NEW HP HPE7-A06 TEST SAMPLE - HPE7-A06 BRAINDUMPS

New HP HPE7-A06 Test Sample - HPE7-A06 Braindumps

New HP HPE7-A06 Test Sample - HPE7-A06 Braindumps

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HPE Campus Access Switching Expert Written Exam Sample Questions (Q27-Q32):

NEW QUESTION # 27
Which is a best practice for configuringGBP?

  • A. Configure GBP classes to have a destination role that is the same as the associated user rote.
  • B. Use static user roles (SUR) to configure GBP
  • C. Configure GBP classes to have a destination role that is different from theassociated user role.
  • D. Use downloadable user roles (DUR) to configure GBP.

Answer: D

Explanation:
The question asks for a best practice when configuring Group-Based Policy (GBP). GBP simplifies policy management by assigning users/devices to roles and defining policies between these roles, often leveraging dynamic assignment from an authentication server.
* GBP Concepts:Policies are typically defined based on source and destination roles. Roles can be assigned statically on the switch or dynamically via an authentication server like ClearPass.
* Analysis of Options:
* A & C: Policies define interactionsbetweenroles (source role to destination role). These roles can be the same (intra-role policy) or different (inter-role policy). Neither option represents a singular
"best practice" for all configurations.
* B: Using Static User Roles (SUR) is possible but less flexible and scalable than dynamic assignment for large or complex environments.
* D: Using Downloadable User Roles (DUR) is generally considered a best practice. DUR allows roles and associated policies (including GBP attributes like GPID) to be centrally defined on an authentication server (e.g., ClearPass) and dynamically assigned to users/devices uponsuccessful authentication. This provides scalability, consistency, and easier management.
* Conclusion:Leveraging Downloadable User Roles (DUR) from a central authentication server like ClearPass is a best practice for implementing scalable and manageable Group-Based Policies.
References:Aruba Dynamic Segmentation concepts, Group-Based Policy (GBP) documentation, Aruba ClearPass integration guides. This relates to "Security" (10%) and "Authentication/Authorization" (9%) objectives.


NEW QUESTION # 28
Aplying the command "ip Igmp snooping blocked VLAN 6. 6* on a port ...

  • A. won't accept multicast Igmp joins on that port or VLAN 5 and 6.
  • B. won't allow multicast on that port in VLAN 5 and 6 and disables the port.
  • C. won't prune multicast on that port on VLAN 5 and 6
  • D. won't allow multicast traffic between VLAN 5 and 6.

Answer: A

Explanation:
The question asks for the effect of applying the command ip igmp snooping blocked vlan 5,6 on a switch port.
* ip igmp snooping blocked vlan <vlan-list>:This interface configuration command instructs the IGMP snooping process on the switch to block (ignore/drop) any inbound IGMP control packets (specifically Membership Reports, i.e., "joins", and Leave messages) received on this port for the specified VLANs (5 and 6 in this case).
* Effect:By blocking IGMP join messages from hosts connected to this port, the switch will not learn about any multicast group memberships requested by those hosts in VLANs 5 and 6. Consequently, the switch will not forward multicast traffic for those groups out of this port for those VLANs (unless the port is designated as a multicast router port). It effectively prevents hosts on this port from receiving multicast streams in the specified VLANs via standard IGMP mechanisms.
* Analysis of Options:
* A: Itresultsin traffic effectively being pruned because memberships aren't learned, but the command itself blocks the IGMPcontrolpackets (joins).
* B: Correct. It stops the switch from accepting IGMP join messages on this port for VLANs 5 and
6.
* C: Incorrect. It doesn't control inter-VLAN traffic.
* D: Incorrect. It doesn't disable the entire port.
* Conclusion:The command specifically blocks the reception and processing of IGMP join messages on the configured port for the listed VLANs.
References:AOS-CX Multicast Guide (IGMP Snooping configuration commands). This relates to the
"Switching" (19%) objective.


NEW QUESTION # 29
You arc about lo deploy a gateway that is on factory default. ZTP cannot be used for different reasons, but you are searching forvalid alternatives. What are two valid alternatives for ZTP? (Select two.)

  • A. Use OTP by connecting to the console port, and use terminal software to complete provisioning. "Full- Setup" should be used.
  • B. UseOTP by connecting to port 0/0/1. and use a Web browser to completeprovisioning.
  • C. Use OTP by connecting to port 0/0/0. and use a Web browser to complete provisioning.
  • D. Use OTP by connecting lo the console port, and use terminal software to complete provisioning. *Static- Activate" should be used.
  • E. Use OTP by connecting to port 0/0/1 with a static IP. and use a Web browser to complete provisioning.

Answer: A,B

Explanation:
The question asks for valid alternatives to Zero Touch Provisioning (ZTP) for initially configuring a factory default Aruba gateway when ZTP cannot be used.
* Aruba Gateway Initial Provisioning Methods:
* ZTP:Automated provisioning using Activate/Central.
* One-Touch Provisioning (OTP) / Manual Setup:Involves direct connection for initial configuration.
* Web UI:Connecting a laptop to a specific management or designated setup port (often GE0
/0/1 on many gateway models) allows access to a web-based setup wizard.
* Console Port:Connecting via the serial console port allows CLI access, which includes guided setup scripts or manual configuration.
* Analysis of Options:
* A: Port 0/0/0 is typically the OOBM port, not the standard OTP web UI port.
* B: Port 0/0/1 is commonly used for OTP via Web browser on many Aruba gateway models.
* C: Using the console port with terminal software for initial setup (potentially using a "Full-Setup" wizard or script) is a standard manual method.
* D: "Static-Activate" refers to manual registration with the Activate service, not a console setup mode.
* E: Requires setting a static IP, adding complexity beyond the basic OTP connection method described in B.
* Conclusion:Using the designated OTP Ethernet port (commonly GE0/0/1) with a web browser (Option B) and using the console port with terminal software (Option C) are the standard, valid alternatives to ZTP for initial gateway setup.
References:Aruba Gateway Installation and Quick Start Guides, AOS-10 Fundamentals Guide (Provisioning sections). This relates to "Connectivity" (9%) and "Troubleshooting" (10%) objectives.


NEW QUESTION # 30
You want to use OSPF to advertise a only .16 summary route for the SVlsbelow to a neighbor In the same area (area 0).
Which configuration will achieve this?

  • A.
  • B.
  • C.
  • D.
  • E.

Answer: E

Explanation:
The goal is to configure OSPF on a router so that it advertisesonlya 10.1.0.0/16 summary route for the specific SVIs (VLAN 11, 12, 13, assumed to be within the 10.1.x.x range) to its OSPF neighborswithin the same area (Area 0).
* OSPF Intra-Area Behavior:A fundamental principle of OSPF (link-state protocols) is that all routers within the same area must have an identical Link State Database (LSDB) for that area. This means all routers learn about all the specific networks (Type-1 Router LSAs, Type-2 Network LSAs) within their area. OSPFv2 doesnotsupport summarizing routes in a way that hides specific network LSAs from other routerswithin the same area. Summarization occurs only at area boundaries (by ABRs using Type-
3 Summary LSAs via the area range command) or for external routes redistributed into OSPF (by ASBRs using Type-5 External LSAs via the summary-address command).
* Analysis of Options:
* A) area 0 range 10.1.0.0/16:This command is used on an Area Border Router (ABR) to summarize routes originatingfromArea 0 when advertising theminto another area(e.g., the backbone). It does not affect LSA floodingwithinArea 0. It also includes redistribute connected, which is unrelated here.
* B) summary-address 10.1.0.0/16:This command is used on an Autonomous System Boundary Router (ASBR) to summarizeexternalroutes being redistributed into OSPF. It is not used for summarizing internal OSPF routes like SVIs defined within an OSPF area.
* C) & D) summary-address 10.1.0.0/16:Same issue as B; incorrect command for summarizing internal OSPF routes.
* E) area 0 range 10.1.0.0/16:Similar to A, this uses the area range command. It correctly shows the SVIs configured for OSPF Area 0 first. However, like A, this command performs inter-area summarization on an ABR and does not suppress the specific LSAswithinArea 0.
* Conclusion:The question asks for something that OSPFv2 cannot do: advertiseonlya summary route within the same area while suppressing specifics. Therefore, none of the configurations will achieve the exactstated outcome. However, if the question is flawed and intends to ask which configuration uses the correct command structure for summarizinginternalOSPF routes (even if only effective between areas), then the area range command is the relevant one. Both A and E use this command. Option E is slightly better structured as it shows the interfaces being added to OSPF Area 0 first. Assuming this is the intended direction despite the impossibility of the specific request, E is the most plausible choice among the given options.
References:RFC 2328 (OSPFv2), OSPF Configuration Guides for AOS-CX (explaining area range for ABRs and summary-address for ASBRs). This relates to the "Routing" (16%) objective.


NEW QUESTION # 31
Match the BGP connection slates to the conditions thatcould have caused that state.

Answer:

Explanation:

Explanation:
The router is able to process update messages. -->established
The router is waiting for the neighbor's open message. -->open sent
Routers have agreed on matching feature sets. -->open confirm
The session establishment has timed out. -->idle
This question requires matching BGP connection states from the BGP Finite State Machine (FSM) to descriptions of conditions that occur within or lead to those states.
* Idle:This is the initial state where BGP awaits a start event or retries after a failure. It's also the state entered upon error detection or session closure, including timeouts during connection attempts.
* Matches:"The session establishment has timed out." - A timeout during the connection process forces the BGP process back to the Idle state to potentially retry later.
* OpenSent:After a TCP connection is established, the local router sends a BGP OPEN message with its parameters (AS number, capabilities, etc.) and transitions to the OpenSent state while waiting to receive an OPEN message from its BGP neighbor.
* Matches:"The router is waiting for the neighbor's open message."
* OpenConfirm:Once the router receives an OPEN message from its neighbor and validates the parameters (e.g., matching AS, compatible capabilities), it sends a KEEPALIVE message and moves to the OpenConfirm state. It waits for a KEEPALIVE from the neighbor to confirm the session. Basic parameter checks and capability negotiations are successfully completed in this phase.
* Matches:"Routers have agreed on matching feature sets." - This agreement happens upon successful validation of the OPEN messages exchanged.
* Established:This is the final, stable state where BGP peering is successful. Both routers have accepted each other's parameters via the OPEN messages and confirmed the session with KEEPALIVEs. In this state, the routers can exchange UPDATE messages containing routing information.
* Matches:"The router is able to process update messages."
References:RFC 4271 (BGP4 specification - Section 8, Finite State Machine), BGP configuration and troubleshooting guides for AOS-CX. This relates to the "Routing" (16%) and "Troubleshooting" (10%) objectives.


NEW QUESTION # 32
......

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