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HPE Campus Access Switching Expert Written Exam Sample Questions (Q13-Q18):

NEW QUESTION # 13
Refer to the exhibit.

After an initial setup of CX 8325 VSX configuration, the active gateway is set up for SVI 10. For testing purposes, SVI 10 on the sw-agg1 is shut down while traffic from the client connected to Edge-1 is initiated towards the default route.
What is the expected behavior while performing this test?

Answer: C

Explanation:
When SVI 10 is shut down on agg-sw1 (the VSX active gateway), traffic destined for the default gateway will not be able to use that SVI. Unless "VSX active forwarding" is enabled, the other VSX peer (agg-sw2) will not start forwarding traffic for that SVI, so packets are likely dropped.
The default failover is not seamless unless you enable active-forwarding or use a redundancy feature for SVI gateways.


NEW QUESTION # 14
You are implementing a network using Zero-Touch Provisioning (ZTP) to deploy the gateways.
What are two requirements for the connection to the switchport? (Choose two.)

Answer: A,E

Explanation:
For Zero-Touch Provisioning (ZTP), the gateway must connect to a switchport with untagged Internet access so it can reach Aruba Central or the provisioning server. Additionally, the gateway requires an IP address via DHCP, which provides the necessary network configuration (IP, DNS, default gateway, and optionally ZTP server URL). No specific physical port, static IP, or jumbo frame configuration is required.


NEW QUESTION # 15
Refer to the four numbered steps in the exhibit.

Which action is the first step in applying the role-to-role ACL on the traffic from mobile device M1 to role H2?

Answer: C

Explanation:
Role-to-role enforcement starts when the client's traffic leaves the AP to the gateway. The AP forwards M1's packet to Gateway 1, which then tags it with M1's Group Policy ID and sends it toward the campus over VXLAN for downstream role resolution and ACL enforcement. This first hop (AP → gateway) is step 1 before GBP propagation and policy enforcement occur on the access switch.


NEW QUESTION # 16
Exhibit.

VSX cluster is already configured. Your task is to validate a correct configuration for the Edge-1 switch that is connected to a CCTV provider that will install its switching infrastructure. The CCTV switches do not support STP.
What needs to be configured on the Edge-1 switch ports connecting to CCTV-SW1 and CCTV-SW2 to prevent loop problems with the existing setup with automatic recovery features?

Answer: C

Explanation:
The requirement is to prevent loops on Edge-1 switch ports connected to third-party CCTV switches that do notsupport STP. The solution must also include an automatic recovery feature if a port gets disabled.
* Loop Prevention without STP:When connecting to non-STP devices, standard STP loop prevention (like BPDU Guard) might not work if the connected device doesn't send BPDUs. AOS-CX offers a feature called loop-protect which sends probes to detect loops in non-STP environments.
* Automatic Recovery:Features that disable ports (like BPDU Guard or Loop Protect) often have a timeout or auto-recovery option (port-disable-timer for Loop Protect) allowing the port to automatically re-enable after a configured period.
* Analysis of Options:
* A: LACP fallback applies to LAGs, not general loop prevention.
* B: TCN-guard is an STP feature, irrelevant here.
* C: Suggests spanning-tree with bpdu-guard timeout. BPDU Guard detects loops by listening for BPDUs, which these CCTV switches don't send. However, the timeout featuredoesprovide the required automatic recovery mechanism if the portweredisabled by BPDU Guard.
* D: UDLD detects unidirectional links, not typically bridging loops caused by topology.
* Re-evaluation:The ideal AOS-CX feature is loop-protect with port-disable-timer. Since this isn't explicitly an option, we must evaluate the given choices. Option C is theonlyone that mentions a mechanism (bpdu-guard timeout) providing automatic recovery from a disabled state. While BPDU Guard isn't the right detection mechanism here, it's the closest fit regarding the auto- recoveryrequirement. It's possible the question implicitly assumes some stray BPDUs might trigger it or that it's the intended "best fit" answer despite the detection mechanism mismatch.
* Conclusion:Given the options, Option C is the most plausible because it includes the timeout feature associated with bpdu-guard, fulfilling the automatic recovery requirement, even though BPDU guard itself is not the ideal detection method for loops involving non-STP devices.
References:AOS-CX Spanning Tree Protocol Guide (BPDU Guard, Timeout), AOS-CX Interface Configuration Guide (loop-protect feature). This relates to "Switching" (19%) and "Network Resiliency and virtualization" (8%) objectives.


NEW QUESTION # 17
What is the correct sequence of events that occurs when a user device connects to a network using Dynamic Segmentation?

Answer:

Explanation:

Explanation:

This question asks for the sequence of events when a user device connects to a network utilizing Dynamic Segmentation, which typically involves authentication via ClearPass and role-based policy assignment.
* Authentication:When a device connects (wired or wireless), the first step in gaining secure access is authentication. The switch or AP (authenticator) facilitates this process, usually communicating via RADIUS with ClearPass Policy Manager (RADIUS server). The device provides credentials or uses certificates (e.g., 802.1X, MAC Auth).
* Role Assignment:Upon successful authentication, ClearPass evaluates policies based on the device
/user context (identity, posture, time of day, etc.) and sends back RADIUS attributes to the authenticator. A crucial attribute is the assigned User Role. This role encapsulates the access privileges and network configuration for the device.
* Network Placement/Segmentation:The authenticator (switch/AP) uses the assigned role information received from ClearPass to place the device into the appropriate network segment. This might involve assigning a specific VLAN ID to the port/client or, in User-Based Tunneling (UBT) scenarios, establishing a tunnel to an Aruba Gateway associated with that role. The step "placed on a VLAN based on its role" describes one common method of segmentation based on the assigned role.
* Access Granted:Once the device is authenticated, assigned a role, and placed in the correct network segment (VLAN or tunnel), access is granted according to the firewall rules, QoS settings, and other policies defined within that assigned role. Traffic can now flow subject to these enforced policies.
References:Aruba Dynamic Segmentation Solution Guides, ClearPass Policy Manager Documentation, AOS- CX Security Guide (Roles, Port Access). This relates to "Authentication/Authorization" (9%), "Security" (10%), "Switching" (19%), and "WLAN" (9%) objectives.


NEW QUESTION # 18
......

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