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HP HPE7-A01 Exam Overview:

Certification Vendor:HPE Aruba Networking
Exam Name:Aruba Certified Campus Access Professional Exam
Exam Number:HPE7-A01
Related Certifications:Aruba Certified Campus Access Associate
Aruba Certified Network Security Professional
Exam Duration:120 minutes
Exam Price:$195 - $350 USD
Passing Score:68%
Real Exam Qty:75
Exam Format:Multiple-choice, Scenario-based, Multiple-select
Available Languages:Latin American Spanish, English, Japanese
Certificate Validity Period:3 years
Recommended Training:Implementing Campus Access (Rev. 23.11)
Official Study Guide
Exam Registration:Pearson VUE Registration
Sample Questions:HP HPE7-A01 Sample Questions
Exam Way:Online proctored or onsite testing center via Pearson VUE
Pre Condition:No mandatory prerequisites; recommended experience with Aruba wired/wireless campus networks
Official Syllabus URL:https://certification-learning.hpe.com/tr/datacard/exam/HPE7-A01

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HP HPE7-A01 certification exam is a vendor-neutral certification that is recognized globally. It is designed to test the abilities of IT professionals in terms of the deployment, management, and troubleshooting of Aruba's wireless network solutions. Aruba Certified Campus Access Professional Exam certification exam is comprised of 60 multiple-choice questions, and candidates have 90 minutes to complete the exam. Aruba Certified Campus Access Professional Exam certification is valid for three years, and candidates must recertify to maintain their certification status. Overall, the HPE7-A01 Certification Exam is an excellent choice for IT professionals who want to prove their proficiency in Aruba's wireless networking solutions and enhance their career prospects in the IT industry.

HP Aruba Certified Campus Access Professional Exam Sample Questions (Q76-Q81):

NEW QUESTION # 76
A company recently deployed new Aruba Access Points at different branch offices Wireless 802.1X authentication will be against a RADIUS server in the cloud. The security team is concerned that the traffic between the AP and the RADIUS server will be exposed.
What is the appropriate solution for this scenario?

Answer: C

Explanation:
This is the appropriate solution for this scenario where wireless 802.1X authentication will be against a RADIUS server in the cloud and the security team is concerned that the traffic between the AP and the RADIUS server will be exposed. RadSec, also known as RADIUS over TLS, is a protocol that provides encryption and authentication for RADIUS traffic over TCP and TLS. RadSec can be configured on both the AP and the RADIUS server to establish a secure tunnel for exchanging RADIUS packets. The other options are incorrect because they either do not provide encryption or authentication for RADIUS traffic or do not involve RadSec. Reference: https://www.securew2.com/blog/what-is-radsec/ https://www.cloudradius.com/radsec-vs-radius/


NEW QUESTION # 77
Your customer is having connectivity issues with a newly-deployed Microbranch group The access points in this group are online in Aruba Central, but no VPN tunnels are forming.
What is the most likely cause of this issue?

Answer: C

Explanation:
Explanation
This is the most likely cause of the issue where the access points in a Microbranch group are online in Aruba Central, but no VPN tunnels are forming. A Microbranch group is a group that contains both APs and Gateways and allows them to form VPN tunnels for secure communication. The VPN tunnels use GRE (Generic Routing Encapsulation) as the encapsulation protocol and IPSec as the encryption protocol. If there is a firewall blocking GRE traffic between the AP and the gateway, the VPN tunnels cannot be established. The other options are incorrect because they either do not affect the VPN tunnel formation or do not apply to a Microbranch group. References:
https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/gateways/microb
https://www.arubanetworks.com/assets/tg/TB_ArubaGateway.pdf


NEW QUESTION # 78
A customer is concerned about me unprotected traffic between an AOS-CX switch and a gateway, running on AOStO. What is a feasible option to protect this traffic?

Answer: A

Explanation:
According to the Aruba Documentation Portal1, PAPI (Port Aggregation Protocol) is a protocol that allows multiple physical ports to be aggregated into a single logical port for increased bandwidth and performance.
PAPI can be used between AOS-CX switches and gateways, or between AOS-CX switches and other devices.
Option A: Implement an IPSec tunnel to protect PAPI between the AOS-CX switches and the gateway This is because option A shows how to implement an IPSec tunnel between two devices using the interface command and the ipsec command. An IPSec tunnel can provide encryption and authentication for PAPI traffic between two devices, such as an AOS-CX switch and a gateway2.
Therefore, option A is a feasible option to protect this traffic.
I hope this helps you. If you need more information, please let me know. #
1: https://www.arubanetworks.com/techdocs/AOS-CX/10.06/HTML/5200-7727/Content/Chp_prev_traf_loss/Act_gtw_act_fwd/act-gat-ove-vsx-10.htm
2: https://community.arubanetworks.com/blogviewer?blogkey=989fc43a-e0df-42db-9c0b-f96d6565a1fa


NEW QUESTION # 79
For the Aruba CX 6400 switch, what does virtual output queueing (VOQ) implement that is different from most typical campus switches?

Answer: B

Explanation:
The Aruba CX 6400 switch is a modular switch that supports high-performance and high-density Ethernet switching for campus and data center networks. One of the features that distinguishes the Aruba CX 6400 switch from most typical campus switches is virtual output queueing (VOQ). VOQ is a technique that implements large ingress packet buffers on each port to prevent head-of-line blocking and packet loss due to congestion2. VOQ allows each port to have multiple queues for different output ports and prioritize packets based on their destination and QoS class2. VOQ enables the Aruba CX 6400 switch to achieve high throughput and low latency for various traffic types and scenarios.References: 2
https://www.arubanetworks.com/assets/ds/DS_CX6400Series.pdf


NEW QUESTION # 80
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:

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 # 81
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