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HP Delta-Aruba Certified Switching Professional Sample Questions:
1. Refer to the exhibit.
Both Switch-1 and Switch-2 redistribute RIP routes into OSPF. The network administrator wants routers in Area 1 to receive the redistributed routes from Switch-1 but not from Switch-2. Routers in other areas should receive the routes from Switch-2.
What should the administrator do to achieve this goal?
A) Configure Area 1 as a stub area, and import the routes with a low metric on Switch-2.
B) Configure Area 1 as a stub area, with no summaries on Switch-2.
C) Configure a subnet range for Area 1 on Switch-2, and set the no-advertise option.
D) Configure Area 1 as a Not So Stubby Area (NSSA) on all routing devices in Area 1.
2. Refer to the exhibit.
The network administrator wants to summarize routes as much as possible in between areas. What is the correct range to specify for the router OSPF Area 2 command on Switch-2?
A) 10.0.8.0/21
B) 10.0.0.0/21
C) 10.0.16.0/21
D) 10.0.0.0/20
3. A network administrator can set the OSPF metric-type on an AOS-Switch to Type 1 or Type 2. What is the difference?
A) A Type 2 metric stays the same as the external route is advertised, while a Type 1 metric increments with internal OSPF link costs.
B) A Type 2 metric marks external routes that can be advertised in NSSAs, while a Type 1 metric marks external routes that can only be advertised in normal areas.
C) A Type 2 metric is assigned to multiple external routes that are aggregated together, while a Type 1 metric does not permit external route aggregation.
D) A Type 2 metric assigns cost 1 to a 100 Gbps link, while a Type 1 metric assigns cost 1 to all links of
100 Mbps or higher.
4. Refer to the exhibit.
Switch-1 and Switch-2 connect on interface A23. The switches experience a connectivity issue. The network administrator sees that both switches show this interface as up. The administrator sees the output shown in the exhibit on Switch-1.
What is a typical issue that could cause this output?
A) asymmetric routing introduced by a routing configuration error
B) mismatched IP addresses on the VLAN for the link
C) an issue with queuing, caused by mismatched QoS settings
D) a hardware issue, such as a broken cable
5. Refer to the exhibits.
Exhibit 1
Exhibit 2
The company wants to minimize congestion on Link 1. Which spanning tree implementation meets this goal?
A) Instance 1 = VLANs 4,6 Instance 2 = VLANs 5,7Switch 2 instance 1 priority = 0 Switch 2 instance 2 priority = 1Switch 3 instance 1 priority = 1 Switch 3 instance 2 priority = 0
B) Instance 1 = VLANs 4-5 Instance 2 = VLANs 6-7Switch 2 instance 1 priority = 0 Switch 2 instance 2 priority = 1Switch 3 instance 1 priority = 0 Switch 3 instance 2 priority = 1
C) Instance 1 = VLANs 4-5 Instance 2 = VLANs 6-7Switch 2 instance 1 priority = 0 Switch 2 instance 2 priority = 1Switch 3 instance 1 priority = 1 Switch 3 instance 2 priority = 0
D) Instance 1 = VLANs 4,6 Instance 2 = VLANs 5,7Switch 2 instance 1 priority = 0 Switch 2 instance 2 priority = 1Switch 3 instance 1 priority = 0 Switch 3 instance 2 priority = 1
Solutions:
| Question # 1 Answer: D | Question # 2 Answer: C | Question # 3 Answer: A | Question # 4 Answer: D | Question # 5 Answer: A |

