Here are the General Unix course offerings:
Course Overview:
Through hands-on labs, you will learn to automate system administration tasks on managed hosts with Ansible, learn how to write Ansible playbooks to standardize task execution, and manage encryption for Ansible with Ansible Vault. This course will also teach you how to deploy and use Red Hat® Ansible Tower to centrally manage existing Ansible projects, playbooks, and roles; perform basic maintenance and administration of the Ansible Tower installation; and configure users and teams and use them to control access to systems, projects, and other resources through role-based access controls. You will learn to use Ansible Tower’s visual dashboard to launch, control, and monitor Ansible jobs; use the Ansible Tower application programming interface (API) to launch jobs from existing templates; automatically schedule Ansible jobs; and dynamically update host inventories.
Course Objectives:
- Install and troubleshoot Ansible on central nodes and managed hosts
- Automate administration tasks with Ansible playbooks and ad hoc commands
- Write effective Ansible playbooks
- Protect sensitive data used by tasks with Ansible Vault.
- Install and configure Ansible Tower for enterprise Ansible management
- Use Ansible Tower to control access to inventories and machine credentials by users and teams
- Create job templates in Ansible Tower to standardize playbook execution.
- Centrally launch playbooks and monitor and review job results with Ansible Tower
Course Outline:
- Introduce Ansible
- Deploy Ansible
- Implement playbooks
- Manage variables and inclusions
- Implement task control
- Implement Jinja2 templates
- Implement roles
- Configure complex playbooks
- Implement Ansible Vault
- Troubleshoot Ansible
- Install Ansible Tower and describe Ansible Tower’s architecture
- Create users and teams for role-based access control
- Create and manage inventories and credentials
- Manage projects for provisioning with Ansible Tower
- Construct advanced job workflows
- Update inventories dynamically and compare inventory members
- Maintenance and administration of Ansible Tower
Dates/Locations:
Duration: 5 Days
Prerequisites:
- Become a Red Hat Certified System Administrator, or demonstrate equivalent experience
Target Audience:
This course is designed for Linux system administrators, cloud administrators, and network administrators needing to automate configuration management, application deployment, and intraservice orchestration at an enterprise scale.

CompTIA SecAI+ is the first certification in CompTIA’s expansion series, designed to help you secure, govern and responsibly integrate artificial intelligence into your cybersecurity operations. You’ll build the skills to defend AI systems, meet global compliance expectations and use AI to enhance threat detection, automation and innovation—so you can strengthen your expertise and help keep your organization’s systems and data secure.
SecAI+ helps you build practical AI security and automation skills on top of your existing expertise, so you can secure AI deployments, use AI‑assisted security tools with confidence, and stay ready for the next step in your cybersecurity career.
Course Objectives:
- Apply AI concepts to strengthen your organization’s cybersecurity posture
- Secure AI systems using advanced controls and protections to safeguard data, models, and infrastructure
- Leverage AI technologies to automate workflows, accelerate incident response, and scale security operations
- Navigate global GRC frameworks to ensure ethical and compliant AI adoption across industries
- Defend against AI-driven threats like adversarial attacks, automated malware, and malicious use of generative AI
- Integrate AI securely into DevSecOps pipelines and enterprise security strategies.
Dates/Locations:
Prerequisites: Recommended experience: 3–4 years in IT and 2+ years hands-on cybersecurity; Security+, CySA+, PenTest+, or equivalent recommended
SecAI+ (V1) exam objectives summary
Basic AI concepts related to cybersecurity (17%)
- Explain core AI principles and terminology: Machine learning, deep learning, natural language processing, and automation.
- Identify AI applications in security: Use cases for AI in threat detection, defense, and security operations.
- Recognize AI-driven threats: Automated phishing, polymorphic malware, adversarial machine learning, and malicious use of generative AI.
Securing AI systems (40%)
- Implement security controls: Protect AI systems, data, and models using robust technical safeguards.
- Secure AI deployment environments: Apply best practices across on-premises, cloud, and hybrid infrastructures.
- Mitigate adversarial risks: Defend against attacks targeting AI models, data pipelines, and inference layers.
AI-assisted security (24%)
- Enhance detection and response: Use AI-driven tools to identify anomalies, detect threats, and accelerate incident remediation.
- Automate security workflows: Integrate AI for event triage, alert correlation, and response orchestration.
- Apply AI techniques in operations: Incorporate AI into threat modeling, behavior analysis, and continuous monitoring.
AI governance, risk, and compliance (19%)
- Understand regulatory frameworks: Identify global governance requirements and their implications for AI adoption.
- Integrate GRC into AI projects: Incorporate governance, risk management, and compliance practices throughout the AI lifecycle.
- Ensure responsible AI use: Apply ethical guidelines, legal standards, and industry frameworks such as GDPR and NIST AI RMF.
Course Overview:
Intrusion Analyst is a hands-on course that covers intrusion detection in-depth. This includes concepts such as the use of Snort, network traffic analysis, and IDS signatures.
A skills focus enables the student to better absorb the subject matter and perform successfully on the job. This is not death by power point. The course is aligned with information assurance operators and executing hands-on labs. Lecture and labs walk the student through the knowledge required to truly understand the mechanics of packet and intrusion analysis.
Attendees to TN-979: Intrusion Analyst will receive TechNow approved course materials and expert instruction.
Date/Locations:
Duration: 5 days
Course Objectives:
- Advanced Snort Concepts
- Analyst Toolkit
- Domain Name System (DNS)
- Examining Packet Crafting
- Examining Packet Header Fields
- Fragmentation
- ICMP Theory
- IDS Interoperability
- IDS Patterns
- IDS/IPS Management & Architecture Issues
- Indications, Warnings & Traffic Correlation
- IPv6
- Microsoft Protocols
- Network Traffic Analysis
- NIDS Evasion, Instertion & Checksums
- Snort Fundamentals & Configuration
- Snort GUIs & Sensor Management
- Snort Performance, Active Response & Tagging
- Snort Rules
- Stimulus Response
- TCPdump Fundamentals
- TCP/IP Fundamentals
- Wireshark Fundamentals
- Writing TCPdump Filters
Course Prerequisites:
- GSEC or equivalent experience
- UNIX, Windows, Networking, and Security Experience
- This is a hands-on skill course requiring comfort with command line interaction and network communications
Comments
Latest comments from students
User: Tosha
Instructor comments: Dave was an excellent instructor. He is very informative and knowledgeable in the course and the material. I have enjoyed the class and I would take another course with him as the instructor.
Facilities comments: Very nice and clean hotel.
User: buckey26
Instructor comments: Dave was one of the best instructors I have ever had for a tech course. He broke down everything to the point where you can understand it internally.
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Course Overview:
This concentration was developed in conjunction with the U.S. National Security Agency (NSA) providing an invaluable tool for any systems security engineering professional. CISSP®-ISSEP is the guide for incorporating security into projects, applications, business processes, and all information systems. Security professionals are hungry for workable methodologies and best practices that can be used to integrate security into all facets of business operations. The SSE model taught in the IATF portion of the course is a guiding light in the field of information security and the incorporation of security into all information systems.
Attendees to TN-812: Information Systems Secuirty Engineering Professional (ISSEP) will receive TechNow approved course materials and expert instruction.
Dates/Locations:
Duration: 5 Days
Course Objectives:
- Systems Security Engineering
- Certification and Accreditation
- Technical Management
- U.S. Government Information Assurance Governance
Prerequisites:
Comments
Latest comments from students
User: fsarisen
Instructor comments: Thank you Tim for all the great information! I am confident that I'll do well on the ICND exam.
User: storoy30
Instructor comments: The instructor, Tim Burkard, was very knowledgeable on the course material and skilled at explain more complex ideas.
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