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Computer Crime Investigation & Hacking Techniques Exam Prep!
Rating: 4.7 out of 5(18 ratings)
480 students

Computer Crime Investigation & Hacking Techniques Exam Prep!

Computer Hacking Digital Forensics: Focused MCQs practice with answers to help you prepare for Computer Hacking EXAM!
Last updated 8/2026
English
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What you'll learn

  • Computer Hacking & Digital Forensics v10/v11
  • Exam Prep
  • MCQ Practice Questions
  • Computer Hacking & Digital Forensics: Focused MCQ practice with answers to help you prepare for Computer Hacking EXAM!
  • 1700+ EXAM MCQs

Course content

7 sections356 lectures35h 26m total length
  • 01 Digital Detectives Unmasking the Truth in the Digital Realm5:22

    Become a digital detective by exploring hacking, digital forensics, and the toolkit for seizing and analyzing digital evidence to pursue justice and protect organizations.

  • 02 Digital Forensics Unmasking the Digital Crime Scene5:13

    Investigate digital forensics to reconstruct a digital crime scene from RAM captures, disk images, and OS artifacts, preserving chain of custody to turn data into admissible, defensible evidence.

  • 03 Unmasking the Digital Shadows5:27

    Unmask digital shadows by studying cybercrime types from phishing to hacking and applying digital forensics to gather, preserve, and analyze evidence for court admissibility and global cooperation.

  • 04 Unmasking the Digital Ghost A Journey Through Computer Hacking Forensics5:26

    Master digital forensics to unmask the digital ghost and reconstruct cyber events. Analyze volatile and non volatile data, metadata, and cloud evidence through data acquisition and chain of custody.

  • 05 The Unbroken Link Chain of Custody in Digital Forensics5:38

    Establish an unbroken electronic chain of custody for digital evidence from seizure to court by documenting every transfer and preserving integrity with MD5 or SHA-256 hashes.

  • 06 Unmasking the Digital Trail eDiscovery in the Age of Cyber Forensics5:40

    Explore e-discovery and cyber forensics, turning electronic data into court-ready evidence while reconstructing unauthorized access across mobile, cloud, and computer environments.

  • 07 Forensic Readiness Your Digital Defense Against Hackers5:30

    Develop forensic readiness as a proactive digital defense by building robust logging, data integrity, and chain-of-custody practices. Implement an evidence-first investigation workflow to detect and contain breaches.

  • 08 Navigating the Digital Frontier5:29

    Navigate the digital frontier by examining the CFA, unauthorized access, and NIST-aligned digital forensics to protect privacy and pursue lawful cybercrime investigations.

  • 09 Navigating the Digital Frontier Standards in Computer Hacking and Forensics5:40

    Explore how NIST and ISO standards shape digital investigations, ensuring collection of logs, artifacts, and metadata, analysis, and courtroom-ready presentation of cybercrime evidence with a rigorous chain of custody.

  • 10 The Digital Detective5:43

    Uncover the digital detective's craft by preserving digital integrity and turning data into court-ready evidence. Apply ethical frameworks and legal standards across cloud, mobile, and IoT investigations.

  • 11 The Digital Forensics Process Unraveling Cyber Incidents5:35

    Investigators apply the digital forensics process—acquisition, analysis, and reporting—to securely collect and preserve data, maintain chain of custody, analyze artifacts and memory dumps, and present legally admissible findings.

  • 12 Unmasking the Digital Ghost5:20

    Explore identification, collection, preservation, analysis, and reporting in digital forensics to unmask the digital ghost, learning to preserve evidence with bit-by-bit copies via FTK Imager and strict chain of custody.

  • 13 The Digital Battlefield Navigating the Incident Response Lifecycle5:35

    Navigate the digital battlefield by integrating digital forensics and incident response through the NIST four-phase framework of preparation, detection, containment, and recovery, with post-incident learning for continuous improvement.

  • 14 The Digital Evidence Gauntlet5:21

    Master the digital evidence gauntlet by learning seizure, preservation, and chain-of-custody practices, bit-for-bit imaging, and cryptographic hashes using SWGD, NIST, and Interpol guidance.

  • 15 Unmasking the Digital Ghost5:24

    Unmask digital ghosts by exploring hacking, digital forensics, forensic readiness, and evidence collection across cloud, mobile, and IoT, maintaining chain of custody to prevent, investigate, and report cyber incidents.

  • 16 FAT File System Analysis Uncovering Digital Evidence5:35

    Analyze the fat file system to recover deleted data, reconstruct timelines, and uncover digital evidence through techniques that examine boot sectors, fat tables, root directories, and cluster chains.

  • 17 NTFS Forensics Unmasking Digital Footprints in the NTFS Labyrinth5:23

    Master the NTFS forensics toolkit to recover deleted files, reconstruct event timelines, and analyze the MFT, $LOG, and $USNJRNL while detecting timestomping and hidden data in alternate data streams.

  • 18 Unearthing Digital Evidence A Deep Dive into EXT File System Forensics5:26

    Investigate Linux ext file systems from ext2 to ext4, and unearth deleted or hidden evidence using file carving, inode and journal analysis, and open-source forensic tools.

  • 19 Unlocking HFS A Digital Forensics Deep Dive5:35

    Explore the HFS Plus file system architecture, including the volume header, allocation and catalog files, and extents overflow file, and use Sleuth Kit for forensic evidence extraction.

  • 20 Disk Structure Forensics Unmasking MBR and GPT5:40

    Analyze disk structure forensics by examining MBR and GPT and tracing the boot process. Identify boot-level vulnerabilities, bootkits, and essential forensic techniques using protective MBR, GPT headers, and CRC32 checksums.

  • 21 File Carving Unearthing Digital Evidence5:18

    Master file carving to recover deleted, fragmented data and reconstruct digital evidence from raw disk sectors using magic numbers, header-footer carving, and forensic tools.

  • 22 Slack Space The Hidden Evidence in Digital Forensics5:26

    Explore slack space as ghost evidence, revealing fragments of deleted data and in-memory remnants in digital forensics, using SleuthKit and Autopsy.

  • 23 The Ghost in the Machine Recovering Deleted Files in Digital Forensics4:54

    Discover how digital forensics recover deleted files using metadata and file carving, preserving evidence with write-blocks and forensic images, and validating with hashes.

  • 24 Disk Imaging The Foundation of Digital Forensics5:48
  • 25 Bit by Bit Acquisition The Foundation of Digital Forensics5:27

    Bit-by-bit acquisition, or forensic imaging, creates an exact copy of storage for court. Preserve integrity with hashes and chain of custody; apply live or dead box imaging.

  • 26 Live Acquisition Capturing the Moment in Digital Forensics5:16

    Capture live acquisition data from running systems, memory, processes, and network state, before it vanishes. Complement dead acquisition to preserve the evidence.

  • 27 The Race Against Time Capturing Volatile Data in Digital Forensics4:59

    Learn how to seize volatile data in digital forensics by prioritizing memory captures and using memory dumps and the volatility framework while balancing speed with data integrity to preserve evidence.

  • 28 Dead Acquisition The Unshakeable Foundation of Digital Forensics5:29

    Demonstrates dead acquisition as the unshakable foundation of digital forensics by creating a forensically sound, bit-for-bit image with hash verification to preserve evidence integrity.

  • 29 Unlocking Digital Secrets The Power of Non Volatile Data in Forensics5:35

    Explore how non-volatile data provides persistent digital evidence, enabling recovery of file system, system, and application data to build timelines and link crimes.

  • 30 Hashing in Digital Forensics The Digital Fingerprint5:31

    Discover how hashing creates a unique digital fingerprint to verify digital evidence integrity, compare hashes with MD5, SHA-1, and SHA-2 (SHA-256, SHA-512), and maintain chain of custody.

  • 31 The Unseen Battle Integrity Verification in Digital Forensics5:25

    Uncover how digital forensics verify integrity and authenticity of evidence using hashing, SHA-256, chain of custody, and tamper-evident certificates, while defending against deepfakes and AI manipulation.

  • 32 Hacking the Hive Unlocking Digital Forensics with Windows Registry Analysis5:42

    Discover how the Windows registry serves as a forensic diary by analyzing hives, keys, and values to map persistence and reconstruct compromises with artifacts like shim cache and shell bags.

  • 33 Unmasking the Digital Ghost Event Log Analysis in Cyber Forensics5:25

    Investigate digital footprints by analyzing Windows event logs—security, system, and application—recorded with event IDs, timestamps, sources, users, and log levels to reconstruct the attack timeline.

  • 34 Memory Analysis Unmasking Digital Ghosts with Volatility5:21
  • 35 Unmasking the Digital Ghost5:23
  • 36 Shellbags and LNK Files Unmasking Digital Footprints in Computer Hacking5:25
  • 37 Linux Memory Acquisition Unlocking Volatile Evidence in Digital Forensics5:18
  • 38 Unlocking Digital Secrets A File System Forensics Investigation5:35

    Uncover digital secrets with file system forensics by tracing artifacts on NTFS, ext4, and HFS Plus, using MFT, dollar log, and volume shadow copies to reconstruct events.

  • 39 Unmasking the Digital Ghost Linux Log Analysis in Computer Hacking Forensics5:38

    Analyze linux logs to unmask the digital ghost, reconstruct intrusion timelines from off.log and WTMP, and expose brute force ssh attacks and privilege escalation.

  • 40 Unlocking macOS Secrets A Digital Forensics Deep Dive5:35
  • 41 Unlocking macOS Memory A Digital Forensics Deep Dive5:04
  • 42 Uncovering Digital Truths File System Investigation in Digital Forensics5:36
  • 43 Packet Capture and Analysis Unmasking Digital Intruders5:23
  • 44 Unmasking the Digital Intruder IDSIPS Log Analysis in Forensics5:35
  • 45 Firewall Logs The Unseen Witnesses of Cybercrime5:18
  • 46 Unmasking the Digital Intruder A Network Forensics Investigation5:22
  • 47 Unmasking the Digital Ghost5:26
  • 48 Unmasking the Invisible Wireless Network Forensics in the Age of Digital Crim5:21
  • 49 SQL Injection Forensics Unmasking the Digital Intruder5:36

    Investigate sql injection forensics by detecting attack methods, correlating web server and database logs, and gathering court-ready evidence to secure systems and prevent future breaches.

  • 50 Unmasking the Invisible XSS Analysis in Digital Forensics5:28
  • 51 Web Server Log Analysis Unmasking Digital Intruders5:38
  • 52 Session Tracking Investigation Unmasking the Digital Intruder5:21
  • 53 Unraveling the Digital Crime Scene Reconstructing Cyberattacks5:35

    Reconstruct cyberattacks through digital forensics by stepwise analysis, from evidence preservation to artifact examination, enabling real-time threat detection and robust incident response.

  • 54 Unmasking the Invisible Advanced Tor Network Forensics5:16
  • 55 Unmasking the Hidden A Forensic Deep Dive into Tor Services5:31
  • 56 Unmasking the Digital Trail5:38
  • 57 Unmasking the Digital Shadows5:16

    Unmask darknet marketplaces by applying forensic tools, including web scraping, blockchain analysis, and open-source intelligence, to map user networks, trace crypto flows, and build prosecution-ready profiles for international cooperation.

  • 58 Database Log Analysis Unmasking Digital Intruders5:28
  • 59 SQL Artifacts Uncovering Digital Truths in Hacking Investigations5:31
  • 60 Data Recovery Techniques in Digital Forensics3:37
  • 61 Guarding the Vault5:35

    Guard the vault of data with proactive fraud detection, digital forensics, and collaborative intelligence that share signals across databases to detect, prevent, and identify sophisticated cyber fraud.

  • 62 Cloud Forensics The Digital Detectives New Frontier5:31
  • 63 Multi Tenant Challenges in Digital Forensics5:53

    Examine multi-tenant cloud security and digital forensics, from isolation failures and co-residency to tenant context injection. Learn zero-trust identity and defensible, tenant-aware forensic strategies.

  • 64 Cloud Data Acquisition in Digital Forensics5:25
  • 65 Unmasking the Digital Ghost Email Header Analysis in Digital Forensics5:19
  • 66 Unmasking the Imposter Email Spoofing Detection in Digital Forensics5:40
  • 67 Unmasking the Attacker A Mail Server Log Forensics Investigation5:24

    Trace cyber attacks through mail server logs, using SMTP records, IP analysis, and sender fingerprints to uncover brute force, phishing, and spam campaigns with forensics rigor.

  • 68 Phishing Investigation Unmasking the Digital Deceivers5:31
  • 69 Static Malware Analysis Unmasking Threats Without Execution5:28
  • 70 Dynamic Malware Analysis Unmasking Digital Threats5:32

    Unmask malware by performing dynamic analysis in a safe sandbox, observing real-time behavior, memory forensics, and network activity to detect zero-day threats.

  • 71 Behavioral Analysis Unmasking the Digital Attacker5:23
  • 72 Reverse Engineering Unlocking Digital Secrets5:12
  • 73 Android Data Acquisition Unlocking Digital Evidence5:35

    Explore Android data acquisition to unlock digital evidence, from manual and logical extractions to physical methods like chip-off and micro-read, including BFU and AFU unlock states.

  • 74 iOS Data Acquisition Unlocking Digital Evidence in 20265:30
  • 75 Unlocking the Digital Vault5:21
  • 76 SIM Card Forensics Unlocking Digital Evidence5:05
  • 77 Mobile Artifact Investigation Unlocking Digital Secrets5:24
  • 78 Smart Device Forensics Unmasking Digital Attackers in the IoT Era5:34

    Explore smart device forensics in the IoT era, learning to extract evidence from devices, networks, and cloud to unmask digital attackers.

  • 79 Unmasking the Hidden Embedded Systems Forensics5:26

    Discover embedded systems forensics by analyzing firmware with static and dynamic methods, performing chip-level data extraction, fault injection, and open collaboration to secure IoT, automotive, and industrial devices.

  • 80 IoT Log Collection The New Frontier in Digital Forensics5:28
  • 81 The Digital Detective Unlocking Evidence in the Internet of Things5:26
  • 82 Volatile Memory Capture The Digital Forensics Race Against Time5:24

    Capture volatile memory before power loss to reveal running processes, credentials, and hidden malware, using FTK Imager, dump-it, and ProcDump64 for rapid acquisitions.

  • 83 Volatility Unmasking Digital Secrets in RAM5:21
  • 84 Digital Forensics Unraveling the Digital Crime Scene5:48
  • 85 Rootkits The Invisible Threat in Digital Forensics5:25
  • 86 AI in Digital Forensics The Evolving Battlefield5:35
  • 87 The Digital Forensics Frontier5:24
  • 88 Advanced Ransomware Analysis A Digital Forensics Deep Dive5:31
  • 89 Browser Forensics Uncovering Digital Clues in the Age of Cybercrime5:26

    Investigate browser forensics by tracing history, searches, downloads, cookies, and cache across normal, private, portable modes with BRAP forensics to reconstruct timelines and reveal evidence.

  • 90 Social Media Forensics Unmasking Digital Clues in the Age of Hacking5:26

    Explore social media forensics to turn digital breadcrumbs into courtroom evidence. Learn data acquisition, metadata analysis, and network mapping to trace digital footprints, timelines, identify suspects, and combat cybercrime.

  • 91 Cloud Native Forensics The Future of Digital Investigations5:41
  • 92 Python in Digital Forensics5:31
  • 93 EnCase The Digital Detectives Toolkit5:29
  • 94 FTK The Investigators Edge in Digital Forensics5:36
  • 95 Autopsy Unlocking Digital Evidence in Cyber Investigations5:31
  • 96 Volatility Unmasking Digital Shadows in Memory Forensics5:24
  • 97 Wireshark The Digital Detectives Toolkit for Cyber Investigations5:38
  • 98 The Art of the Digital Forensic Report5:32
  • 99 Unveiling the Digital Truth5:35
  • 100 Expert Witness Testimony Navigating Computer Hacking and Digital Forensics5:27

    Explain how expert witnesses translate complex digital evidence from computers, smartphones, and cloud into courtroom clarity using forensic methods, ensuring chain of custody and admissible, fact-driven testimony.

  • 101 Digital Forensics in the Courtroom5:12

Requirements

  • This exam-focused MCQ practice course requires learners to have a basic understanding of computer systems, networking fundamentals, and cybersecurity concepts, as it is intended for Computer Hacking & Digital Forensics v10/v11 exam preparation rather than beginner training. Familiarity with operating systems such as Windows and Linux, basic knowledge of file systems, networking protocols, and common cyber threats is recommended. Prior exposure to digital forensics concepts—including evidence handling, incident response, and investigation processes—will be beneficial but not mandatory. Candidates who have completed Computer Hacking & Digital Forensics training, self-studied using official Computer Hacking & Digital Forensics materials, or have hands-on experience in IT, cybersecurity, or law enforcement will gain the most value. A willingness to practice MCQs, analyze answers, and review weak areas is essential. No special hardware, forensic tools, or lab setup is required, as the course is designed purely for exam preparation through practice questions.

Description



This course is designed as a focused exam-only MCQ practice program for the Computer Hacking v10 / v11 certification. It provides a large collection of carefully structured multiple-choice questions with answers that closely align with the official Computer Hacking & Digital Forensics exam objectives. The course is not a theory or lab-based training; instead, it is built to help learners test their knowledge, identify weak areas, and gain confidence before attempting the real certification exam.


The Computer Hacking & Digital Forensics certification validates skills in digital forensics, cybercrime investigation, evidence handling, and incident response. As cyberattacks, data breaches, and digital crimes continue to rise globally, organizations rely heavily on forensic investigators to analyze incidents and preserve digital evidence. This course helps learners understand how exam questions are framed, how concepts are tested, and how to approach forensic scenarios from an exam perspective.


The importance of this course lies in its exam-oriented approach. Many candidates struggle not because they lack knowledge, but because they are unfamiliar with exam patterns, terminology, and tricky MCQ wording. By practicing realistic questions, learners can improve accuracy, time management, and confidence. It also helps reinforce key forensic concepts such as evidence acquisition, chain of custody, file systems, memory analysis, network forensics, malware investigation, and legal considerations.


Key advantages of this course include targeted exam preparation, self-paced learning, repeated practice, and immediate feedback through answers. It is ideal for quick revision before the exam and for identifying knowledge gaps without investing time in full training programs. The MCQ format allows learners to simulate real exam conditions and reduce exam anxiety.


This course is suitable for aspiring digital forensic investigators, cybersecurity professionals, incident responders, law enforcement personnel, IT administrators, students, and certification candidates preparing for the Computer Hacking & Digital Forensics v10 or v11 exams. It is also useful for professionals who have already completed Computer Hacking & Digital Forensics training and want structured practice before certification.


Learning Computer Hacking & Digital Forensics exam concepts prepares professionals for a future where digital forensics plays a critical role in cybersecurity, law enforcement, corporate investigations, and legal proceedings. With increasing demand for skilled forensic experts, Computer Hacking & Digital Forensics certification combined with strong exam preparation can enhance career opportunities, credibility, and readiness for advanced roles in cyber defense and investigation.




Who this course is for:

  • Computer Hacking & Digital Forensics Certification Candidates – Learners preparing for the Computer Hacking & Digital Forensics v10/v11 exam should take this course to practice real exam-style MCQs, understand question patterns, improve accuracy, and build confidence before attempting the certification test. Cybersecurity & IT Professionals – Professionals working in cybersecurity, system administration, or IT security can use this course to validate their forensic knowledge, refresh key concepts, and strengthen their credentials through targeted exam preparation. Digital Forensics & Incident Response Aspirants – Individuals aiming to enter digital forensics or incident response roles will benefit by understanding how forensic concepts are tested in exams and identifying areas that need deeper study. Students & Law Enforcement Personnel – Students and law enforcement professionals studying cybercrime or digital investigations can use this course to reinforce theoretical knowledge and prepare effectively for Computer Hacking & Digital Forensics certification assessments.