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HP HPE7-A06 Exam Syllabus Topics:

SectionWeightObjectives
Security and Access Control10%- Network security implementation
  • 1. 802.1X authentication and EAP methods
    • 2. Group Based Policy (GBP)
      - Threat defense and compliance
      • 1. Secure management protocols
        • 2. Access control lists
          Routing Technologies16%- Routing troubleshooting
          • 1. Route redistribution and filtering
            • 2. Path selection and performance
              - IP routing design and implementation
              • 1. OSPF, BGP, and EVPN configuration
                • 2. Static and dynamic routing protocols
                  Performance Optimization6%- Scalability and capacity planning
                  • 1. Resource utilization
                    • 2. Network design optimization
                      - Traffic management
                      • 1. Congestion control
                        • 2. QoS and bandwidth allocation
                          Network Resiliency and Virtualization8%- High availability and redundancy
                          • 1. Fault tolerance mechanisms
                            • 2. Failover and recovery
                              - Network virtualization
                              • 1. Network segmentation
                                • 2. VXLAN and overlay networks
                                  Switching Technologies9%- Layer 2 implementation and troubleshooting
                                  • 1. Spanning Tree protocols and optimization
                                    • 2. Link aggregation and LACP
                                      • 3. Broadcast domains and VLANs
                                        - Campus switching features
                                        • 1. VSF and stacking technologies
                                          • 2. Port security and storm control
                                            Authentication and Authorization9%- AAA framework design
                                            • 1. RADIUS and TACACS+ integration
                                              • 2. ClearPass Policy Manager integration
                                                - Identity-based networking
                                                • 1. Role-based access control
                                                  • 2. User and device authentication
                                                    Advanced Troubleshooting10%- Campus network diagnostics
                                                    • 1. Packet capture and analysis
                                                      • 2. Log and event interpretation
                                                        - Performance and connectivity issues
                                                        • 1. Latency and packet loss resolution
                                                          • 2. Error isolation and remediation

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                                                            HPE Campus Access Switching Expert Written Exam Sample Questions (Q70-Q75):

                                                            NEW QUESTION # 70
                                                            Exhibit.


                                                            AGG-SW1 and AGG-SW2 are configured with iBGP and eBGP to AS65000. Both agg-sw1 and agg-sw2 useroute-map BGP-EXPORT and ip-prefix list local-export in the bgp configuration.
                                                            What must be done on agg-swl for the adjacent router to prefer to route all exported routes by agg-sw2?

                                                            Answer: C

                                                            Explanation:
                                                            The goal is to make the adjacent router prefer routes exported by AGG-SW2 over AGG-SW1 for iBGP and eBGP routes to AS65000. Both switches use a route-map BGP-EXPORT with an ip-prefix list local-export.
                                                            BGP path selection uses attributes like local preference, AS path length, and metric to determine the preferred route.
                                                            * Analysis of Options:
                                                            * Option A:Setting local-preference 200 affects iBGP route selection within the same AS but has no impact on eBGP peers (external AS65000), as local preference is not advertised externally.
                                                            * Option B:Prepending the AS path with 65345 65345 65345 65345 increases the AS path length for routes exported by AGG-SW1, making them less preferred by the adjacent router (both iBGP and eBGP peers) compared to AGG-SW2's routes, which have a shorter AS path.
                                                            * Option C:Setting metric 200 affects the MED (Multi-Exit Discriminator), which is used for eBGP route selection within the same AS but is less influential than AS path length and not applicable for iBGP.
                                                            * Option D:Incorrect syntax (set as-path without prepend) and does not achieve the desired effect.
                                                            * Why Option B is Correct:BGP route selection prioritizes the shortest AS path for both iBGP and eBGP. By prepending AS 65345 multiple times to AGG-SW1's exported routes, AGG-SW1's routes appear less attractive due to a longer AS path, causing the adjacent router to prefer AGG-SW2's routes.
                                                            This is a standard BGP traffic engineering technique.
                                                            * Relevance to Certification Objectives:
                                                            * Routing (16%):Involves designing and troubleshooting BGP routing topologies, including manipulating path attributes like AS path.
                                                            * Troubleshooting (10%):Includes remediating BGP routing issues by adjusting route-maps.
                                                            References:
                                                            HPE Aruba Networking AOS-CX Configuration Guide: BGP Configuration, covering route-maps and AS path prepending.
                                                            HPE7-A06Study Guide: Details BGP path selection and traffic engineering.
                                                            HPE Aruba Networking Technical Documentation: BGP Route Manipulation, explaining AS path prepending for route preference.


                                                            NEW QUESTION # 71
                                                            A customer wants to deploy loT security devices that are PoE-powered. Dueto its criticality. it is required that those devices remain active even during a switch software upgrade. What is a valid solution to meet customer requirements?

                                                            Answer: B

                                                            Explanation:
                                                            The question involves a customer deploying PoE-powered IoT security devices (e.g., door locks) that must remain active during an AOS-CX switch software upgrade. The task is to identify a valid solution.
                                                            * Analysis of Options:
                                                            * Option A:Incorrect. A VSX pair provides redundancy but does not guarantee PoE continuity during a single switch's upgrade.
                                                            * Option B:Incorrect. quick-poe reduces PoE startup time but does not ensure power during upgrades.
                                                            * Option C:Correct. power-over-ethernet always-on ensures PoE remains active during software upgrades, meeting the requirement.
                                                            * Option D:Incorrect. PoE priority adjusts power allocation but does not guarantee continuity during upgrades.
                                                            * Why Option C is Correct:The power-over-ethernet always-on feature on AOS-CX switches ensures that PoE power delivery continues uninterrupted during software upgrades or reboots, critical for devices like IoT security door locks that require constant power. This feature prevents power cycling on PoE ports, maintaining device operation. For example, enabling it on relevant ports (e.g., interface 1/1/1 power-over-ethernet always-on) ensures compliance with the customer's requirement, as per HPE Aruba Networking's PoE high-availability guidelines.
                                                            * Relevance to Certification Objectives:
                                                            * Connectivity (9%):Configuring PoE for critical device deployment.
                                                            * Network Resiliency and Virtualization (8%):Ensuring device uptime during maintenance.
                                                            * Troubleshooting (10%):Resolving PoE continuity issues.
                                                            References:
                                                            HPE Aruba Networking AOS-CX Configuration Guide: PoE Always-On Feature.
                                                            HPE7-A06Study Guide: Covers PoE configuration for high-availability devices.
                                                            HPE Aruba Networking Technical Documentation: PoE Best Practices for IoT.


                                                            NEW QUESTION # 72
                                                            Refer to the exhibit which illustrates the current configuration of Router-1.

                                                            Clients of VLAN 10 require access to services hosted in the 10.1.100.0/24subnet. This 'equites one 01 more routes to be added to Rculer-1 that do not currently exist.
                                                            Which script would install a route from 10.2.10.0/24 to 10.1.100.0/24 on Router-1? A return path is not required as part of this answer.

                                                            Answer: C

                                                            Explanation:
                                                            The goal is to add a static route on Router-1 to allow clients in VLAN 10 (subnet 10.2.10.0/24, presumably in VRF 'IoT-Medical' based on options) to reach services in the 10.1.100.0/24 subnet. The exhibit indicates interface 1/1/1 (IP 10.255.101.10/24) is in VRF 'service', and the likely next hop towards the destination is Core-1 at 10.255.101.11 (also implied to be reachable via VRF 'service'). This requires adding a route in the source VRF ('IoT-Medical') pointing towards the destination via the next hop in the 'service' VRF.
                                                            * Static Route Syntax (with VRF):ip route <destination_prefix> <next-hop-ip> [vrf <source-vrf>]
                                                            * Analysis of Options:
                                                            * A: Claims Core-1 isn't in VRF 'service', contradicting the likely setup.
                                                            * B: Uses unusual interface:ip syntax (1/1/1:10.255.101.11). Defines the route in VRF 'IoT- Medical'.
                                                            * C: Uses interface 1/1/1 as the next hop. This is less specific than using the IP address and relies on the interface being point-to-point or having proxy ARP enabled. Defines the route in VRF
                                                            'IoT-Medical'.
                                                            * D: ip route 10.1.100.0/24 10.255.101.11 vrf IoT-Medical. This uses the standard syntax to define a static route for the destination 10.1.100.0/24 via the next-hop IP 10.255.101.11 within the context of the IoT-Medical VRF. The successful function of this route depends on inter-VRF routing (route leaking) being configured between 'IoT-Medical' and 'service' VRFs, but the command itself correctly defines the desired static route.
                                                            * Conclusion:Option D provides the correct and standard command syntax to configure the required static route within the specified source VRF ('IoT-Medical').
                                                            References:AOS-CX IP Routing Guide (Static Routes), AOS-CX VRF Configuration Guide (Inter-VRF Routing). This relates to the "Routing" (16%) and "Connectivity" (9%) objectives.


                                                            NEW QUESTION # 73
                                                            Refer to the exhibit.

                                                            Acme Corp has VM workload running from ToR-1, and has noticed performance degradation.
                                                            They suspect ToR-1 uplinks are periodically overutilized.
                                                            List valid reasons why ToR-1 uplinks are being overutilized based on the diagram. (Choose two.)

                                                            Answer: A,D

                                                            Explanation:
                                                            With default MSTP region settings, devices form different regions, so only the CIST participates across them. This removes per-instance load-sharing and pushes all VLANs over a single active uplink, overutilizing it.
                                                            If VLAN-to-instance mappings differ between switches, MSTP instances don't align end-to-end, so VLANs cannot split paths per instance and converge onto one uplink, causing periodic overutilization.


                                                            NEW QUESTION # 74
                                                            Refer to the exhibit.

                                                            During the update of the aggregation switches, Acc-1 clients were not able to receive multicast traffic for a few seconds. How can you improve the downtime for multicast traffic to a minimum time?

                                                            Answer: C

                                                            Explanation:
                                                            In a VSX environment, only one aggregation switch (Agg-1) is the PIM-SM Designated Router (DR) and IGMP querier. During an upgrade, when Agg-1 is unavailable, multicast traffic forwarding fails until Agg-2 takes over. By enabling the PIM active-active feature on both Agg-1 and Agg-2, multicast forwarding becomes synchronized and seamless across both devices, reducing downtime to the minimum.


                                                            NEW QUESTION # 75
                                                            ......

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