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Cisco 300-110 Exam Syllabus Topics:

SectionWeightObjectives
Wireless Infrastructure Design30%- High-density wireless design
  • 1. Capacity optimization techniques
    • 2. Co-channel interference mitigation
      • 3. Channel planning and power management
        - Wired-wireless integration design
        • 1. Switching infrastructure requirements
          • 2. VLAN and QoS design
            • 3. PoE and power planning
              - Wireless Controller architecture and deployment
              • 1. AP modes and deployment options
                • 2. Redundancy and high availability design
                  • 3. Controller models and scalability
                    Mobility Design25%- Guest mobility and BYOD design
                    - Mobility architecture models
                    • 1. Anchor and foreign controller design
                      • 2. Mobility groups and domains
                        • 3. Layer 2 and Layer 3 roaming
                          - Roaming optimization
                          • 1. 802.11r/k/v standards implementation
                            • 2. Fast Secure Roaming
                              Wireless Site Survey25%- Layer 1 site survey execution and analysis
                              - RF propagation and attenuation analysis
                              - Design requirements collection and constraint evaluation
                              • 1. Deployment type considerations
                                • 2. Client density and capacity planning
                                  • 3. AP and antenna type selection
                                    • 4. Real-time application requirements
                                      • 5. Security requirements definition
                                        - Pre-deployment survey and validation
                                        WLAN High Availability and Security Design20%- High availability design
                                        • 1. AP redundancy and resiliency
                                          • 2. Controller failover and stateful switchover
                                            • 3. N+1 and N+N redundancy models
                                              - Management and monitoring design
                                              - Security architecture design
                                              • 1. Wireless intrusion prevention design
                                                • 2. Authentication and authorization frameworks
                                                  • 3. Encryption and privacy mechanisms

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                                                    300-110 Valid Test Topics & Hot 300-110 Spot Questions

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                                                    Cisco Designing Cisco Wireless Networks Sample Questions (Q75-Q80):

                                                    NEW QUESTION # 75
                                                    A customer is planning to replace older access points with Cisco 4800 Series Access Points. Unaware of the infrastructure requirements, the client has an engineer investigate the inline power requirement. Which IEEE
                                                    802.3 standard complies with the Cisco 4800 Series Access Points?

                                                    Answer: B

                                                    Explanation:
                                                    The Cisco Aironet 4800 Series Access Point is a tri-radio, high-performance access point designed for high- density environments. It draws significantly more power than older dual-radio APs and requires IEEE 802.3bt (also known as PoE++), which provides up to 90W per port at the Power Sourcing Equipment. IEEE 802.3af (Type 1 PoE) delivers only 15.4W and 802.3at (Type 2 PoE+) provides up to 30W - both are insufficient for full functionality of the 4800 series, which has a dedicated third scanning radio that requires the additional power budget provided by 802.3bt. IEEE 802.3ac is a standard related to VLAN tagging and is entirely unrelated to Power over Ethernet. Engineers designing wired infrastructure for Cisco 4800 deployments must ensure switches support 802.3bt Type 3 or Type 4 to guarantee full AP functionality across all three radios simultaneously. Reference: WLSD Study Guide - Wired Infrastructure Design, PoE Standards and Power Budget Planning, Cisco 4800 Series AP Specifications.


                                                    NEW QUESTION # 76
                                                    A wireless engineer is designing a wireless network for a warehouse using access points with internal antennas. Which two elements have a negative effect on the wireless users? (Choose two.)

                                                    Answer: A,C

                                                    Explanation:
                                                    In a warehouse setting, two elements with a significant negative effect on wireless performance are AP height and absorption. AP height (Option B) is critical because warehouses often have very high ceilings (25-45 feet). When APs with internal (omnidirectional) antennas are mounted too high, the signal propagates primarily in the horizontal plane and the path loss to floor-level worker devices becomes excessive.
                                                    Additionally, metal shelving between the AP and users further attenuates the already weak signal at high mounting heights. Absorption (Option E) is a major challenge in warehouses because the inventory stored on metal racks, particularly liquid goods, dry goods in cardboard, and dense materials, absorbs RF energy significantly. Metal racking causes both absorption and reflection, creating RF shadows and multipath environments that degrade connection quality. Wireless channels (Option A) are a design parameter, not an environmental impediment. Client authentication (Option C) and authorization (Option D) are network security processes unrelated to RF propagation quality. Reference: WLSD Study Guide - Warehouse Wireless Design, AP Height Considerations, RF Absorption in Industrial Environments.


                                                    NEW QUESTION # 77
                                                    An engineer is performing an AP-on-a-stick survey and finds that the 5 GHz channel overlap is too high when an appropriate number of APs are used for the density requirements. Which two actions during the survey reduce channel overlap? (Choose two.)

                                                    Answer: A,E

                                                    Explanation:
                                                    Raising the minimum data rate to 24 Mbps reduces the effective coverage range of each AP because clients at the cell edge operating at low data rates are effectively excluded from the cell.
                                                    This shrinks cell size, reducing channel overlap between neighboring APs on the same channel.
                                                    Using directional antennas limits the coverage area of some APs by focusing RF energy in specific directions rather than radiating omnidirectionally, which directly reduces the lateral overlap between adjacent APs.


                                                    NEW QUESTION # 78
                                                    An enterprise is using two wireless controllers to support the wireless network. The data centre is located in the head office. Each controller has a corporate WLAN configured with different SSID names. The APs are installed using a round-robin approach to load balance the traffic. What should be changed in the configuration to optimize roaming?

                                                    Answer: D

                                                    Explanation:
                                                    To optimize roaming in a wireless network with multiple controllers, it is essential to use the same WLAN name (SSID) across all controllers. When SSIDs differ between controllers, clients perceive them as different networks and must perform a full re-association and re-authentication when roaming between APs managed by different controllers. This causes a roaming disruption equivalent to connecting to an entirely new network. By using identical SSID names on both controllers, clients can seamlessly roam between APs on different controllers within the same mobility group -- the controllers exchange client state information via the mobility tunnel, enabling seamless handoff. In the scenario described, 'Copr-NET390595865WLC-1' and 'Copr- NET6837l638WLC-2' are different SSIDs, meaning clients cannot roam transparently between them. Making both controllers broadcast the same SSID name (and using a mobility group to connect the controllers) resolves this.


                                                    NEW QUESTION # 79
                                                    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?

                                                    Answer: A

                                                    Explanation:
                                                    This multi-constraint design scenario requires precise alignment of EWC architecture, N+1 redundancy hierarchy, AAA integration, and WLAN security policies. Option B correctly addresses all requirements. With only three APs per branch and a requirement to keep traffic local, converting a single C9130 to EWC mode is the correct and resource-efficient approach -- converting two APs to EWC (Options A and C) wastes AP capacity in a small three-AP branch.
                                                    The preferred controller set to the EWC AP ensures local APs join locally. The HQ WLC as primary N+1 backup satisfies the data center WLC always being primary requirement. Other branches' EWC APs configured as secondary and tertiary controllers creates the cross-branch redundancy hierarchy. Since guests and employees share the same SSID but require different VLANs, MAC Authentication Bypass (MAB) with AAA override allows the HQ ISE/AAA server to return VLAN attributes based on device or user identity -- dynamically assigning the correct VLAN at the policy level. The 2 Mbps guest rate limiting is applied through per-client QoS policies on the EWC. Option D's use of local web auth for guests does not enable dynamic VLAN assignment from AAA.


                                                    NEW QUESTION # 80
                                                    ......

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