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HPE6-A85 Practice Exam & HPE6-A85 Valid Dumps Ebook

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It is generally acknowledged that candidates who earn the HPE6-A85 certification ultimately get high-paying jobs in the tech market. Success in the HP HPE6-A85 exam not only validates your skills but also helps you get promotions. To pass the HPE6-A85 test in a short time, you must prepare with HPE6-A85 exam questions that are real and updated. Without studying with HP HPE6-A85 actual questions, candidates fail and waste their time and money.

The HP HPE6-A85 exam is designed for professionals who are involved in designing, installing, configuring, and maintaining wireless networks using Aruba products and technologies. Aruba Campus Access Associate Exam certification is geared towards system engineers, technical support engineers, and network administrators. HPE6-A85 Exam validates the foundational skills needed to configure and manage medium-sized wireless networks using Aruba products.

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HP HPE6-A85 Certification is ideal for IT professionals who want to advance their careers in the field of wireless networking. Aruba Campus Access Associate Exam certification demonstrates that the candidate has the knowledge and skills to design and deploy Aruba wireless networks in campus environments. Aruba Campus Access Associate Exam certification is also a great way for IT professionals to validate their skills and knowledge to potential employers, as well as to gain recognition within the industry.

HP Aruba Campus Access Associate Exam Sample Questions (Q37-Q42):

NEW QUESTION # 37
Which three channels can be used simultaneously in a 2.4GHz WLAN environment while avoiding any co-channel interference?

  • A. 1,5, 10
  • B. 2,7, 11
  • C. 3,6, 9
  • D. 1,6, 11

Answer: D

Explanation:
In a 2.4GHz WLAN environment, channels 1, 6, and 11 are recommended for use simultaneously to avoid co-channel interference because these channels do not overlap with each other. Each of these channels is separated by enough frequency space to ensure that the signals do not interfere, which is not the case with other channel combinations.


NEW QUESTION # 38
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)2.
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 # 39
A network technician has successfully connected to the employee SSID via 802 1X Which RADIUS message should you look for to ensure a successful connection?

  • A. Authorized
  • B. Access-Accept
  • C. Success
  • D. Authenticated

Answer: B

Explanation:
The RADIUS message that you should look for to ensure a successful connection via 802.1X is Access- Accept. This message indicates that the RADIUS server has authenticated and authorized the supplicant (the device that wants to access the network) and has granted it access to the network resources. The Access- Accept message may also contain additional attributes such as VLAN ID, session timeout, or filter ID that specify how the authenticator (the device that controls access to the network, such as a switch) should treat the supplicant's traffic.
The other options are not RADIUS messages because:
* Authorized: This is not a RADIUS message, but a state that indicates that a port on an authenticator is allowed to pass traffic from a supplicant after successful authentication and authorization.
* Success: This is not a RADIUS message, but a status that indicates that an EAP Extensible Authentication 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). exchange has completed successfully between a supplicant and an authentication server.
* Authenticated: This is not a RADIUS message, but a state that indicates that a port on an authenticator has received an EAP-Success message from an authentication server after successful authentication of a supplicant.
References: https://en.wikipedia.org/wiki/RADIUS#Access-Accept https://www.cisco.com/c/en/us/support
/docs/security-vpn/remote-authentication-dial-user-service-radius/13838-10.html https://en.wikipedia.org/wiki
/IEEE_802.1X#Port-based_network_access_control https://en.wikipedia.org/wiki
/Extensible_Authentication_Protocol#EAP_exchange


NEW QUESTION # 40
Refer to the exhibit.

In the given topology, a pair of Aruba CX 8325 switches are in a VSX stack using the active gateway.
What is the nature and behavior of the Virtual IP for the VSX pair if clients are connected to the access switch using VSX as the default gateway?

  • A. Virtual IP uses SVI IP address synced with VSX
  • B. Virtual floating IP will failover in case of a failure
  • C. Virtual IP is active on both CX switches
  • D. Virtual IP is active on the primary VSX switch

Answer: D

Explanation:
Virtual Switching Extension (VSX) is a feature that allows two Aruba CX switches to operate as a single logical device with a single control plane and data plane. VSX provides high availability, scalability, and simplified management for campus and data center networks3. In VSX, one switch is designated as the primary switch and the other as the secondary switch. The primary switch owns and responds to ARP Address Resolution Protocol. ARP is a communication protocol used for discovering the link layer address, such as a MAC address, associated with a given internet layer address, typically an IPv4 address. This mapping is a critical function in the Internet protocol suite. requests for the virtual IP address of the VSX pair4. The virtual IP address is used as the default gateway for clients connected to the access switch. If the primary switch fails, the secondary switch takes over the virtual IP address and continues to forward traffic for the clients5.
References:
3 https://www.arubanetworks.com/techdocs/AOS-CX_10_04/UG/Content/cx-ug/vsx/vsx-overview.htm
4 https://www.arubanetworks.com/techdocs/AOS-CX_10_04/UG/Content/cx-ug/vsx/vsx-ip- addressing.htm
5 https://www.arubanetworks.com/techdocs/AOS-CX_10_04/UG/Content/cx-ug/vsx/vsx-failover.htm


NEW QUESTION # 41
What is the correct order of the TCP 3-Way Handshake sequence?

Answer:

Explanation:

1 - The initiating host sends a packet with no data to the target host with a SEQ=1 and sets the SYN flag to 1.
2 - The target host responds with a packet with ACK=2, SEQ=8, and the SYN and ACK flags set to 1.
3 - The initiating host sends a packet with SEQ=2, ACK=9, and the ACK flag set to 1.
4 - A normal-controlled connection is established.


NEW QUESTION # 42
......

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