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HP HPE6-A85 Exam Syllabus Topics:

SectionWeightObjectives
Topic 1: Troubleshooting4%- Common network issues resolution
- Troubleshooting methodologies
Topic 2: Routing9%- Dynamic routing protocols
- Routing topology design
- Static routing configuration
Topic 3: Management and Monitoring7%- Aruba Central management platform
- Health and performance assessment
- Network monitoring tools
Topic 4: Performance Optimization3%- QoS principles and implementation
Topic 5: Switching19%- Aruba CX switch configuration
- Campus architecture design
- VLANs, trunking and STP
- Layer 2/Layer 3 technologies
Topic 6: WLAN18%- AP configuration and groups
- Radio Frequency (RF) attributes
- WLAN security and SSID setup
- Roaming and mobility basics
Topic 7: Network Stack7%- OSI Model layers and architectural elements
- TCP/IP stack concepts
Topic 8: Authentication and Authorization6%- AAA concepts and operation
- Access control methods
Topic 9: Security9%- Security standards and concepts
- Wired and wireless security policies
- ClearPass integration basics
- ACLs and traffic filtering
Topic 10: Connectivity10%- Infrastructure deployment principles
- Foundational networking architectures
Topic 11: Network Resiliency and Virtualization8%- Virtual switching concepts
- Redundancy and fault tolerance
- Infrastructure device management

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HP Aruba Certified Campus Access Associate Exam Sample Questions (Q133-Q138):

NEW QUESTION # 133
Based on the given topology, what is the requirement on an Aruba switch to enable LLDP messages to be received by Switch 1 port 1/1/24. when Router 1 is enabled with LLDP?

Answer: A


NEW QUESTION # 134
A client connects to an Aruba AP in tunnel mode and is assigned to a VLAN based on the client's MAC address.
Which client VLAN assignment was configured?

Answer: A

Explanation:
When a client connects to an Aruba AP in tunnel mode and is assigned to a VLAN based on the client's MAC address, this indicates a Dynamic VLAN assignment. The VLAN is determined dynamically at the time of authentication based on the client's credentials or attributes, such as its MAC address.


NEW QUESTION # 135
What change does a client make when it roams from one access point to another in a WLAN?

Answer: C

Explanation:
When a client roams from one access point to another, it must change the destination MAC address on its
802.11 frames to match the new access point to which it is associated. The SSID does not change since it is typically consistent across an entire WLAN, and the default gateway remains the same as long as the client stays within the same IP subnet. The association to a new access point involves updating the destination MAC address in the frames that the client sends.


NEW QUESTION # 136
You are configuring a network with a stacked pair of 6300M switches used for distribution and layer 3 services. You create a new VLAN for users that will be used on multiple access stacks of CX6200 switches connected downstream of the distribution stack You will be creating multiple VLANs/subnets similar to this will be utilized in multiple access stacks What is the correct way to configure the routable interface for the subnet to be associated with this VLAN?

Answer: D

Explanation:
The correct way to configure the routable interface for the subnet to be associated with this VLAN is to create an SVI Switched Virtual Interface (SVI) Switched Virtual Interface (SVI) is a virtual interface on a switch that represents a VLAN and provides Layer 3 routing functions for that VLAN. SVIs are used to enable inter-VLAN routing, provide gateway addresses for hosts in VLANs, apply ACLs or QoS policies to VLANs, etc. SVIs have some advantages over physical routed interfaces such as saving interface ports, reducing cable costs, simplifying network design, etc. SVIs are usually numbered according to their VLAN IDs (e.g., vlan 10) and assigned IP addresses within the subnet of their VLANs. SVIs can be created and configured by using commands such as interface vlan, ip address, no shutdown, etc. SVIs can be verified by using commands such as show ip interface brief, show vlan, show ip route, etc. in the subnet on the 6300M stack. An SVI is a virtual interface on a switch that represents a VLAN and provides Layer 3 routing functions for that VLAN. Creating an SVI in the subnet on the 6300M stack allows the switch to act as a gateway for the users in that VLAN and enable inter-VLAN routing between different subnets. Creating an SVI in the subnet on the 6300M stack also simplifies network design and management by reducing the number of physical interfaces and cables required for routing.
The other options are not correct ways to configure the routable interface for the subnet to be associated with this VLAN because:
- Create a physically routed interface in the subnet on the 6300M stack for each downstream switch: This option is incorrect because creating a physically routedinterface in the subnet on the 6300M stack for each downstream switch would require using one physical port and cable per downstream switch, which would consume interface resources and increase cable costs. Creating a physically routed interface in the subnet on the 6300M stack for each downstream switch would also complicate network design and management by requiring separate routing configurations and policies for each interface.
- Create an SVl in the subnet on each downstream switch: This option is incorrect because creating an SVI in the subnet on each downstream switch would not enable inter-VLAN routing between different subnets, as each downstream switch would act as a gateway for its own VLAN only. Creating an SVI in the subnet on each downstream switch would also create duplicate IP addresses in the same subnet, which would cause IP conflicts and routing errors.
- Create an SVl in the subnet on the 6300M stack, and assign the management address of each downstream switch stack to a different IP address in the same subnet: This option is incorrect because creating an SVI in the subnet on the 6300M stack, and assigning the management address of each downstream switch stack to a different IP address in the same subnet would not enable inter-VLAN routing between different subnets, as each downstream switch would still act as a gateway for its own VLAN only. Creating an SVI in the subnet on the 6300M stack, and assigning the management address of each downstream switch stack to a different IP address in the same subnet would also create unnecessary IP addresses in the same subnet, which would waste IP space and complicate network management.
References:
https://www.arubanetworks.com/techdocs/AOS-CX/10.05/HTML/5200-7295/index.html
https://www.arubanetworks.com/techdocs/AOS-CX/10.05/HTML/5200-7295/cx-noscg/l3-routing/l3- routing-ov
https://www.arubanetworks.com/techdocs/AOS-CX/10.05/HTML/5200-7295/cx-noscg/l3-routing/l3- routing-co


NEW QUESTION # 137
Refer to Exhibit.

Which server will receive the smallest quantity of data?

Answer: B

Explanation:
Based on the exhibit showing the logging server configurations, server 172.17.17.43 will receive the smallest quantity of data because it is set to the "Warning" event log level. This means it will only log events that are categorized as warnings or higher severity, which are typically less frequent than lower severity levels such as "Information," "Debug," or "Emergency."


NEW QUESTION # 138
......

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