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所在平台: Udemy |
课程主页: https://www.udemy.com/course/encor-cisco-ccnp-enterprise-350-401-exam-question-sim-encor/
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课程名称:ENCOR Cisco CCNP Enterprise 350-401 考试模拟题 课程概述: 本课程旨在帮助学员准备实施思科企业网络核心技术(ENCOR 350-401)考试,该考试是与 CCNP Enterprise 和 CCIE Enterprise 认证相关的120分钟测试。课程内容覆盖了企业网络核心技术的实施,包括架构、虚拟化、基础设施、网络保障、安全性及自动化等多个领域,帮助学员全面理解这些知识,以更好地应对实际考试。 考试主题包括: 1. **架构**: - 企业网络设计原则 - WLAN 部署的分析 - 本地与云基础设施的比较 - 思科 SD-WAN 和 SD-Access 解决方案的原理 - 有线和无线 QoS 概念及策略 - 硬件与软件交换机制的区分 2. **虚拟化**: - 设备虚拟化技术 - 数据路径虚拟化技术的配置与验证 - 网络虚拟化概念 3. **基础设施**: - 层次 2 和层次 3 的配置与故障排除 - 无线网络的概念和配置 - IP 服务的描述与配置 4. **网络保障**: - 网络问题诊断工具使用 - 设备监控的配置与验证 - Cisco DNA Center 工作流 5. **安全性**: - 设备访问控制的配置与验证 - 网络安全基础组件的描述 - 无线安全特性的配置与验证 6. **自动化**: - 基本 Python 组件与脚本的理解 - 数据建模语言 YANG 的高层原则与优点 - Cisco DNA Center 和 vManage 的 API 描述 请注意,此课程并未获得思科的授权、隶属或商标,属于非官方课程。
Implementing Cisco Enterprise Network Core Technologies which is also called as ENCOR 350-401 is a 120-minute exam related with the - CCNP Enterprise and - CCIE Enterprise Certifications. With these tests , your knowledge of - Implementing core enterprise network technologies - Architecture - Virtualization- Infrastructure - Network assurance - Security- Automationwill be heavily tested to prepare your for the real exam.Exam topics are:1.0 Architecture1.1 Explain the different design principles used in an enterprise network 1.1.a Enterprise network design such as Tier 2, Tier 3, and Fabric Capacity planning 1.1.b High availability techniques such as redundancy, FHRP, and SSO1.2 Analyze design principles of a WLAN deployment 1.2.a Wireless deployment models (centralized, distributed, controller-less, controller based, cloud, remote branch) 1.2.b Location services in a WLAN design1.3 Differentiate between on-premises and cloud infrastructure deployments1.4 Explain the working principles of the Cisco SD-WAN solution 1.4.a SD-WAN control and data planes elements 1.4.b Traditional WAN and SD-WAN solutions1.5 Explain the working principles of the Cisco SD-Access solution 1.5.a SD-Access control and data planes elements 1.5.b Traditional campus interoperating with SD-Access1.6 Describe concepts of wired and wireless QoS 1.6.a QoS components 1.6.b QoS policy1.7 Differentiate hardware and software switching mechanisms 1.7.a Process and CEF 1.7.b MAC address table and TCAM 1.7.c FIB vs. RIB2.0 Virtualization2.1 Describe device virtualization technologies 2.1.a Hypervisor type 1 and 2 2.1.b Virtual machine 2.1.c Virtual switching2.2 Configure and verify data path virtualization technologies 2.2.a VRF 2.2.b GRE and IPsec tunneling2.3 Describe network virtualization concepts 2.3.a LISP 2.3.b VXLAN3.0 Infrastructure3.1 Layer 2 3.1.a Troubleshoot static and dynamic 802.1q trunking protocols 3.1.b Troubleshoot static and dynamic EtherChannels 3.1.c Configure and verify common Spanning Tree Protocols (RSTP and MST)3.2 Layer 3 3.2.a Compare routing concepts of EIGRP and OSPF (advanced distance vector vs. linked state, load balancing, path selection, path operations, metrics) 3.2.b Configure and verify simple OSPF environments, including multiple normal areas, summarization, and filtering (neighbor adjacency, point-to-point and broadcast network types, and passive interface) 3.2.c Configure and verify eBGP between directly connected neighbors (best path selection algorithm and neighbor relationships)3.3 Wireless 3.3.a Describe Layer 1 concepts, such as RF power, RSSI, SNR, interference noise, band and channels, and wireless client devices capabilities 3.3.b Describe AP modes and antenna types 3.3.c Describe access point discovery and join process (discovery algorithms, WLC selection process) 3.3.d Describe the main principles and use cases for Layer 2 and Layer 3 roaming 3.3.e Troubleshoot WLAN configuration and wireless client connectivity issues3.4 IP Services 3.4.a Describe Network Time Protocol (NTP) 3.4.b Configure and verify NAT/PAT 3.4.c Configure first hop redundancy protocols, such as HSRP and VRRP 3.4.d Describe multicast protocols, such as PIM and IGMP v2/v34.0 Network Assurance4.1 Diagnose network problems using tools such as debugs, conditional debugs, trace route, ping, SNMP, and syslog4.2 Configure and verify device monitoring using syslog for remote logging4.3 Configure and verify NetFlow and Flexible NetFlow4.4 Configure and verify SPAN/RSPAN/ERSPAN4.5 Configure and verify IPSLA4.6 Describe Cisco DNA Center workflows to apply network configuration, monitoring, and management4.7 Configure and verify NETCONF and RESTCONF5.0 Security5.1 Configure and verify device access control 5.1.a Lines and password protection 5.1.b Authentication and authorization using AAA5.2 Configure and verify infrastructure security features 5.2.a ACLs 5.2.b CoPP5.3 Describe REST API security5.4 Configure and verify wireless security features 5.4.a EAP 5.4.b WebAuth 5.4.c PSK5.5 Describe the components of network security design 5.5.a Threat defense 5.5.b Endpoint security 5.5.c Next-generation firewall 5.5.d TrustSec, MACsec 5.5.e Network access control with 802.1X, MAB, and WebAuth6.0 Automation6.1 Interpret basic Python components and scripts6.2 Construct valid JSON encoded file6.3 Describe the high-level principles and benefits of a data modeling language, such as YANG6.4 Describe APIs for Cisco DNA Center and vManage6.5 Interpret REST API response codes and results in payload using Cisco DNA Center and RESTCONF6.6 Construct EEM applet to automate configuration, troubleshooting, or data collection6.7 Compare agent vs. agentless orchestration tools, such as Chef, Puppet, Ansible, and SaltStackThis course is not licensed, affiliated or trademarked with Cisco and this is an unofficial course.