Live CCNP ENCOR

CCIE CCNP ENCOR Enterprise

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About Course

Implementing Cisco Enterprise Network Core Technologies v1.0 (ENCOR 350-401) is a 120-minute exam associated with the CCNP and CCIE Enterprise Certifications. This exam tests a candidate's knowledge of implementing core enterprise network technologies including dual stack (IPv4 and IPv6) architecture, virtualization, infrastructure, network assurance, security and automation. The course, Implementing Cisco Enterprise Network Core Technologies, helps candidates to prepare for this exam.

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Exam Details

Exam Code 350-401 ENCOR
Exam Level  Professional
Exam Cost $400
Exam Duration 120 Minutes
Exam Format Multiple Choice Questions & Multiple Response
Total Questions 90-110 Questions
Passing Score
Variable (750-850 / 1000 Approx.)

Languages: English & Japanese

Eligibility

  • ✓ Completed Graduation
  • ✓ Prior knowledge of Computer Networking
  • ✓ Though not mandatory, it is recommended to have a CCNA Certification

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Choose from Hindi and English

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Includes:

🔴 70+ Hours Live ENCOR Training  By 12+ Yrs Exp CCIE Engineer.

Important to Read:

✅Timing for the 3 Hour class would be 8:30pm to 12:00pm IST.
✅ Approx 3 Months of Duration.
✅ Lab Access of our Servers till the course runs.
✅ Course Duration is upto Live Training 70 Hours+ 


This course helps you prepare to  Implementing Cisco® Enterprise Network Core Technologies (ENCOR) exam, which is part of four new certifications:

  • CCNP® Enterprise
  • CCIE® Enterprise Infrastructure
  • CCIE Enterprise Wireless
  • Cisco Certified Specialist – Enterprise Core 

Who should attend?

  • Network and system engineers
  • Network and system administrators
  • Network support technicians
  • Help desk technicians
  • Anyone looking to improve their Cisco networking skills
     

    Prerequisites

  • Basic knowledge of how to implement LANs
  • Basic understanding of enterprise routing and wireless connectivity
  • General understanding of network fundamentals
  • General understanding of how to manage and secure network devices

 

Industry Lab Scenarios 

Content:

After taking this course, you should be able to:

  • Illustrate the hierarchical network design model and architecture using the access, distribution, and core layers
  • Compare and contrast the various hardware and software switching mechanisms and operation, while defining the Ternary Content Addressable Memory (TCAM) and Content Addressable Memory (CAM), along with process switching, fast switching, and Cisco Express Forwarding concepts
  • Troubleshoot Layer 2 connectivity using VLANs and trunking
  • Implementation of redundant switched networks using Spanning Tree Protocol
  • Troubleshooting link aggregation using Etherchannel
  • Describe the features, metrics, and path selection concepts of Enhanced Interior Gateway Routing Protocol (EIGRP)
  • Implementation and optimization of Open Shortest Path First (OSPF)v2 and OSPFv3, including adjacencies, packet types, and areas, summarization, and route filtering for IPv4 and IPv6
  • Implementing External Border Gateway Protocol (EBGP) interdomain routing, path selection, and single and dual-homed networking
  • Implementing network redundancy using protocols including Hot Standby Routing Protocol (HSRP) and Virtual Router Redundancy Protocol (VRRP)
  • Implementing internet connectivity within Enterprise using static and dynamic Network Address Translation (NAT)
  • Describe the virtualization technology of servers, switches, and the various network devices and components
  • Implementing overlay technologies such as Virtual Routing and Forwarding (VRF), Generic Routing Encapsulation (GRE), VPN, and Location Identifier Separation Protocol (LISP)
  • Describe the components and concepts of wireless networking including Radio Frequency (RF) and antenna characteristics, and define the specific wireless standards
  • Describe the various wireless deployment models available, include autonomous Access Point (AP) deployments and cloud-based designs within the centralized Cisco Wireless LAN Controller (WLC) architecture
  • Describe wireless roaming and location services
  • Describe how APs communicate with WLCs to obtain software, configurations, and centralized management
  • Configure and verify Extensible Authentication Protocol (EAP), WebAuth, and Pre-Shared Key (PSK) wireless client authentication on a WLC
  • Troubleshoot wireless client connectivity issues using various available tools
  • Troubleshooting Enterprise networks using services such as Network Time Protocol (NTP), Simple Network Management Protocol (SNMP), Cisco Internetwork Operating System (Cisco IOS®) IP Service Level Agreements (SLAs), NetFlow, and Cisco IOS Embedded Event Manager
  • Explain the use of available network analysis and troubleshooting tools, which include show and debug commands, as well as best practices in troubleshooting
  • Configure secure administrative access for Cisco IOS devices using the Command-Line Interface (CLI) access, Role-Based Access Control (RBAC), Access Control List (ACL), and Secure Shell (SSH), and explore device hardening concepts to secure devices from less secure applications, such as Telnet and HTTP
  • Implement scalable administration using Authentication, Authorization, and Accounting (AAA) and the local database, while exploring the features and benefits
  • Describe the enterprise network security architecture, including the purpose and function of VPNs, content security, logging, endpoint security, personal firewalls, and other security features
  • Explain the purpose, function, features, and workflow of Cisco DNA Center™ Assurance for Intent-Based Networking, for network visibility, proactive monitoring, and application experience
  • Describe the components and features of the Cisco SD-Access solution, including the nodes, fabric control plane, and data plane, while illustrating the purpose and function of the Virtual Extensible LAN (VXLAN) gateways
  • Define the components and features of Cisco SD-WAN solutions, including the orchestration plane, management plane, control plane, and data plane
  • Describe the concepts, purpose, and features of multicast protocols, including Internet Group Management Protocol (IGMP) v2/v3, Protocol-Independent Multicast (PIM) dense mode/sparse mode, and rendezvous points
  • Describe the concepts and features of Quality of Service (QoS), and describe the need within the enterprise network
  • Explain basic Python components and conditionals with script writing and analysis
  • Describe network programmability protocols such as Network Configuration Protocol (NETCONF) and RESTCONF
  • Describe APIs in Cisco DNA Center and vManage

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CCNP ENTERPRISE ENCOR

  • Bonus 1: 50+ Hours of CCNP Pre Recorded Videos.
  • Bonus 2: Resume Building by Network Kings.
  • Bonus 3: 5 Days CCNA Interview Questions Videos.
  • Bonus 4: 50 Hours Lab access with Lab Package.
  • Bonus 5: Spoken English Program for 3/4 months.
  • Bonus 6: Ask your Doubts in Discussion Form.
  • Bonus 7: Premium Resume Template for Future Use.
  • Bonus 8: Modern Job Secrets Course Videos.
  • Bonus 9: Video Access if you miss Live Class.
  • Bonus 10: Future Discounts as Internal Student.

GET YOUR HANDS-ON 24X7 LAB ACCESS

Includes:

🔴 70+ Hours Live ENCOR Training  By 12+ Yrs Exp CCIE Engineer.

Important to Read:

✅Timing for the 3 Hour class would be 8:30pm to 12:00pm IST.
✅ Approx 3 Months of Duration.
✅ Lab Access of our Servers till the course runs.
✅ Course Duration is upto Live Training 70 Hours+ 


This course helps you prepare to  Implementing Cisco® Enterprise Network Core Technologies (ENCOR) exam, which is part of four new certifications:

  • CCNP® Enterprise
  • CCIE® Enterprise Infrastructure
  • CCIE Enterprise Wireless
  • Cisco Certified Specialist – Enterprise Core 

Who should attend?

  • Network and system engineers
  • Network and system administrators
  • Network support technicians
  • Help desk technicians
  • Anyone looking to improve their Cisco networking skills
     

    Prerequisites

  • Basic knowledge of how to implement LANs
  • Basic understanding of enterprise routing and wireless connectivity
  • General understanding of network fundamentals
  • General understanding of how to manage and secure network devices

 

Industry Lab Scenarios 

Content:

After taking this course, you should be able to:

  • Illustrate the hierarchical network design model and architecture using the access, distribution, and core layers
  • Compare and contrast the various hardware and software switching mechanisms and operation, while defining the Ternary Content Addressable Memory (TCAM) and Content Addressable Memory (CAM), along with process switching, fast switching, and Cisco Express Forwarding concepts
  • Troubleshoot Layer 2 connectivity using VLANs and trunking
  • Implementation of redundant switched networks using Spanning Tree Protocol
  • Troubleshooting link aggregation using Etherchannel
  • Describe the features, metrics, and path selection concepts of Enhanced Interior Gateway Routing Protocol (EIGRP)
  • Implementation and optimization of Open Shortest Path First (OSPF)v2 and OSPFv3, including adjacencies, packet types, and areas, summarization, and route filtering for IPv4 and IPv6
  • Implementing External Border Gateway Protocol (EBGP) interdomain routing, path selection, and single and dual-homed networking
  • Implementing network redundancy using protocols including Hot Standby Routing Protocol (HSRP) and Virtual Router Redundancy Protocol (VRRP)
  • Implementing internet connectivity within Enterprise using static and dynamic Network Address Translation (NAT)
  • Describe the virtualization technology of servers, switches, and the various network devices and components
  • Implementing overlay technologies such as Virtual Routing and Forwarding (VRF), Generic Routing Encapsulation (GRE), VPN, and Location Identifier Separation Protocol (LISP)
  • Describe the components and concepts of wireless networking including Radio Frequency (RF) and antenna characteristics, and define the specific wireless standards
  • Describe the various wireless deployment models available, include autonomous Access Point (AP) deployments and cloud-based designs within the centralized Cisco Wireless LAN Controller (WLC) architecture
  • Describe wireless roaming and location services
  • Describe how APs communicate with WLCs to obtain software, configurations, and centralized management
  • Configure and verify Extensible Authentication Protocol (EAP), WebAuth, and Pre-Shared Key (PSK) wireless client authentication on a WLC
  • Troubleshoot wireless client connectivity issues using various available tools
  • Troubleshooting Enterprise networks using services such as Network Time Protocol (NTP), Simple Network Management Protocol (SNMP), Cisco Internetwork Operating System (Cisco IOS®) IP Service Level Agreements (SLAs), NetFlow, and Cisco IOS Embedded Event Manager
  • Explain the use of available network analysis and troubleshooting tools, which include show and debug commands, as well as best practices in troubleshooting
  • Configure secure administrative access for Cisco IOS devices using the Command-Line Interface (CLI) access, Role-Based Access Control (RBAC), Access Control List (ACL), and Secure Shell (SSH), and explore device hardening concepts to secure devices from less secure applications, such as Telnet and HTTP
  • Implement scalable administration using Authentication, Authorization, and Accounting (AAA) and the local database, while exploring the features and benefits
  • Describe the enterprise network security architecture, including the purpose and function of VPNs, content security, logging, endpoint security, personal firewalls, and other security features
  • Explain the purpose, function, features, and workflow of Cisco DNA Center™ Assurance for Intent-Based Networking, for network visibility, proactive monitoring, and application experience
  • Describe the components and features of the Cisco SD-Access solution, including the nodes, fabric control plane, and data plane, while illustrating the purpose and function of the Virtual Extensible LAN (VXLAN) gateways
  • Define the components and features of Cisco SD-WAN solutions, including the orchestration plane, management plane, control plane, and data plane
  • Describe the concepts, purpose, and features of multicast protocols, including Internet Group Management Protocol (IGMP) v2/v3, Protocol-Independent Multicast (PIM) dense mode/sparse mode, and rendezvous points
  • Describe the concepts and features of Quality of Service (QoS), and describe the need within the enterprise network
  • Explain basic Python components and conditionals with script writing and analysis
  • Describe network programmability protocols such as Network Configuration Protocol (NETCONF) and RESTCONF
  • Describe APIs in Cisco DNA Center and vManage

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Frequently Asked Questions 

How are live sessions conducted?

Live classes are conducted through Zoom Meetings software. The Zoom ID is shared once the student enroll in the course and the course is added to the student portal.

Are all classes live? What if I miss a session?

You Don’t need to worry if you miss the session. The recorded videos of the sessions will be uploaded online in the student portal within 24 hours of the live session and all recorded videos would be accessible to the students.

Where can I enroll for this course?

You can enroll yourself by just clicking on the button Add to Cart.

Why do you not have classroom training available?

Most of the students are basically experienced and working individuals who prefer the online mode of learning as it is more flexible and gives a better opportunity to the learners to proceed on their own pace. Moreover, Network Kings has a global presence, which is better manageable with an online learning mode. We also focus on the cost-effective methods for combo courses learning as the practical are all virtual.

What if my query is not listed here?

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