a clustered gateway configuration.
Exact extract:
"In a clustered gateway deployment, each user session is dynamically anchored to one of the gateways. The UAC field shows which gateway currently handles each user session." Conclusion:
From the output:
* Two gateways are shown as primary and secondary LCS.
* Both are registered as SACs (tunnel endpoints).
* Users are distributed across both gateways as UACs.
This confirms that Access-1 (the CX switch) has established GRE tunnels to a pair of gateways within a cluster.
Hence, the correct answer is A. A pair of gateways within a cluster.
Why the Other Options Are Incorrect:
* B. A pair of switches running VXLAN:UBT tunnels are GRE-based and terminate on Aruba Gateways, not VXLAN-enabled switches.
"User-Based Tunneling uses GRE tunnels to Aruba Gateways; VXLAN is not used for UBT."
* C. A single gateway within a cluster:The output explicitly shows two controllers (active and standby) registered - not a single one.
* D. A pair of standalone gateways:The LCS state shows primary/secondary operational roles, which exist only in a cluster, not standalone gateways.
References of HPE Aruba Networking Switching Documents or Study Guide:
* ArubaOS-CX Access Security and UBT Configuration Guide - "Understanding User-Based Tunneling (UBT), LCS, SAC, and UAC roles."
* Aruba Gateway Clustering and Redundancy Guide - "Cluster operation and role distribution for UBT."
* Aruba Campus Wired and Wireless Integration Guide - "How CX switches form UBT tunnels to clustered Aruba gateways."
* Aruba Zero Trust Access Design Guide - "High availability with UBT across gateway clusters."

NEW QUESTION # 63
Which command would allow you to verity receipt of a CoA message on an AOS 10 GW?
Answer: B
Explanation:
The Change of Authorization (CoA) messages are used in network access control scenarios and are typically received by the network access server, in this case, an Aruba AOS 10 Gateway. The correct command to verify the receipt of a CoA message is related to the control path traffic because CoA is a control plane function.
Option B,packet-capture controlpath udp 3799, is the correct answer because it specifies capturing control plane traffic on UDP port 3799, which is the standard port for CoA messages.
Options A, C, and D are incorrect because:
Option A captures data plane traffic, not control plane traffic.
Option C'spacket-capture interprocess udp 3799does not refer to a standard command for capturing CoA messages.
Option D,tcpdump host-port 3799, does not specify the correct syntax for capturing traffic on Aruba devices.

NEW QUESTION # 64
Exhibit.

Which wireless connection phase has Just been completed?
Answer: A
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 # 65
A customer is evaluating device profiles on a CX 6300 switch. The test device has the following attributes:
* MAC address = 81:cd:93:13:ab:31
* LLDP sys-desc = iotcontroller
The test device is being assigned to the ''lot-dev'' role However, the customer requires the "lot-prod'' role be applied.

Given the configuration, what is causing the "iot-dev" role to be applied to the device'?
Answer: B
Explanation:
In device profile configuration, the device role is often determined by matching attributes such as MAC address, LLDP system description, and CDP information against defined conditions. The test device is being assigned the "iot-dev" role because its LLDP system description matches the 'iot-lldp' group configuration that is associated with the 'iot-dev' role.

NEW QUESTION # 66
Which statement is true given the following CLI output from a CX 6300?

Answer: B
Explanation:
The CLI output displays EVPN routes and their corresponding next hops. The "Route Distinguisher" entries followed by IP addresses in the 172.21.11.x range indicate these are loopback addresses used by the underlay network. The underlay network provides the basic routing and forwarding plane for the overlay network that EVPN is part of. These loopback addresses are crucial for the proper functioning of the EVPN control plane.

NEW QUESTION # 67
......
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