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Course Overview:
The Implementing and Operating Cisco Enterprise Network Core Technologies (ENCOR) course gives you the knowledge and skills needed to configure, troubleshoot, and manage enterprise wired and wireless networks. You’ll also learn to implement security principles, implement automation and programmability within an enterprise network, and how to overlay network design by using SD-Access and SD-WAN solutions.
Attendees to N-415: Implementing and Operating Cisco Enterprise Network Core Technologies (ENCOR) will receive TechNow approved course materials, expert instruction, and prepare you to take the 350-401 Implementing Cisco® Enterprise Network Core Technologies (ENCOR) exam.
Dates/Locations:
Duration: 5 Days
Course Objectives:
- 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
Prerequisites:
- CCNA certification
- Implementation of Enterprise LAN networks
- Basic understanding of Enterprise routing and wireless connectivity
- Basic understanding of Python scripting
Comments
Latest comments from students
User: don.seguin
Instructor comments: Tim was a great.
Facilities comments: The classroom was great.
User: jrtrussell
Instructor comments: Awesome
Facilities comments: Great
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Course Overview:
The Computer Hacking Forensic Investigator (CHFI) course delivers the security discipline of digital forensics from a vendor-neutral perspective. CHFI is a comprehensive course covering major forensic investigation scenarios and enabling students to acquire necessary hands-on experience with various forensic investigation techniques and standard forensic tools necessary to successfully carry out a computer forensic investigation leading to the prosecution of perpetrators.
The CHFI certification gives participants the necessary skills to perform an effective digital forensics investigation. CHRI presents a methodological approach to computer forensics including searching and seizing, chain-of-custody, acquisition, preservation, analysis and reporting of digital evidence
What’s Included:
- 5 days of instructor-led in classroom training
- Detailed Labs for hands-on learning experience; approximately 50% of training is dedicated to labs
- Hundreds of investigation tools including EnCase, Access Data FTL, & ProDiscover
- Huge cache of evidence files for analysis including RAW, .dd images, video & audio files, MS Office files, systems files, etc.
- CHFI Courseware
- Exam Voucher
- CHFI onsite exam scheduling
Course Objectives:
- Establish threat intelligence and key learning points to support pro-active profiling and scenario modeling
- Perform anti-forensic methods detection
- Perform post-intrusion analysis of electronic and digital media to determine the who, where, what, when, and how the intrusion occurred
- Extract and analyze of logs from various devices like proxy, firewall, IPS, IDS, Desktop, laptop, servers, SIM tool, router firewall, switches AD server, DHCP logs, Access Control Logs & conclude as part of investigation process
- Identify & check the possible source/ incident origin
- Recover deleted files and partitions in Windows, MAC OS X, and Linux
- Conduct reverse engineering for known and suspected malware files
- Collect data using forensic technology methods in accordance with evidence handling procedures, including collection of hard copy and electronic documents
Dates/Locations:
Duration: 5 Days
Course Content:
-
- Module 01. Computer Forensics in Today’s World
- Module 02. Computer Forensics Investigation Process
- Module 03. Understanding Hard Disks and File Systems
- Module 04. Data Acquisition and Duplication
- Module 05. Defeating Anti-forensics Techniques
- Module 06. Operating System Forensics (Windows, Mac, Linux)
- Module 07. Network Forensics
- Module 08. Investigating Web Attacks
- Module 09. Database Forensics
- Module 10. Cloud Forensics
- Module 10. Malware Forensics
- Module 11. Investigating Email Crimes
- Module 12. Investigating Email Crimes
- Module 13. Mobile Forensics
- Module 14. Forensics Report Writing and Presentation
Prerequisites:
Course Overview:
C-225: C++ Object Oriented Programming is a hands-on course that provides a complete introduction to the ANSI Standard C++ programming language, focusing on quickly developing the practical skills needed to create real-world solutions. Our hands-on labs are designed to promote retention and challenge students to apply their skills to new situations.
C++ is more than just C with classes. It is a whole new language with a structure similar to C, but with significant differences to warrant a complete course to cover its features.
Attendees to C-225: C++ Oriented Programming will receive TechNow approved course materials and expert instruction.
Dates/Locations:
Duration: 5 Days
Course Objectives:
- Classes
- Casting in C++
- Constructors & Destructors
- Class Methods & Data
- Inheritance
- Overloaded Functions
- Virtual Functions
- Overloaded Operators
- Pure Virtual Functions
- Exception Handling
- References & Constants
- Standard Template Library
- New and Delete
- STL Containers
Prerequisites:
Comments
Latest comments from students
User: christinehejnal
Instructor comments: The material was made clear, however I don't agree that she shouldn't have catered towards the people not taking the exam.
Facilities comments: The facilities were cold and very noisy, I found it hard to concentrate.
User: mamacker1
Instructor comments: Informative instructor. Definitely not monotone. I'd recommend it to my sister if I had one.
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