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Exam Applying Aruba Switching Fundamentals for Mobility
Number HPE6-A41
File Name Applying Aruba Switching Fundamentals for Mobility.certkiller.HPE6-A41.1e.73q.vcex
Size 3.09 Mb
Posted December 29, 2018
Downloads 39



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Demo Questions

Question 1
A network administrator needs to configure a link aggregation on an ArubaOS switch. 
For which type of link aggregation is the administrator required to enter the lacp command in the interface context?

  • A: a distributed LACP link aggregation
  • B: a dynamic LACP link aggregation
  • C: a static LACP link aggregation
  • D: a manual LACP link aggregation



Question 2
Refer to the exhibit. 

  

Spanning tree runs on the switches shown in the exhibit. The network administrator enters these two commands:
Switch-1(config)# spanning-tree priority 0 
Switch-2(config)# spanning-tree priority 1 
The other switches use the default spanning tree priorities. The administrator enters the show spanning-tree command on Switch-2. 
If the configuration is correct, which roles will the output show?

  • A: A1 = Designated A2 = Alternate A3 = Alternate
  • B: A1 = Root A2 = Designated A3 = Designated
  • C: A1 = Designated A2 = Designated A3 = Designated
  • D: A1 = Root A2 = Alternate A3 = Alternate



Question 3
Refer to the exhibit. 

  

The network administrator enters this command:
Switch(config)# ip route 172.16.2.0/30 192.168.1.100 metric 1 distance 1 
Why does this route fail to appear in the IP routing table?

  • A: Its prefix length is invalid.
  • B: Its next hop is unreachable.
  • C: Its administrative distance is the same as an existing static route.
  • D: Its metric is the same as an existing static route.



Question 4
Refer to the exhibit. 
Exhibit 1. 

  

Exhibit 2. 

  

Which devices can communicate with each other at Layer 2?

  • A: Devices 1 and 2 can communicate at Layer 2; Devices 3 and 4 can communicate at Layer 2.
  • B: Devices 2 and 3 can communicate at Layer 2.
  • C: Devices 1 and 4 can communicate at Layer 2.
  • D: Devices 1 and 4 can communicate at Layer 2; Devices 2 and 3 can communicate at Layer 2.



Question 5
Refer to the exhibit. 
Exhibit 1. 

  

Exhibit 2. 

  

The routing configuration must support this behavior:
Server 1 and Server 2 communicate over Link 1 when Link 1 is up. 
If Link 1 fails, Server 1 and Server 2 can continue to communicate over the path through Switch-3. 
What must the network administrator change to meet these criteria?

  • A: On Switch 3, add a route to 192.168.2.0/24 through 192.168.1.9 and a route to 192.168.3.0/24 through 192.168.1.5.
  • B: On Switch-1, Switch-2, and Switch-3, change the next hop in each static route to specify an IP address that exists on that switch.
  • C: On Switch-1, raise the administrative distance for the second route to 192.168.3.0/24; on Switch-2, raise the administrative distance for the second route to 192.168.2.0/24
  • D: On Switch-1, add a route to 192.168.1.8/30 through 192.168.0.3; on Switch-2, add a route to 192.168.1.4/30 through 192.168.1.1; on Switch-3, add a route to 192.168.1.0/30 through 192.169.1.4.
  • E: On Switch-1, add a route to 192.168.1.8/30 through 192.168.1.2; on Switch-2, add a route to 192.168.1.4/30 through 192.168.1.1; on Switch-3, add a route to 192.168.1.0/30 through 192.168.1.4.



Question 6
A network administrator plans to set up a WLAN on an Aruba Instant cluster. The WLAN uses WPA/WPA2 Enterprise security. The administrator wants no authenticate users locally on the cluster. 
How should the administrator configure me credentials?

  • A: Add a user account for each employee to the cluster internal server database.
  • B: Import authorized device MAC addresses to the cluster.
  • C: Implement a shared secret or password in the cluster WLAN settings.
  • D: Set up an external RADIUS server for authorization.



Question 7
How does a switch treat a link aggregation?

  • A: The switch treats the link aggregation as one logical link for spanning tree, but it learns MAC addresses separately on each individual interface within the aggregation.
  • B: The switch treats the link aggregation as one logical link. It assigns one spanning tree port role to the link aggregation, and it learns MAC addresses on the aggregation.
  • C: The switch treats the link aggregation as one logical link for MAC learning, but it assigns an individual spanning tree port role to each interface within the aggregation.
  • D: The switch treats each interface within the interface as a separate entity for MAC address learning; it also assigns an individual spanning tree port role to each interface.



Question 8
A network administrator needs to configure a static route. 
What should the administrator use as the next hop address?

  • A: the lowest IP address on the neighboring router in the path towards its destination
  • B: the IP address on the local interface that is used to egress traffic towards its destination
  • C: the IP address of the default gateway in the destination subnet
  • D: the IP address on the connected interface of a neighboring router in the path towards its destination



Question 9
A network administrator just received two switches and wants to use the plug-and-play method to establish a Virtual Switching Framework (VSF) fabric with the fewest steps possible. 
What must the administrator do to establish the fabric in this way?

  • A: Configure a VSF link on the commander, and enable VSF on the standby member.
  • B: Configure a VSF link on the commander, and enable VSF on me commander.
  • C: Enable VSF on both me commander and the standby member.
  • D: Configure a VSF link on both the commander and the standby member.



Question 10
Refer to the exhibit. 
Exhibit 1. 

  

Exhibit 2. 

  

Assume that Switch-2 is correctly configured for OSPF. 
Which additional step must the administrator take to enable Switch-1 to advertise 192.168.2.0/24 to Switch-2?

  • A: Set a router ID on Switch-1.
  • B: Configure a route to advertise 192.168.2.0/24 on Switch-1.
  • C: Add Switch-2’s router ID to Switch-1’s OSPF neighbor list.
  • D: Enable OSPF on VLAN 2.








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