350-601 DCCOR Cisco Data Center Core Technologies Tests
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Are you ready to prepare for the Cisco CCNP Data Center 350-601 DCCOR exam ?Get Verified Questions and Answers Practice tests The creation of enterprise-sized data requires professionals who can implement effective solutions in enterprise-class data centers. A CCNP Data Center certification from Cisco is proof that you have the skills necessary to run an effective data center. Test your knowledge of the implementation of core data center technologies including network, compute, storage network, automation, and security on the DCCOR exam. Implementing Cisco Data Center Core Technologies (DCCOR 350-601) is a 120- minute exam associated with the CCNP and CCIE Data Center Certifications. This exam certifies a candidate's knowledge of implementing core data center technologies including network, compute, storage network, automation, and security. The course, Implementing Cisco Data Center Core Technologies, helps candidates to prepare for this exam. Cisco 350-601 DCCOR Exam Topics:1.0 Network1.1 Apply routing protocols1.1. a OSPFv2 and OSPFv31.1. b MP-BGP1.1. c PIM1.1. d FHRP1.2 Apply switching protocols such as RSTP+, LACP and vPC1.3 Apply overlay protocols such as VXLAN EVPN1.4 Apply ACI concepts1.4. a Fabric setup1.4. b Access policies1.4. c VMM1.5 Analyze packet flow (unicast, multicast, and broadcast)1.6 Describe Cloud service and deployment models (NIST 800-145)1.7 Describe software updates and their impacts1.7. a Disruptive / nondisruptive1.7. b EPLD1.7. c Patches1.8 Implement network configuration management1.9 Implement infrastructure monitoring such as NetFlow and SPAN1.10 Explain network assurance concepts such as streaming telemetry1.11 Describe the capabilities and features of Nexus Dashboard2.0 Compute2.1 Implement Cisco Unified Compute System Rack Servers2.2 Implement Cisco Unified Compute System Blade Chassis2.2. a Initial setup2.2. b Infrastructure management2.2. c Network management (VLANs, pools and policies, templates, QoS)2.2. d Storage management (SAN connectivity, Fibre Channel zoning, VSANs, WWN pools, SAN policies, templates)2.2. e Server management (Server pools and boot policies)2.3 Explain HyperFlex Infrastructure Concepts and benefits (Edge and Hybrid Architecture vs all-flash)2.4 Describe firmware and software updates and their impacts on B-Series and C-Series servers2.5 Implement compute configuration management (Backup and restore)2.6 Implement infrastructure monitoring such as SPAN and Cisco Intersight3.0 Storage Network3.1 Implement Fibre Channel3.1. a Switch fabric initialization3.1. b Port channels3.1. c FCID3.1. d CFS3.1. e Zoning3.1. f FCNS3.1. g Device alias3.1. h NPV and NPIV3.1. i VSAN3.2 Implement FCoE Unified Fabric3.3 Describe NFS and NAS concepts3.4 Describe software updates and their impacts (Disruptive/nondisruptive and EPLD)3.5 Implement infrastructure monitoring4.0 Automation4.1 Implement automation and scripting tools4.1. a EEM4.1. b Scheduler4.1. c Bash Shell and Guest Shell for NX-OS4.1. d REST API (NX-API, JSON and XML encodings)4.1. e On-box Python4.2 Evaluate automation and orchestration technologies4.2. a Ansible4.2. b Python4.2. c POAP4.2. d Cisco Nexus Dashboard Fabric Controller4.2. e PowerShell4.2. f Terraform5.0 Security5.1 Apply network security5.1. a AAA and RBAC5.1. b ACI contracts and microsegmentation5.1. c First-hop security features5.1. d Keychain authentication5.2 Apply compute security5.2. a AAA and RBAC5.3 Apply storage security5.3. a AAA and RBAC5.3. b Port security5.3. c Fabric binding

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