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Learning Android Forensics

Learning Android Forensics

By : Oleg Skulkin, Tindall, Rohit Tamma
2 (2)
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Learning Android Forensics

Learning Android Forensics

2 (2)
By: Oleg Skulkin, Tindall, Rohit Tamma

Overview of this book

Many forensic examiners rely on commercial, push-button tools to retrieve and analyze data, even though there is no tool that does either of these jobs perfectly. Learning Android Forensics will introduce you to the most up-to-date Android platform and its architecture, and provide a high-level overview of what Android forensics entails. You will understand how data is stored on Android devices and how to set up a digital forensic examination environment. As you make your way through the chapters, you will work through various physical and logical techniques to extract data from devices in order to obtain forensic evidence. You will also learn how to recover deleted data and forensically analyze application data with the help of various open source and commercial tools. In the concluding chapters, you will explore malware analysis so that you’ll be able to investigate cybersecurity incidents involving Android malware. By the end of this book, you will have a complete understanding of the Android forensic process, you will have explored open source and commercial forensic tools, and will have basic skills of Android malware identification and analysis.
Table of Contents (12 chapters)
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Mobile forensics

Mobile device forensics is a branch of digital forensics that deals with extracting, recovering, and analyzing digital evidence or data from a mobile device under forensically sound conditions. Simply put, it deals with accessing the data stored on devices, which includes SMS, contacts, call records, photos, videos, documents, application files, browsing history, and so on, and recovering data deleted from devices using various forensic techniques. It is important that the process of recovering or accessing details from a device is forensically sound if it has to be admitted in a court of law and to maintain the integrity of the evidence. If the evidence has to be admitted in a court of law, it's important to work only on the image file and not on the original device itself.

The term forensically sound is often used in the digital forensics community to clarify the correct use of a particular forensic technology or methodology. Mobile forensics, especially Android forensics, is evolving fast, owing to the fact that it has a total the market share of 85 percent (as per market research firm, IDC).

As explained by Eoghan Casey, in his book Digital Forensics and Investigation, forensic soundness is not just about keeping the original evidence unaltered. Even the routine task of acquiring data from a hard drive using a hardware write blocker may cause alterations (for example, making a hidden area of the hard drive accessible) on the drive. One of the keys to forensic soundness is documentation. Documenting how the device is handled from the beginning is very important. Hence, an investigation can be considered forensically sound if the acquisition process preserves the original data and its authenticity and integrity can be validated. Evidence integrity checks ensure that the evidence has not been tampered with from the time it was collected. Integrity checks are done by comparing the digital fingerprint of the evidence taken at the time of collection with the digital fingerprint of the evidence in its current state.

There is a growing need for mobile forensics due to several reasons, some of which include the following:

  • Use of mobile phones to store personal information
  • Increased use of mobile phones to perform online activities
  • Use of mobile phones in several crimes

Mobile forensics on a particular device is primarily dependent on the underlying operating system. Hence, we have different fields such as Android forensics, iOS forensics, and so on.

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