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Candidates who become HP HPE6-A85 certified demonstrate their worth in the HP field. The Aruba Certified Campus Access Associate Exam (HPE6-A85) certification is proof of their competence and skills. This is a highly sought-after skill in large HP companies and makes a career easier for the candidate. To become certified, you must pass the Aruba Certified Campus Access Associate Exam (HPE6-A85) certification exam. For this task, you need high-quality and accurate Aruba Certified Campus Access Associate Exam (HPE6-A85) exam dumps. We have seen that candidates who study with outdated Aruba Certified Campus Access Associate Exam (HPE6-A85) practice material don't get success and lose their resources.

HP HPE6-A85 Exam Overview:

Certification Vendor:HPE Aruba Networking
Exam Name:Aruba Campus Access Associate Exam
Exam Number:HPE6-A85
Exam Price:$125 - $150 USD
Exam Duration:90 minutes
Available Languages:Latin American Spanish, English, Japanese
Certificate Validity Period:3 years
Passing Score:67%
Exam Format:Multiple-select, Multiple-choice, Scenario-based
Related Certifications:Aruba Certified Mobility Associate
Aruba Certified Switching Associate
Real Exam Qty:60
Recommended Training:HPE Press Official Study Guide
Aruba Certified Campus Access Associate Training Course
Exam Registration:Pearson VUE Registration
Sample Questions:HP HPE6-A85 Sample Questions
Exam Way:Online proctored or onsite at Pearson VUE test centers
Pre Condition:No formal prerequisites; recommended basic networking knowledge and hands-on experience with Aruba products
Official Syllabus URL:https://www.arubanetworks.com/support-services/training-services/certified-campus-access-associate/

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HP HPE6-A85 (Aruba Campus Access Associate) Certification Exam is a professional certification exam that assesses the knowledge and skills of candidates in the field of networking and wireless technology. Aruba Certified Campus Access Associate Exam certification is designed for IT professionals who work on Aruba wireless networks and want to prove their expertise in designing, implementing, and troubleshooting Aruba wireless networks.

HP HPE6-A85 Exam is made up of sixty-five multiple-choice questions that must be completed within an hour and a half. HPE6-A85 exam can be taken online or at a test center. The minimum passing score for the exam is sixty-six percent. Once an individual passes the exam, they receive the Aruba Certified Campus Access Associate certificate.

HP Aruba Certified Campus Access Associate Exam Sample Questions (Q88-Q93):

NEW QUESTION # 88
A network technician is troubleshooting one new AP at a branch office that will not receive Its configuration from Aruba Central The other APs at the branch are working as expected The output of the 'show ap debug cloud-server command' shows that the "cloud conflg received" Is FALSE.
After confirming the new AP has internet access, what would you check next?

Answer: B

Explanation:
When an Aruba AP is not receiving its configuration from Aruba Central, and other APs at the location are functioning normally, a common troubleshooting step is to disable and then re-enable the activation process on the AP. This action can trigger a provisioning refresh, prompting the AP to attempt to retrieve its configuration from Aruba Central again. This step is often effective in resolving communication or provisioning issues between the AP and the management platform.


NEW QUESTION # 89
What is a weakness introduced into the WLAN environment when WPA2-Personal is used for security?

Answer: C

Explanation:
The weakness introduced into WLAN environment when WPA2-Personal is used for security is that PMK Pairwise Master Key (PMK) is a key that is derived from PSK Pre-shared Key (PSK) is a key that is shared between two parties before communication begins , which are both fixed. This means that all users who know PSK can generate PMK without any authentication process. This also means that if PSK or PMK are compromised by an attacker, they can be used to decrypt all traffic encrypted with PTK Pairwise Temporal Key (PTK) is a key that is derived from PMK, ANonce Authenticator Nonce (ANonce) is a random number generated by an authenticator (a device that controls access to network resources, such as an AP), SNonce Supplicant Nonce (SNonce) is a random number generated by supplicant (a device that wants to access network resources, such as an STA), AA Authenticator Address (AA) is MAC address of authenticator, SA Supplicant Address (SA) is MAC address of supplicant using Pseudo-Random Function (PRF). PTK consists of four subkeys: KCK Key Confirmation Key (KCK) is used for message integrity check, KEK Key Encryption Key (KEK) is used for encryption key distribution, TK Temporal Key (TK) is used for data encryption, MIC Message Integrity Code (MIC) key. .
The other options are not weaknesses because:
* It uses X 509 certificates generated by a Certification Authority: This option is false because WPA2- Personal does not use X 509 certificates or Certification Authority for authentication. X 509 certificates and Certification Authority are used in WPA2-Enterprise mode, which uses 802.1X and EAP ExtensibleAuthentication Protocol (EAP) is an authentication framework that provides support for multiple authentication methods, such as passwords, certificates, tokens, or biometrics. EAP is used in wireless networks and point-to-point connections to provide secure authentication between a supplicant (a device that wants to access the network) and an authentication server (a device that verifies the credentials of the supplicant). for user authentication with a RADIUS server Remote Authentication Dial-In User Service (RADIUS) is a network protocol that provides centralized authentication, authorization, and accounting (AAA) management for users who connect and use a network service .
* The Pairwise Temporal Key (PTK) is specific to each session: This option is false because PTK being specific to each session is not a weakness but a strength of WPA2-Personal. PTK being specific to each session means that it changes periodically during communication based on time or number of packets transmitted. This prevents replay attacks and increases security of data encryption.
* It does not use the WPA 4-Way Handshake: This option is false because WPA2-Personal does use the WPA 4-Way Handshake for key negotiation. The WPA 4-Way Handshake is a process that allows the station and the access point to exchange ANonce and SNonce and derive PTK from PMK. The WPA 4- Way Handshake also allows the station and the access point to verify each other's PMK and confirm the installation of PTK.
References: https://en.wikipedia.org/wiki/Wi-Fi_Protected_Access#WPA_key_hierarchy_and_management
https://www.cwnp.com/wp-content/uploads/pdf/WPA2.pdf


NEW QUESTION # 90
Describe the functionality of ARP.

Answer: C

Explanation:
The Address Resolution Protocol (ARP) is used to map layer-3 IP addresses to layer-2 MAC addresses. When a device on a network wants to communicate with another device, it uses ARP to find the MAC address that corresponds to the IP address it wishes to communicate with, allowing it to construct a frame for the local network.


NEW QUESTION # 91
Why is WPA3-Personal authentication a more secure option than WPA2-PSK?

Answer: B

Explanation:
WPA3-Personal uses Simultaneous Authentication of Equals (SAE), which replaces the WPA2 pre-shared key exchange mechanism. SAE generates a fresh Pairwise Master Key for each authentication attempt, providing stronger protection against offline password-guessing attacks and improving overall security.


NEW QUESTION # 92
Match the switching technology with the appropriate use case.

Answer:

Explanation:

Explanation
USE CASE: a) Controls the dynamic addition and removal of ports to groups Technology: 3) LACP USE CASE: b) Tags Ethernet frames with an additional VLAN header Technology: 1) 802.1Q USE CASE: c) Used to authenticate EAP-Capable client on a switch port Technology: 2) 802.1X USE CASE: d) Used to identify a voice VLAN to an IP phone Technology: 4) LLDP The following table summarizes the switching technologies and their use cases:
Technology
Use case
1) 802.1Q
802.1Q is a standard that defines how to create and manage virtual LANs (VLANs) on a network. VLANs allow network administrators to logically segment a network into different broadcast domains, improving security, performance, and manageability. 802.1Q tags Ethernet frames with an additional VLAN header that contains a VLAN identifier (VID), which indicates which VLAN the frame belongs to1.
2) 802.1X
802.1X is a standard that defines how to provide port-based network access control (PNAC) on a network.
PNAC allows network administrators to authenticate and authorize devices before granting them access to network resources. 802.1X uses the Extensible Authentication Protocol (EAP) to exchange authentication messages between a supplicant (a device that wants to access the network), an authenticator (a device that controls access to the network, such as a switch), and an authentication server (a device that verifies the credentials of the supplicant, such as a RADIUS server)
3) LACP
LACP stands for Link Aggregation Control Protocol, which is part of the IEEE 802.3ad standard that defines how to bundle multiple physical links into a single logical link, also known as a link aggregation group (LAG) or an EtherChannel. LAGs provide increased bandwidth, load balancing, and redundancy for network connections. LACP controls the dynamic addition and removal of ports to groups, ensuring that only ports with compatible configurations can form a LAG3.
4) LLDP
LLDP stands for Link Layer Discovery Protocol, which is part of the IEEE 802.1AB standard that defines how to discover and advertise information about neighboring devices on a network. LLDP operates at Layer 2 of the OSI model and uses TLVs (type-length-value) to exchange information such as device name, port number, VLAN ID, capabilities, and power requirements. LLDP can be used to identify a voice VLAN to an IP phone by sending a TLV that contains the voice VLAN ID and priority.
References: 1 https://en.wikipedia.org/wiki/IEEE_802.1Q 2 https://en.wikipedia.org/wiki/IEEE_802.1X 3
https://en.wikipedia.org/wiki/Link_aggregation
https://en.wikipedia.org/wiki/Link_Layer_Discovery_Protocol


NEW QUESTION # 93
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