FREE PDF HP - HPE7-A01 - ARUBA CERTIFIED CAMPUS ACCESS PROFESSIONAL EXAM AUTHORITATIVE NEW EXAM MATERIALS

Free PDF HP - HPE7-A01 - Aruba Certified Campus Access Professional Exam Authoritative New Exam Materials

Free PDF HP - HPE7-A01 - Aruba Certified Campus Access Professional Exam Authoritative New Exam Materials

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HP HPE7-A01 certification exam is designed for IT professionals who are seeking to validate their skills and knowledge in the area of Aruba campus access solutions. HPE7-A01 exam is intended to assess the candidate's ability to design, implement, and manage wireless networks using Aruba products and technologies. HPE7-A01 Exam covers a broad range of topics, including Aruba wireless access points, controllers, and management software, as well as network security, troubleshooting, and best practices.

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HP HPE7-A01 Exam Questions - Updated Frequently

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HP HPE7-A01 exam is a challenging and comprehensive exam that requires a solid understanding of Aruba WLANs and related technologies. To prepare for HPE7-A01 exam, candidates can take advantage of various resources, including online courses, study guides, and practice exams. With the right preparation and dedication, IT professionals can successfully pass the HP HPE7-A01 Exam and earn the Aruba Certified Campus Access Professional certification.

HP Aruba Certified Campus Access Professional Exam Sample Questions (Q14-Q19):

NEW QUESTION # 14
A customer is using a legacy application that communicates at layer-2. The customer would like to keep this application working to a remote site connected via layer-3 All legacy devices are connected to a dedicated Aruba CX 6200 switch at each site.
What technology on the Aruba CX 6200 could be used to meet this requirement?

  • A. Ethernet over IP (EolP)
  • B. Static VXLAN
  • C. Generic Routing Encapsulation (GRE)
  • D. Inclusive Multicast Ethernet Tag (IMET)

Answer: B

Explanation:
Explanation
VXLAN is a technology that can be used to meet the requirement of using a legacy application that communicates at layer-2 across a layer-3 network. Static VXLAN is a feature that allows the creation of layer-2 overlay networks over a layer-3 underlay network using VXLAN tunnels. Static VXLAN does not require any control plane protocol or VTEP discovery mechanism, and can be configured manually on the Aruba CX 6200 switches. The other options are incorrect because they either do not support layer-2 communication over layer-3 network or are not supported by Aruba CX 6200 switches. References:
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch03.html
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch05.html


NEW QUESTION # 15
You need to create a keepalive network between two Aruba CX 8325 switches for VSX configuration How should you establish the keepalive connection?

  • A. SVI, VLAN trunk allowed all on ISL in custom VRF
  • B. loopback 0 and OSPF area 0 in default VRF
  • C. routed port in custom VRF
  • D. SVI, VLAN trunk allowed all on ISL in default VRF

Answer: C

Explanation:
To establish a keepalive connection between two Aruba CX 8325 switches for VSX configuration, you need to use a routed port in custom VRF. A routed port is a physical port that acts as a layer 3 interface and does not belong to any VLAN. A custom VRF is a virtual routing and forwarding instance that provides logical separation of routing tables. By using a routed port in custom VRF, you can isolate the keepalive traffic from other traffic and prevent routing loops or conflicts. The other options are incorrect because they either do not use a routed port or do not use a custom VRF.
References:
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch07.html
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch02.html


NEW QUESTION # 16
Which statement best describes QoS?

  • A. Scoring traffic based on the quality of the contents
  • B. Determining which traffic passes specified quality metrics
  • C. Identifying specific traffic for special treatment
  • D. Identifying the quality of the connection

Answer: B

Explanation:
QoS stands for Quality of Service and is a mechanism that allows network devices to prioritize and differentiate traffic based on certain criteria, such as application type, source, destination, etc3. QoS involves identifying specific traffic for special treatment and applying policies and actions to improve its performance or meet certain service level agreements (SLAs)3. QoS can help network devices to manage congestion, delay, jitter, packet loss, bandwidth allocation, etc., for different types of traffic3. QoS can be implemented at various layers of the network stack and across different network domains. Reference: 3 https://www.cisco.com/c/en/us/td/docs/ios-xml/ios/qos/configuration/15-mt/qos-15-mt-book/qos-overview.html


NEW QUESTION # 17
Refer to the exhibit.

With Core-1. what is the default value for config-revision?

  • A. 0. 0
  • B. 1-0
  • C. 0
  • D. 1

Answer: C

Explanation:
Explanation
The default value for config-revision on Core-1 is 0. Config-revision is a parameter that indicates the configuration version of a VSX pair. It is used to synchronize the configuration between the VSX peers and to detect any configuration mismatch. The config-revision value is set to 0 by default on both VSX peers and is incremented by 1 every time a configuration change is made on either peer. The other options are incorrect because they do not reflect the default value of config-revision. References:
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch07.html
https://www.arubanetworks.com/techdocs/AOS-CX/10.04/HTML/5200-6728/bk01-ch02.html


NEW QUESTION # 18
Your Aruba CX 6300 VSF stack has OSPF adjacency over SVI 10 with LAG 1 to a neighboring device.
The following configuration was created on the switch:

  • A.
  • B.
  • C.
  • D.

Answer: A

Explanation:
The correct configuration for OSPF adjacency over SVI 10 with LAG 1 to a neighboring device is shown in Option C.
The configuration includes the following steps:
* Create a VLAN 10 and assign it a name and an IP address.
* Create a LAG 1 and assign it a name and a mode of dynamic or static.
* Add member ports to LAG 1 and enable the LAG interface.
* Assign VLAN 10 as the untagged VLAN for LAG 1.
* Enable OSPF on the switch and assign it a router ID.
* Create an OSPF area 0 and add SVI 10 as an interface in that area.
Option A is incorrect because it does not enable OSPF on the switch or create an OSPF area. Option B is incorrect because it assigns VLAN 10 as the tagged VLAN for LAG 1, which is not compatible with SVI 10.
Option D is incorrect because it does not add member ports to LAG 1 or enable the LAG interface.
References:
https://techhub.hpe.com/eginfolib/Aruba/OS-CX_10.04/5200-6692/GUID-BD3E0A5F-FE4C-4B9B-BE1D-FE7D
https://techhub.hpe.com/eginfolib/Aruba/OS-CX_10.04/5200-6692/GUID-BD3E0A5F-FE4C-4B9B-BE1D-FE7D


NEW QUESTION # 19
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