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HP HPE7-A01 exam is a great way for IT professionals to showcase their skills and knowledge in Aruba wireless and wired networks. By passing HPE7-A01 exam, candidates can demonstrate to employers and clients that they have the expertise needed to design, deploy, and maintain Aruba networks in campus environments. Aruba Certified Campus Access Professional Exam certification can also lead to career advancement opportunities and higher salaries.

HP HPE7-A01 (Aruba Certified Campus Access Professional) Certification Exam is a certification exam that is designed for individuals who wish to validate their skills and expertise in implementing and managing enterprise-level Aruba wireless networks. Aruba Certified Campus Access Professional Exam certification exam is a globally recognized certification that is highly valued by employers in the IT industry.

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HP Aruba Certified Campus Access Professional Exam Sample Questions (Q123-Q128):

NEW QUESTION # 123
You need to drop excessive broadcast traffic on an ingress port or an ArubaOS-CX switch. What is the best feature to use for this task?

  • A. Rate limiting
  • B. QoS shaping
  • C. Strict queuing
  • D. DWRR queuing

Answer: A

Explanation:
According to the Aruba Documentation Portal1, the ArubaOS-CX switch supports various features to control the ingress traffic on specific ports, such as rate limiting, QoS shaping, and access control. These features can help reduce the impact of excessive broadcast traffic on the network performance and availability.
This is because rate limiting is a feature that allows you to limit the inbound or outbound traffic on a port based on a percentage of the port capacity or a fixed amount of bytes per second. Rate limiting can help prevent broadcast storms by reducing the amount of broadcast packets that enter or leave a port
https://www.arubanetworks.com/techdocs/central/latest/content/nms/aos-cx/cfg/conf-cx-access-control.htm 2:
https://community.arubanetworks.com/blogs/esupport1/2021/02/08/broadcast-storm-containment-in-aruba-pvos-


NEW QUESTION # 124
A customer is using stacked Aruba CX 6200 and CX 6300 switches for access and a VSX pair of Aruba CX
8325 as a collapsed core 802 1X is implemented for authentication. Due to the lack of cabling, some unmanaged switches are still in use Sometimes devices behind these switches cause network outages The switch should send a warning to the helpdesk when the problem occurs You have been asked to implement an effective solution to the problem What is the solution for this?

  • A. Configure spanning tree on the Aruba CX 8325 switches Set the trap-option
  • B. Configure spanning tree on the Aruba CX 6200 and CX 6300 switches No trap option is needed
  • C. Configure loop protection on all edge ports of the Aruba CX 6200 and CX 6300 switches Set up the trap-option
  • D. Configure loop protection on all edge ports of the Aruba CX 6200 and CX 6300 switches No trap option is needed

Answer: C

Explanation:
This is the correct solution to the problem of devices behind unmanaged switches causing network outages due to loops. Loop protection is a feature that allows an Aruba CX switch to detect and prevent loops by sending loop protection packets on each port, LAG, or VLAN on which loop protection is enabled. If a loop protection packet is received by the same switch that sent it, it indicates a loop exists and an action is taken based on the configuration. Loopprotection should be configured on all edge ports of the Aruba CX 6200 and CX 6300 switches, which are the ports that connect to end devices or unmanaged switches. The trap-option should be set up to send a warning to the helpdesk when a loop is detected. The other options are incorrect because they either do not configure loop protection or do not set up the trap-option. References:
https://www.arubanetworks.com/techdocs/AOS-CX/10.05/HTML/5200-7540/GUID-99A8B276-0DA3-4458-AF
https://www.arubanetworks.com/techdocs/AOS-CX/10.05/HTML/5200-7540/GUID-D8613BDE-CD21-4B83-85


NEW QUESTION # 125
What is enabled by LLDP-MED? (Select two.)

  • A. Voice VLANs can be automatically configured for VoIP phones
  • B. GVRP VLAN information can be used to dynamically add VLANs to a trunk
  • C. iSCSl client devices can set the required MTU setting for the port.
  • D. APs can request power as needed from PoE-enabled switch ports
  • E. iSCSl client devices can request to have flow control enabled

Answer: A,D

Explanation:
Explanation
These are two benefits enabled by LLDP-MED (Link Layer Discovery Protocol - Media Endpoint Discovery).
LLDP-MED is an extension of LLDP that provides additional capabilities for network devices such as VoIP phones and APs. One of the capabilities is to automatically configure voice VLANs for VoIP phones, which allows them to be placed in a separate VLAN from data devices and receive QoS and security policies.
Another capability is to request power as needed from PoE-enabled switch ports, which allows APs to adjust their power consumption and performance based on the available power budget. The other options are incorrect because they are either not enabled by LLDP-MED or not related to LLDP-MED. References:
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/wlan-qos/lldp-me
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/wlan-rf/poe.htm


NEW QUESTION # 126
A customer wants to provide wired security as close to the source as possible The wired security must meet the following requirements:
-allow ping from the IT management VLAN to the user VLAN
-deny ping sourcing from the user VLAN to the IT management VLAN
The customer is using Aruba CX 6300s
What is the correct way to implement these requirements?

  • A. Apply an outbound ACL on the user VLAN denying icmp echo traffic toward the IT management VLAN
  • B. Apply an inbound ACL on the user VLAN allowing icmp echo-reply traffic toward the IT management VLAN
  • C. Apply an outbound ACL on the user VLAN allowing temp echo-reply traffic toward the IT management VLAN
  • D. Apply an inbound ACL on the user VLAN denying icmp echo traffic toward the IT management VLAN

Answer: D

Explanation:
An inbound ACL is applied to traffic entering a port or VLAN. An outbound ACL is applied to traffic leaving a port or VLAN4. To deny ping sourcing from the user VLAN to the IT management VLAN, an inbound ACL on the user VLAN should be used to filter icmp echo traffic toward the IT management VLAN. Icmp echo-reply traffic is not needed to be allowed because it is already permitted by default5. Reference: 4 https://techhub.hpe.com/eginfolib/Aruba/OS-CX_10.04/5200-6692/GUID-9B8F6E8F-9C7A-4F0D-AE7B-9D8E6C5B6A7F.html 5 https://techhub.hpe.com/eginfolib/Aruba/OS-CX_10.04/5200-6692/GUID-0C3A9D0F-6E5B-4E1A-AF3C-8D8B2F9C1A7B.html


NEW QUESTION # 127
The customer needs a network hardware refresh to replace an aging Aruba 5406R core switch pair using spanning tree configuration with Aruba CX 8360-32YC switches.
What is the benefit of VSX clustering with the new solution?

  • A. stacked data-plane
  • B. faster MSTP converge processing
  • C. dual control plane provides better resiliency
  • D. dual Aruba AP LAN port connectivity for PoE redundancy

Answer: C

Explanation:
VSX clustering is a feature that allows two Aruba CX switches to operate as a single logical device, providing high availability, scalability, and simplified management.
VSX clustering has several benefits over spanning tree configuration, such as:
* Dual control plane provides better resiliency. Unlike stacking, where switches share a single control plane, VSX switches have independent control planes that synchronize their states over an inter-switch link (ISL). This means that if one switch fails or reboots, the other switch can continue to operate without affecting traffic flows or network services.
* Active-active forwarding provides better performance. Unlike spanning tree, where some links are blocked to prevent loops, VSX switches use all available links for forwarding traffic, providing load balancing and increased bandwidth utilization.
* Multichassis LAG provides better redundancy. Unlike single-chassis LAG, where all member ports belong to one switch, VSX switches can form multichassis LAGs with downstream or upstream devices, where member ports are distributed across both switches. This provides link redundancy and seamless failover in case of switch or port failure.
References: https://www.arubanetworks.com/assets/tg/TG_VSX.pdf


NEW QUESTION # 128
......

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