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300-110 Exam Dumps - Designing Cisco Wireless Networks (300-110 WLSD) v1.2

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Question # 4

A network engineer is designing a new wireless network for a campus. The network must include optimized performance, avoid interference, availability in high-density areas, and roaming. Which two approaches must be taken? (Choose two.)

A.

5 GHz frequency band with 20 MHz channels

B.

2.4 GHz frequency band with 20 MHz channels

C.

5 GHz frequency band with 80 MHz channels

D.

2.4 GHz frequency band with 40 MHz channels

E.

5 GHz frequency band with 40 MHz channels

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Question # 5

An engineer must identify the network requirements for a company that has a main office and 10 branch offices. The network must be able to support data, voice, video, and location tracking. Which two factors must be considered? (Choose two.)

A.

security policy of the company for building access

B.

number of wireless devices that require access

C.

type of site for which the survey will be performed

D.

business type of the company

E.

available power sockets in the IT room

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Question # 6

An engineer must design AP placements for a new branch office that contains two floors. The engineer uses Ekahau to complete the predictive survey. To calculate the signal bleed through between floors, the engineer creates a building, adds the floors, and attenuation areas. After the scale is set, what else must be added on the floors to accurately measure the signal bleed at a specific location?

A.

Draw in coverage areas.

B.

Start the auto planner.

C.

Add alignment points.

D.

Choose the access point models.

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Question # 7

A university lecture hall has a Cisco wireless high-density network with this configuration: • 5 GHz only • 20-MHz channels • UNII-1, UNII-2, and UNII-2E channels • TPC minimum = 8 • TPC maximum = 14 The lecture hall is 200 feet by 100 feet and has 16 Cisco APs that use directional antennas. Which feature must be included in the design to mitigate and reduce high-channel utilization from rogue APs?

A.

band select

B.

802.11w

C.

RxSOP

D.

DFS detection

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Question # 8

A retail customer opened two new branch locations, and the main store HQ handles data center operations. Each branch location has three Cisco Catalyst 9130 APs. The data center has a Catalyst 9800 WLC with 18 Catalyst 9130 APs. Growing business and poor WAN uplinks cause impacted branch AP and wireless client connectivity back to HQ, and each branch location is now planned to have its own EWC controller based on C9130 AP to keep traffic local. This new design must accommodate: guests and employees sharing the same WLAN with different VLANs, guest uplink and downlink traffic restricted to 2 Mbps, and each branch acting as secondary or tertiary backup to another branch with the data center WLC always being the primary. Which design approach should the consulting engineer take?

A.

Two C9130 branch APs must be converted to EWC mode, one for the active controller and the other for standby, with HQ WLC set as a primary N+1 backup, and other branches ' EWC must be added as mobility peers. The branch WLAN will use the guest anchor to HQ WLC for guest VLAN access.

B.

One C9130 branch AP must be converted to EWC mode, and the preferred controller is set to that AP with HQ WLC set as a primary N+1 backup and other branches ' EWC AP as secondary and tertiary. HQ AAA must be added to EWC, and WLAN with MAB + AAA override must be configured.

C.

Two C9130 branch APs must be converted to EWC mode, one for the active controller and the other for standby, with the standby EWC set as N+1 backup. HQ AAA must be added to EWC, and WLAN with dot1x + AAA override must be configured.

D.

One C9130 branch AP must be converted to EWC mode, and the preferred controller is set to that AP with HQ WLC set as N+1 backup. The branch guest WLAN will use local web auth on guest VLAN.

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