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Cisco 350-101 Exam Syllabus Topics:
Topic
Details
Topic 1
- Automation and AI: Covers Python scripting basics, NETCONF
- YANG, wireless API interpretation, and AI-driven analytics, operations, and radio resource management within Catalyst Center.
Topic 2
- 802.11 Technology Fundamentals: Covers Wi-Fi governance bodies, regional channel and power regulations, and the core technical principles of 802.11 including modulation, channel width, MIMO, topologies, and frame types.
Topic 3
- Wireless Monitoring and Management: Covers network maintenance tasks, client monitoring configuration, troubleshooting client connectivity issues, and integrating with external devices and platforms.
Cisco Implementing and Operating Cisco Wireless Core Technologies Sample Questions (Q76-Q81):
NEW QUESTION # 76
A deployment requires that several APs be connected to edge switches, and each AP must support management and guest Wi-Fi traffic. The APs tag guest traffic separately from management, and the organization expects to add more VLANs for IoT and voice soon, so the configuration must support scalability. The security team requires that guest traffic never mix with internal resources. Which port configuration must be used for the switch interfaces that connect to the APs?
- A. Configure the central Layer 3 switch port as an access VLAN port that allows the management VLAN only.
- B. Make the port an access port on the management VLAN because all traffic is tunneled back to the WLC.
- C. Implement switch port access with the native VLAN for guest traffic and trunk with the management VLAN.
- D. Set a trunk port with the management VLAN as the native VLAN, and allow only management and user VLANs.
Answer: D
Explanation:
The switch interfaces connected to the APs must be configured as 802.1Q trunk ports. The requirement states that AP management and guest Wi-Fi traffic must remain separate, and additional VLANs for IoT and voice are expected. An access port supports only one VLAN, so it cannot scale for multiple locally tagged client VLANs. Cisco's Catalyst AP guidance states that when multiple VLANs are used for client traffic, the AP switch port should trunk the VLANs, and management traffic is untagged; when a management VLAN is used, it should be configured as the native VLAN on the switch port. Cisco's Catalyst 9800 FlexConnect documentation also shows the AP connected to a trunk port with a native VLAN for AP IP connectivity and a separate VLAN for locally switched client traffic.
Option C is therefore correct: configure a trunk, set the AP management VLAN as native, and restrict the allowed VLAN list to only required management and client VLANs such as guest, IoT, and voice. This supports segmentation and prevents unnecessary internal VLAN exposure. Reference topics:AP switch-port design, 802.1Q trunks, native VLANs, client VLAN tagging, FlexConnect/local switching, and guest traffic segmentation.
NEW QUESTION # 77
Which benefit does enabling SNMP monitoring provide for Cisco wireless device management?
- A. hardware-only performance metrics
- B. alerts on access point status
- C. fragmented statistics across controllers
- D. manual log review for each branch
Answer: B
Explanation:
SNMP monitoring provides centralized visibility and event notification for Cisco wireless infrastructure. On Cisco Catalyst 9800 wireless controllers, SNMP traps are used to send alert messages from SNMP-enabled devices to an SNMP manager, and Cisco specifically documents wireless trap support for access points, clients, mesh, RF, rogue, mobility, RRM, and controller events. Cisco also states that AP-related traps such as crash, register, and no-radio-card events are enabled by default, and that configuring AP traps helps monitor AP status and troubleshoot issues.
Therefore, the direct operational benefit isalerts on access point status. SNMP is not limited to hardware-only metrics; it can expose client counts, joined AP counts, processor usage, memory usage, and wireless event notifications through supported OIDs and traps. Manual log review is the opposite of SNMP's purpose because traps automate notification to a network management system. Fragmented statistics are also incorrect because SNMP enables centralized polling and trap collection across managed devices. Reference topics:
Wireless Monitoring and Management - SNMP, MIB/OID monitoring, Catalyst 9800 wireless traps, AP status monitoring, and NMS integration.
NEW QUESTION # 78
Which role does a fabric edge node perform in a Cisco wireless fabric architecture?
- A. Enabling multicast snooping on edge switches
- B. Authenticating TLS connections for management
- C. Terminating user data
- D. Converting Layer 2 to Layer 3 addresses
Answer: C
Explanation:
In a Cisco wireless fabric architecture, fabric edge nodes are responsible for terminating user data traffic at the network edge. These nodes act as the first point of contact for client devices, handling tasks such as encryption
/decryption, VLAN tagging, Quality of Service (QoS) enforcement, and traffic forwarding to the appropriate destination within the fabric. The design centralizes control-plane functions in fabric control nodes, while edge nodes focus on data-plane operations to reduce latency and optimize network performance. Option A, authenticating TLS connections for management, is handled by management or control-plane components rather than edge nodes. Option B, enabling multicast snooping, is a network switch function but not a core responsibility of fabric edge nodes. Option D, converting Layer 2 to Layer 3 addresses, is part of routing functions and not a dedicated role of the wireless fabric edge node in client data processing. Cisco Wireless Core Technologies emphasize that by terminating user data at the edge, fabric edge nodes enable efficient traffic handling, secure processing, and scalable wireless deployment, which is critical in high-density enterprise environments. Reference topics:Wireless Network Operation - Cisco wireless fabric architecture, fabric edge node role, user data termination, data-plane operations.
NEW QUESTION # 79
Exhibit:
Refer to the exhibit. An onsite engineer is working to connect devices to the wireless network in a corporate environment. The network requirements dictate that WPA2-Enterprise security must be used with certificate- based mutual authentication to align with enterprise policy, which requires client and server certificates for secure access. After the initial wireless settings are applied on a Windows-based workstation, the engineer must select the appropriate authentication method in the client network properties to complete a successful enterprise Wi-Fi connection. Which option in the "Choose a network authentication method" dropdown meets this requirement?
- A. EAP-TLS
- B. TEAP
- C. PEAP
- D. MSCHAPv2
Answer: A
Explanation:
The correct authentication method isEAP-TLS. WPA2-Enterprise uses 802.1X/EAP authentication rather than a pre-shared key, and the supplicant, authenticator, and RADIUS authentication server participate in the enterprise authentication exchange. Cisco documentation states that in enterprise WPA/WPA2 operation,
802.1X/EAP is used for authentication and provides strong authentication between the client and authentication server.
The decisive requirement in the question iscertificate-based mutual authentication requiring both client and server certificates. Cisco explicitly describes EAP-TLS as requiring both server-side and client-side certificates, while PEAP requires only a server-side certificate and normally authenticates the client with password-based credentials inside the protected tunnel. Cisco Secure ACS documentation also states that EAP-TLS uses the certificates of the authentication server and the end-user client, enforcing mutual authentication.
MSCHAPv2 is a password-based inner authentication method, not certificate-based mutual authentication.
PEAP protects credential exchange with a server certificate but does not inherently require a client certificate.
TEAP can support flexible tunneled authentication, but the strict client-and-server certificate requirement maps directly toEAP-TLS. Reference topic:Client Connectivity Configuration - WPA2-Enterprise, 802.1X supplicant configuration, EAP methods, certificates, and RADIUS authentication.
NEW QUESTION # 80
How does MIMO operate during wireless transmission?
- A. It shares a single connection among endpoints for coverage expansion.
- B. It limits data paths to a single antenna for error reduction.
- C. It uses multiple radio paths to increase throughput and reliability.
- D. It applies frequency hopping to prevent crosstalk.
Answer: C
Explanation:
MIMO, or Multiple-Input Multiple-Output, is a core 802.11n and later wireless technology that uses multiple transmit and receive radio chains and antennas to improve wireless performance. Cisco's Wireless RF Reference Guide explains that IEEE 802.11n introduced MIMO, replacing the older single-radio SISO model with multiple radios, each using its own antenna, to increase data rates and improve reception in multipath environments. Cisco also notes that weak or distorted multipath signals can be received by more than one radio and reconstructed, improving decode quality and reliability.
This directly supports option A: MIMO exploits multiple RF paths rather than treating multipath as purely destructive. Depending on implementation, MIMO can use spatial diversity, maximal ratio combining, and spatial streams to increase throughput, improve signal-to-noise ratio, reduce retries, and make more efficient use of airtime. Cisco describes spatial stream notation such as 4x4:4 as four transmitters, four receivers, and four spatial streams. Option B describes frequency hopping, not MIMO. Option C is not a MIMO function.
Option D is the opposite of MIMO because MIMO deliberately uses multiple antennas and radio paths.
Reference topics:802.11 Technology Fundamentals - MIMO, spatial streams, multipath, SISO versus MIMO, and 802.11n/ac/ax PHY enhancements.
NEW QUESTION # 81
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