Learn How Malware Thinks, Moves & Evades Detection
FOR610: Reverse-Engineering Malware: Malware Analysis Tools and Techniques
Strengthen malware analysis expertise with reverse engineering training designed to identify threats, analyze malicious code, and enhance advanced cybersecurity defense capabilities.
- UK Licensed
- Global Standards
- Expert Instructor
- 5 Day Training
- Overview
Course Overview
The FOR610 Reverse-Engineering Malware: Tools and Techniques program is an advanced reverse engineering course that is designed for deep knowledge on the topic of reverse engineering in cybersecurity and modern methods of reverse engineering malware. This is a specialized training to analyze malicious software presence, learn attack methodology, and enhance defensive cybersecurity capabilities.
Participants will also have hands-on experience with malware analysis reverse engineering, learning to identify, dissect, and understand malware using industry-standard malware analysis tools and malware analysis software. This course offers a structured learning in reverse engineering cybersecurity so that professionals may confidently reverse engineer malware and identify advanced threats.
This malware analysis course is correlated to the real-world scenarios of cyber threats and incorporates effective malware analysis training intended to improve the skills of investigations. It further highlights the significance of malware forensics and reverse engineering, which serve to enlighten individuals about the way malware behaves, propagates, and evades detection.
The program builds expertise in advanced malware analysis, supported by hands-on labs, simulations, and a structured reverse engineering training approach. It is one of the most recognized paths for malware analysis certification and a leading reverse engineering class for cyber security professionals.
- Goals
Course Objectives
At the end of this program, participants will be able to:
- Understand the fundamentals of malware behavior and reverse engineering
- Perform reverse engineering malware techniques in controlled environments
- Use professional malware analysis tools effectively
- Conduct advanced malware analysis and threat identification
- Apply forensic techniques in malware investigation
- Strengthen skills in the software reverse engineering course practices
- Key Points
Who Should Attend?
This program is suitable for:
- Cyber security Analysts and Engineers
- SOC and Incident Response Teams
- Malware Analysts and Digital Forensics Experts
- Ethical Hackers and Penetration Testers
- Key Benefits
Key Benefits of this Course
- Have practical experience in malware reverse engineering.
- Study industry best tools and methods of analysis.
- Enhance skills in threat detection and incident response.
- Apply design thinking training to enhance problem-solving and incident response in industrial cybersecurity environments
- Enhance skills in reverse engineering cyber security.
- Enhance career opportunities with tech certification.
- Identify a career path to malware analysis certification.
- Outline
Course Outline
Day 1: Introduction to Malware & Reverse Engineering Basics
- The basics of malware types, behavior, classification and lifecycle in contemporary cyber environments, including how threats are characterized across systems and industries. Discusses methods of infection, attack vectors, and real-world patterns of cybercrime used by advanced threat actors.
- A summary of reverse engineering cybersecurity concepts and malware analysis is a vital part of identifying, comprehending and preventing digital threats. Pay attention to defensive practices applied to enterprise-level security systems.
- Introduction to reverse engineering: Class structure, key tools, workflow, and ethical issues involved in doing malware research.
Day 2: Malware Analysis Tools & Static Analysis
- Practical application of malware analysis tools to perform static analysis, such as file disassembly, metadata analysis, binary analysis, and code structure analysis used in threat identification and classification in the early stages.
- Methods of analyzing malicious binaries without executing them with advanced malware analysis software and reverse engineering techniques, to help identify any hidden logic, layers of encryption, and embedded malicious code.
- Determining the intent, behavior, and possible system impact prior to executing unknown files by identifying obfuscation techniques, hidden functions, packers, and suspicious code patterns in unknown files.
Day 3: Dynamic Analysis & Behavior Investigation
- To monitor real-time behaviour of malware, such as system modifications, registry changes, memory usage, file creation and network communication patterns used by the attacker, should be executed in an isolated environment.
- Hands-on malware analysis training on sandbox environments, monitoring tools and debugging tools to trace malware footprint safely and record behavioral evidence to be analyzed further.
- Knowing mechanisms of persistence, privilege escalation mechanisms, payload delivery mechanisms, and system exploitation mechanisms that are frequently used in advanced cyberattacks.
Day 4: More Reverse Engineering Resistant Techniques.
- Intensive malware analysis, such as unpacking of protected binaries, deobfuscation techniques, code tracing and debugging complex malware samples used in current cyber threats.
- Use of the concepts of software reverse engineering courses to decompose complex executable code, analyze low-level code, and rebuild malware logic to understand it in detail.
- In researching malware families, the application of forensic methodology, reconstruction of timeline, and correlation of behavior, as one understands malware forensics reverse engineering importance in malware defense.
Day 5: Malware Investigation & Real-World Case Studies
- An end-to-end malware investigation workflow that encompasses detection, analysis, reporting, and mitigation strategies that are implemented by cybersecurity teams in order to respond appropriately to real-world incidents.
- The case studies of large cyberattacks and how reverse engineering malware techniques were utilized to discover attack chains, identify vulnerabilities, and neutralize threats successfully demonstrate how reverse engineering malware techniques can be successfully applied.
- The last overview of major concepts was made in line with malware analysis certification preparation, with an emphasis on practical work, professional reporting, and being prepared to work in the cyber security field.
- Terms
Training Methodology
This program includes:
- Interactive lectures
- Industrial case studies
- Hands-on OT monitoring exercises
- Cyber security simulations
- Group discussions
It is part of our structured professional development training aligned with our global training calendar.
- Achievements
Certification
Upon successful completion, participants will receive a recognized certification supporting career growth in industrial cyber security, ICS security, and operational technology roles.
- Case Study
Case Study Example
In a manufacturing facility, there were recurrent cyber attacks because its control systems were poorly visible. Following the adoption of structured OT monitoring and increased ICS cyber security practices, the organization reduced the time to detect threats at an early stage and lessened the time to respond to the incident by 45 minutes, which significantly contributed to operational safety and stability.
- Why Choose
Why Choose this Program?
This is one of the best training courses that provides practical, industry-oriented training in industrial control systems security, with a focus on real-world threat detection and response. It boosts readiness in cybersecurity, enhances operational resilience, and supports the professional development of recognized certifications and hands-on learning.
- Connect
Contact Us
To enroll, to schedule, or to have solutions for industrial cyber security, contact us today to get a glimpse of future sessions of our training calendar, as well as be updated with the latest trends in industrial cyber security. This program is part of our structured training portfolio designed for continuous professional development in critical infrastructure security.
- FAQs
Fequently Asked Questions
What is the meaning of Industrial cyber security?
OT and ICS systems are vulnerable to cyber threats that can impact the safety and continuity of industrial activities. Industrial cyber security provides protection against cyber threats to ensure a safe and uninterrupted industrial operation.
What is OT monitoring on ICS security?
OT monitoring is the real-time control of industrial processes to identify abnormalities, threats, and performance problems in control systems.
Why is ICS risk assessment important?
It will aid in detecting vulnerabilities in industrial systems and minimize the risks of cyberattacks, downtime, and operational failures.
What will I acquire in this course?
You will be taught how to detect threats, respond to them, monitor OT security, and learn practical methods of managing cybersecurity risks in ICS.
Ready to Level Up Your Skills?
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Course Schedule
Select your preferred date & venue
10 Feb -- 14 Feb
South Korea
GBP 4595/Person
26 May -- 30 May
UAE
GBP 4595/Person
18 Aug -- 22 Aug
Grece
GBP 4595/Person
30 Nov -- 4 dec
USA
GBP 4595/Person
10 Feb -- 14 Feb
South Korea
GBP 3595/Person
26 May -- 30 May
UAE
GBP 3595/Person
18 Aug -- 22 Aug
Grece
GBP 3595/Person
30 Nov -- 4 dec
USA
GBP 3595/Person
Duration
5 Days