Course Overview:

This course provides security professionals with the skills and knowledge to perform vulnerability and compliance scanning of supported operating systems, devices, and applications. Students will construct custom scan policies for topology discovery, network vulnerability detection, credentialed patch audits, and compliance benchmarks, and discuss the underlying technologies utilized by the Nessus scanner.

This course provides students with the necessary information to prepare for the Tenable Certified Nessus Auditor (TCNA) exam.

Date/Locations:

No Events

Duration: 5 days

Course Objectives:

  • Introduction to Nessus and Vulnerability Scanning
  • Nessus Installation and Administration
  • Basic Nessus Scan Operation
  • Nessus Scan Configuration and Policy Creation
  • Vulnerability Analysis and Reporting with Nessus
  • Advanced Scan Configuration and Policy Creation
  • Introduction to Compliance and Auditing
  • Nessus Auditing Features
  • Windows System Auditing
  • Unix System Auditing
  • Cisco IOS Auditing
  • Nessus Database Auditing
  • Nessus Content Auditing
  • Auditing to Industry Guidelines
  • Auditing to Federal Guidelines

Prerequisites:

Students should possess a basic understanding of TCP/IP networking, operating systems security, and common client/server applications.

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Working with the TechNow lab for the PA-215: Palo Alto Networks Firewall Essentials FastTrack course has been nothing less than a techie's idea of fun.  When students come in we are immediatly configuring the Cisco 3750 switches for access ports, VLANS, and trunks.  We then cable the switch to the Palo Alto Networks Firewall.  Each student gets their own Palo Alto Firewall Pod of hardware and software.  What we find as fun is the VLAN environment, with an array of virtual machines hosted on an ESXi server that can really exercise the abilities of the Palo Alto Firewall.  The DMZ VLAN hosts virtual machines that support enterprise services and also potentialy vulnerable web services.  The Trust VLAN has Windows and Linux clients.  The UnTrust VLAN has Web services and a VM of Kali. The hardware Firewall is additionally connected to a Management VLAN.  All those VLANs are trunked into an ESXi server where the student also has a VM-Series Palo Alto Networks Firewall for High Availability.  

After configuring all the trunking, VLANs, and network interfaces we learn about the firewall and configure it for the lab environment.  Using Metasploitable and Kali/Metasploit nefarious penetration attempts are executed.  Using packet captures, custom APP-ID's  and custom signatures are generated.  Custom logging and reporting are created to similate and enterprise and assist the desired Incident Response.  It is always fun in a training environment to learn all about the controls available in a product, even though specific controls may not be used in the operational environment.  In the end we have a good understanding of the Palo Alto Networks Firewall.

Course Overview:

In this course, students learn the IPv6 protocols & processes & describe how IPv6 is supported in the latest versions of Microsoft Windows operating system.  Students will also learn how to describe transition technologies that allow you to deploy IPv6 in IPv4 intranets & across the IPv4 Internet.

Attendees to TN-395: Internet Protocol Version 6 (IPv6) will receive TechNow approved course materials and expert instruction.

Dates/Locations:

No Events

Duration: 5 Days

Course Objectives:

  • Learn how to create IPv6 networks with Cisco Systems products
  • Supplement your IPv6 course with a self-study guide based on the course materials
  • Understand practical applications of IPv6 through a solutions-oriented writing approach
  • Increase comprehension & retention through chapter tools like objectives, summaries, scenarios & review questions
  • Features & benefits of IPv6
  • IPv6 in the Windows Server2003 Family
  • IPv6 addressing & the IPv6 header
  • Internet Control Message Protocol for IPv6 (ICMPv6)
  • Neighbor & multicast listener discovery
  • Address auto configuration
  • IPv6 name resolution & routing
  • Coexistence & migration
  • IPv6 mobility

Prerequisites:

  • Students should have a working knowledge of a Windows OR Unix Operating system. 
  • In addition, the student should also have basic end-user skills in TCP/IP.

 

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Course Overview:

TechNow Cloud Security Fundamentals addresses the loss of hands-on control of system, application, and data security in the Cloud computing environment.  Security teams wrestle with the impact and liability of Cloud computing on an organization.  This course enables the security team to assist in contract language and Service Level Agreements (SLAs) when utilizing Cloud Service Providers (CSPs).

Compliance and auditing are introduced with strategies for control verification and audit analysis in the CSP environment.  Software as a Service (SaaS) to Infrastructure as a Service (IaaS) and everything in between require a compliance strategy.  Students will go in-depth into the architecture and infrastructure fundamentals for private, public, and hybrid clouds.   Topics covered include: patch and configuration management, virtualization security, application security, and change management. Policy, risk assessment, and governance within cloud environments will be covered with recommendations for both internal policies and contract provisions to consider.

TechNow has worked worldwide enterprise infrastructures for over 20 years and has developed demos and labs to exemplify the techniques required to effectively manage security in the cloud environment.

Attendees to TN-913: Cloud Security Fundamentals will receive TechNow approved course materials and expert instruction.

Date/Locations:

No Events

Course Duration: 3 days

Course Objectives:

  • Cloud computing introduction
  • Security challenges in the cloud
  • Infrastructure security in the cloud
  • Policy, risk, and governance for cloud computing
  • Compliance and legal considerations
  • Audit and assessment for the cloud
  • Data security in the cloud
  • Identity and Access Management (IAM)
  • Disaster Recovery and Business Continuity Planning (DR/BCP) in the cloud
  • Intrusion detection and incident response

Course Prerequisites:

  • GSEC, CISSP, CASP or equivalent experience in managing enterprise infrastructures
  • Managing or administering at least one of UNIX, Windows, Databases, networking, or security

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User: reedrobt

Instructor comments: Dave is like an encyclopedia of technical topics...what "doesn't" he have expertise in?

Facilities comments: Home2 location was well-kept and convenient to other services.


 

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Course Overview:

Course two of a three course series to obtain a Server 2016 MCSA certification. This 5-day course provides the fundamental networking skills required to deploy and support Windows Server 2016 in most organizations. It covers IP fundamentals, remote access technologies, and more advanced content including Software Defined Networking.

The course leads directly to preparing for the(MCSA):Windows Server 2016 exam “70-741: Installation, Storage, and Compute with Windows Server 2016”.  It also maps to Microsoft’s course 20741A, and is part of the Server 2016 MCSA certification. 

Attendees to TN-5425: Networking with Window Server 2016 will receive TechNow approved course materials and expert instruction.

Dates/Locations:

No Events

Duration: 5 Days

Course Objectives:

  • Plan and implement an IPv4 network
  • Implement Dynamic Host Configuration Protocol (DHCP)
  • Implement IPv6
  • Implement Domain Name System (DNS)
  • Implement and manage IP address management (IPAM)
  • Plan for remote access
  • Implement DirectAccess
  • Implement virtual private networks (VPNs)
  • Implement networking for branch offices
  • Configure advanced networking features
  • Implement Software Defined Networking

Prerequisites: 

  • A basic understanding of networking fundamentals
  • Experience working with Windows Server 2008 or Windows Server 2012
  • Experience working in a Windows Server infrastructure enterprise environment
  • Knowledge of the Open Systems Interconnection (OSI) model
  • Understanding of core networking topologies and architectures such as local area networks (LANs), wide area networks (WANs) and wireless networking
  • Basic knowledge of the TCP/IP protocol stack, addressing and name resolution
  • Experience with and knowledge of Hyper-V and virtualization
  • Hands-on experience working with the Windows client operating systems such as Windows 8.1 or Windows 10
  

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