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Q1. When adding an IPSec headend termination device to your network design, which two performance indicators are the most accurate to determine device scalability? (Choose two.) 

A. CPU capabilities 

B. bandwidth capabilities 

C. packets per second capabilities 

D. maximum tunnel termination capabilities 

Answer: CD 

Q2. Voice traffic between two campus enterprise networks is growing. The network designers decide to add a second 10-Mb Metro Ethernet service parallel to their original 10-Mb service in order to provide more bandwidth and diversity. The QoS profile will be the same on the new 10-Mb service due to the voice stability on the first Metro Ethernet link. When the second link is added to the OSPF domain, which traffic design consideration would have the most impact on the voice traffic when both links are active? 

A. per-destination IP address basis 

B. per-flow basis 

C. per-packet basis 

D. per-source IP address basis 

Answer:

Q3. Refer to the exhibit. 

Which technology could be used in this design to provide link recovery and high traffic capacity? 

A. Rapid PVST 

B. MST 

C. PAgP 

D. Flex Links 

Answer:

Q4. A network designer is redesigning an enterprise campus network to ensure that Ethernet switches proactively attempt to reconnect after a fiber cut. In the design, they will have to address areas where fiber cuts exist on campus from past troubleshooting, where a single fiber is disconnected in the fiber pair, leading to looping. Which feature could be implemented in the design to allow the Spanning Tree Protocol on the switches to be protected? 

A. loop guard 

B. UniDirectional Link Detection 

C. UniDirectional Link Detection aggressive mode 

D. root guard 

Answer:

Q5. You have been asked to design a wireless network solution that will implement context-aware services on an existing network that was initially deployed for data traffic only. Which two design principles would you follow to increase the location accuracy with the least possible impact on the current setup? (Choose two.) 

A. Use directional antennas to provide better cell separation. 

B. Add access points along the perimeter of the coverage area. 

C. Install additional APs in monitor mode where the cochannel interference would otherwise be affected. 

D. Increase the AP density to create an average interaccess point distance of less than 40 ft. 

E. Fine tune the access points radio configuration to have a higher average transmission power to achieve better coverage. 

Answer: BC 

Q6. When you design a network, when would it be required to leak routes into a Level 1 area? 

A. when a multicast RP is configured in the nonbackbone area 

B. when MPLS L3VPN PE devices are configured in the Level 1 areas 

C. when equal cost load balancing is required between the backbone and nonbackbone areas 

D. when unequal cost load balancing is required between the backbone and nonbackbone areas 

Answer:

Q7. Your design plan includes mutual redistribution of two OSPF networks at multiple locations, with connectivity to all locations in both networks. How is this accomplished without creating routing loops? 

A. Use route maps on the ASBRs to allow only internal routes to be redistributed. 

B. Use route maps on the ASBRs to allow internal and external routes to be redistributed. 

C. Use route maps on the ASBRs to set tags for redistributed routes. 

D. Use route maps on the ASBRs to filter routes with tags so they are not redistributed. 

Answer:

Q8. When a design calls for spanning VLANs across a campus network, what are two issues that need to be addressed in the design? (Choose two.) 

A. network convergence 

B. network accessibility 

C. fault isolation 

D. application scalability 

E. user experience 

Answer: AC 

Q9. Refer to the exhibit. 

You are asked to design this OSPF network to converge within 60 ms for unicast packets after a topology change due to a single link failure. Which technology can be enabled while conforming to the design requirements? 

A. Loop-Free Alternates 

B. BFD 

C. IGP neighbor timer tuning 

D. IGP SPF timer tuning 

E. RSVP-TE Fast Reroute 

Answer:

Q10. Which three methods allow storage access across an IP network? (Choose three.) 

A. FCIP 

B. Fiber Channel over GRE 

C. Fiber Channel over L2TPv3 

D. iSCSI 

E. NFS 

Answer: ADE