HPE6-A85 STUDY GUIDE PDF - HPE6-A85 LATEST EXAM ONLINE

HPE6-A85 Study Guide Pdf - HPE6-A85 Latest Exam Online

HPE6-A85 Study Guide Pdf - HPE6-A85 Latest Exam Online

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Tags: HPE6-A85 Study Guide Pdf, HPE6-A85 Latest Exam Online, HPE6-A85 Latest Test Format, HPE6-A85 Exam Tests, Study HPE6-A85 Center

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HPE6-A85 Latest Exam Online & HPE6-A85 Latest Test Format

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One of the key benefits of the HPE6-A85 exam is that it provides IT professionals with a comprehensive understanding of Aruba’s wireless networking solutions, which are widely used in enterprise environments around the world. Students who pass the exam will be able to design, deploy, and troubleshoot Aruba wireless networks, as well as configure access points, switches, and other key components of the Aruba ecosystem. In addition to providing valuable skills and knowledge, the HPE6-A85 Exam can also boost an IT professional’s career prospects by demonstrating their expertise in Aruba networking solutions.

HP Aruba Campus Access Associate Exam Sample Questions (Q19-Q24):

NEW QUESTION # 19
Where are wireless client roaming decisions made?

  • A. Virtual Controller
  • B. Joint decision made by the origination and destination APs
  • C. Aruba Central
  • D. Client device

Answer: D

Explanation:
Wireless client roaming decisions are made by the client device based on its own criteria, such as signal strength, noise level, data rate, etc. The network can influence the client's roaming decision by providing information such as neighbor reports, load balancing, band steering, etc., but the final decision is up to the client.References:https://www.arubanetworks.com/techdocs/Instant_86_WebHelp/Content/instant-ug/wlan- roaming/client-roaming.htm Wireless client roaming decisions are primarily made by the client device itself. The client device monitors the signal strength and quality of the current connection and decides to roam to a different Access Point (AP) when the current signal deteriorates below a certain threshold or a better option is available. While APs and controllers can provide information and support for roaming decisions through protocols like 802.11k and
802.11v, the ultimate decision to roam is made by the client device based on its algorithms and thresholds.


NEW QUESTION # 20
How does the Aruba Central platform assist in managing Aruba networking devices?

  • A. By automating the firmware upgrades across all devices.
  • B. Through centralized cloud-based management and monitoring.
  • C. Central does not support device management functions.
  • D. By distributing network traffic evenly across devices.

Answer: B


NEW QUESTION # 21
Which Protocol Data Unit (PDU) represents the data link layer PDU?

  • A. PDU2 - Frame
  • B. PDU1 - Signal
  • C. PDU3 - Packet
  • D. PDU4 - Segment

Answer: A

Explanation:
Explanation
A frame is the data link layer PDU that encapsulates the network layer PDU (packet) with a header and a trailer that contain information such as source and destination MAC addresses, frame type, error detection, etc.
A frame is transmitted over a physical medium such asEthernet, Wi-Fi, etc.
References:https://www.arubanetworks.com/techdocs/ArubaOS_86_Web_Help/Content/arubaos-solutions/1-ove


NEW QUESTION # 22
Which device configuration group types can a user define in Aruba Central during group creation? (Select two.)

  • A. Template group
  • B. Ul group
  • C. Default group
  • D. ESP group
  • E. Security group

Answer: A,E

Explanation:
In Aruba Central during group creation, users can define various configuration groups to manage settings for multiple devices. A Security group allows you to apply consistent security settings across devices, and a Template group enables you to apply pre-defined configurations to devices. These groups help streamline the deployment and management of network devices in Aruba Central.


NEW QUESTION # 23
Two independent ArubaOS-CX 6300 switches with Spanning Tree (STP) settings are interconnected with two cables between ports 1/1/1 and 1/1/2 All four ports have "no shutdown" and "no routing" commands How will STP forward or discard traffic on these ports?

  • A. The switch with the lower MAC address will forward on both ports, while the switch with the higher MAC address will forward on both ports
  • B. The switch with the lower MAC address will forward on both ports, while the switch with the higher MAC address will discard on one port
  • C. The switch with the lower MAC address will discard on one port, while the switch with the higher MAC address will discard on one port
  • D. The switch with the lower MAC address will discard on one port, while the switch with the higher MAC address will forward on both ports

Answer: C

Explanation:
The way that STP Spanning Tree Protocol. STP is a network protocol that ensures a loop-free topology for any bridged Ethernet local area network by preventing redundant paths between switches or bridges from creating loops that cause broadcast storms, multiple frame transmission, and MAC table instability. STP creates a logical tree structure that spans all of the switches in an extended network and blocks any redundant links that are not part of the tree from forwarding data packets3. will forward or discard traffic on these ports is as follows:
* STP will elect a root bridge among the two switches based on their bridge IDs, which are composed of a priority value and a MAC address. The switch with the lower bridge ID will become the root bridge and will forward traffic on all its ports.
* STP will assign a role and a state to each port on both switches based on their port IDs, which are composed of a priority value and a port number. The port with the lower port ID will become the designated port and will forward traffic, while the port with the higher port ID will become the alternate port and will discard traffic.
* In this scenario, since both switches have two cables connected between ports 1/1/1 and 1/1/2, there will be two possible paths between them, creating a loop. To prevent this loop, STP will block one of these paths by discarding traffic on one of the ports on each switch.
* Assuming that both switches have the same priority value (default is 32768), the switch with the lower MAC address will have the lower bridge ID and will become the root bridge. The root bridge will forward traffic on both ports 1/1/1 and 1/1/2.
* Assuming that both ports have the same priority value (default is 128), port 1/1/1 will have a lower port ID than port 1/1/2 on both switches because it has a lower port number. Port 1/1/1 will become the designated port and will forward traffic, while port 1/1/2 will become the alternate port and will discard traffic.
* Therefore, the switch with the lower MAC address will discard traffic on one port (port 1/1/2), while the switch with the higher MAC address will also discard traffic on one port (port 1/1/2).
References: 3 https://en.wikipedia.org/wiki/Spanning_Tree_Protocol


NEW QUESTION # 24
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