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| Section | Weight | Objectives |
|---|---|---|
| Security Fundamentals | 15% | 1.Define key security concepts (threats, vulnerabilities, exploits, and mitigation techniques) 2.Describe security program elements (user awareness, training, and physical access control) 3.Configure device access control using local passwords 4.Describe security password policies elements, such as management, complexity, and password alternatives (multifactor authentication, certificates, and biometrics) 5.Describe remote access and site-to-site VPNs 6.Configure and verify access control lists 7.Configure Layer 2 security features (DHCP snooping, dynamic ARP inspection, and port security) 8.Differentiate authentication, authorization, and accounting concepts 9.Describe wireless security protocols (WPA, WPA2, and WPA3) 10.Configure WLAN using WPA2 PSK using the GUI |
| Network Fundamentals | 20% | 1.Explain the role and function of network components
2.Describe characteristics of network topology architectures
3.Compare physical interface and cabling types
4.Identify interface and cable issues (collisions, errors, mismatch duplex, and/or speed)
10.Verify IP parameters for Client OS (Windows, Mac OS, Linux)
12.Explain virtualization fundamentals (virtual machines)
|
| Automation and Programmability | 10% | 1.Explain how automation impacts network management 2.Compare traditional networks with controller-based networking 3.Describe controller-based and software defined architectures (overlay, underlay, and fabric)
4.Compare traditional campus device management with Cisco DNA Center enabled device management |
| IP Services | 10% | 1.Configure and verify inside source NAT using static and pools 2.Configure and verify NTP operating in a client and server mode 3.Explain the role of DHCP and DNS within the network 4.Explain the function of SNMP in network operations 5.Describe the use of syslog features including facilities and levels 6.Configure and verify DHCP client and relay 7.Explain the forwarding per-hop behavior (PHB) for QoS such as classification, marking, queuing, congestion, policing, shaping 8.Configure network devices for remote access using SSH 9.Describe the capabilities and function of TFTP/FTP in the network |
| Network Access | 20% | 1.Configure and verify VLANs (normal range) spanning multiple switches
2.Configure and verify interswitch connectivity
3.Configure and verify Layer 2 discovery protocols (Cisco Discovery Protocol and LLDP)
6.Compare Cisco Wireless Architectures and AP modes |
| IP Connectivity | 25% | 1.Interpret the components of routing table
2.Determine how a router makes a forwarding decision by default
3.Configure and verify IPv4 and IPv6 static routing
4.Configure and verify single area OSPFv2
5.Describe the purpose of first hop redundancy protocol |
The 200-301 exam is intended for those practitioners who are new to the IT sector and looking to advance their career in this industry. This certification test improves the general expertise of the support specialists who are responsible for the fundamental design, deployment, and maintenance of Cisco network ecosystems. In addition, Cisco 200-301 is an ideal exam for the Network Engineers, Administrators, Support Technicians, and Help Desk Specialists.
This topic includes the following skills: explaining the network components role; describing network topology architectures; comparing cabling and physical interface types; defining cable and interface issues (collisions, speed, errors, mismatch duplex); comparing TCP and UDP; customizing and verifying subnetting IPv4 subnetting and addressing; describing the necessity of private IPv4 addressing; customizing and verifying IPv6 prefix and addressing; comparing IPv6 address types; verifying IP parameters for Client OS (Linux, Windows, Mac OS); describing switching principles; explaining wireless concepts; explaining virtualization basics (virtual machines).
Within this domain, the examinees need to demonstrate their ability to: interpret the routing table components (routing protocol code, network mask, prefix, next hop, last resort gateway, administrative distance, metric); customize IPv4 and IPv6 static routing (host route, default route, floating static, network route); identify how a router makes a forwarding decision by default (administrative distance, longest match, routing protocol metric); customize and verify single area OSPFv2 (point-to-point, neighbor adjacencies, router ID, broadcast); explain the objective of first hop redundancy protocol.
This subject area evaluates the following skills of the candidates: identifying core security concepts (vulnerabilities, threats, exploits, mitigation techniques); explaining security program elements (physical access control, user awareness, and training); customizing device access control using local passwords; explaining the elements of security password policies, including complexity, management, password alternatives (multifactor authentication, certificates, and biometrics); describing site-to-site VPNs and remote access; configuring and verifying access control lists; configuring security features of Layer 2 (dynamic ARP inspection, DHCP snooping, port security); differentiating accounting, authentication, and authorization concepts; describing WPA, WPA2, and WPA3 security protocols; customizing WLAN with the help of WPA2 PSK.
Here the applicants need to demonstrate that they are capable of: explaining how automation affects network management; distinguishing traditional networks from controller-based networking; describing software defined and controller-based architectures (fabric, overlay, underlay); distinguishing traditional campus device management from Cisco DNA Center enabled device management; describing REST-based APIs characteristics (data encoding, CRUD, HTTP verbs); recognizing the abilities of Puppet, Chef, and Ansible configuration management mechanisms; interpreting JSON encoded data.
This objective combines the questions that check competency of the test takers in: customizing and verifying within source NAT with the help of static and pools; customizing and verifying NTP operating in a server and client mode; explaining the function of DHCP and DNS within the network; explaining the role of SNMP in executing network operations; describing the utilization of syslog features including facilities and levels; customizing and verifying DHCP relay and client; explaining the forwarding per-hop behavior (PHB) for QoS, including classification, queuing, marking, shaping, congestion, policing; customizing remote access network devices with the help of SSH; describing the function of TFTP/FTP in the network.
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