The CCNA 200-301 certification exam is the entry-level credential from Cisco, validating foundational networking skills through the comprehensive 200-301 CCNA exam. This introductory certification serves as a benchmark for assessing proficiency in various key areas, including routing, switching, wireless, security, automation, and network programmability. To ensure success in the 200-301 CCNA exam, rigorous preparation is essential. The Cisco CCNA 200-301 exam is a challenging 120-minute test associated with the CCNA certification. It evaluates candidates' knowledge and skills in network fundamentals, IP connectivity, network access, IP services, security fundamentals, and programmability and automation. There are no specific prerequisites for this exam, but having a strong understanding of all exam topics and fundamentals is crucial. Additionally, candidates with at least one year of experience in computer networking and familiarity with Cisco equipment will have an advantage.
To increase your chances of success in your first attempt, consider obtaining the SPOTO CCNA 200-301 exam dumps. These resources can provide you with the necessary 200-301 exam questions and real exam simulations to enhance your preparation. passing the Cisco CCNA 200-301 exam demonstrates your competence in diverse operational areas, preparing you for entry-level network administration roles within the Cisco certified network associate (CCNA) track and setting you on a path for further certification advancements.
The Cisco Certified Network Associate exam or the new CCNA 200-301 exam is considered to replace the old CCNA certification exam. The change comes after Cisco decided that certification aspirants would only need to pass one exam instead of taking multiple exams depending on their track. As of February 24, 2020, there will no longer be diverse certification exams for each track, but only one exam.
The exam topics covered in the new CCNA are:
1.0 Network Fundamentals (20%)
1.1 Explain the role and function of network components
1.2 Describe characteristics of network topology architectures
1.3 Compare physical interface and cabling types
1.4 Identify interface and cable issues (collisions, errors, mismatch duplex, and/or speed)
1.5 Compare TCP to UDP
1.6 Configure and verify IPv4 addressing and subnetting
1.7 Describe the need for private IPv4 addressing
1.8 Configure and verify IPv6 addressing and prefix
1.9 Describe IPv6 address types
1.10 Verify IP parameters for Client OS (Windows, Mac OS, Linux)
1.11 Describe wireless principles
1.12 Explain virtualization fundamentals
1.13 Describe switching concepts
2.0 Network Access (20%)
2.1 Configure and verify VLANs (normal range) spanning multiple switches
2.2 Configure and verify interswitch connectivity
2.3 Configure and verify Layer 2 discovery protocols
2.4 Configure and verify (Layer 2/Layer 3) EtherChannel (LACP)
2.5 Describe the need for and basic operations of Rapid PVST+ Spanning Tree Protocol and identify basic operations
2.6 Compare Cisco Wireless Architectures and AP modes
2.7 Describe physical infrastructure connections of WLAN components
2.8 Describe AP and WLC management access connections
2.9 Configure the components of a wireless LAN access for client connectivity using GUI
3.0 IP Connectivity (25%)
3.1 Interpret the components of routing table
3.2 Determine how a router makes a forwarding decision by default
3.3 Configure and verify IPv4 and IPv6 static routing
3.4 Configure and verify single area OSPFv2
3.5 Describe the purpose, functions, and concepts of first hop redundancy protocols
4.0 IP Services (10%)
4.1 Configure and verify inside source NAT using static and pools
4.2 Configure and verify NTP operating in a client and server mode
4.3 Explain the role of DHCP and DNS within the network
4.4 Explain the function of SNMP in network operations
4.5 Describe the use of syslog features including facilities and levels
4.6 Configure and verify DHCP client and relay
4.7 Explain the forwarding per-hop behavior (PHB) for QoS such as classification, marking, queuing, congestion, policing, shaping
4.8 Configure network devices for remote access using SSH
4.9 Describe the capabilities and function of TFTP/FTP in the network
5.0 Security Fundamentals (15%)
5.1 Define key security concepts
5.2 Describe security program elements
5.3 Configure and verify device access control using local passwords
5.4 Describe security password policies elements, such as management, complexity, and password alternatives
5.5. Describe IPsec remote access and site-to-site VPNs
5.6 Configure and verify access control lists
5.7 Configure Layer 2 security features
5.8 Differentiate authentication, authorization, and accounting concepts
5.9 Describe wireless security protocols
5.10 Configure WLAN using WPA2 PSK using the GUI
6.0 Automation and Programmability (10%)
6.1 Explain how automation impacts network management
6.2 Compare traditional networks with controller-based networking
6.3 Describe controller-based and software defined architectures
6.4 Compare traditional campus device management with Cisco DNA Center enabled device management
6.5 Describe characteristics of REST-based APIs
6.6 Recognize the capabilities of configuration management mechanisms Puppet, Chef, and Ansible
6.7 Interpret JSON encoded data
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