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Welcome to the Piracy and Copy Protection MCQs Page

Dive deep into the fascinating world of Piracy and Copy Protection with our comprehensive set of Multiple-Choice Questions (MCQs). This page is dedicated to exploring the fundamental concepts and intricacies of Piracy and Copy Protection, a crucial aspect of Reverse Engineering. In this section, you will encounter a diverse range of MCQs that cover various aspects of Piracy and Copy Protection, from the basic principles to advanced topics. Each question is thoughtfully crafted to challenge your knowledge and deepen your understanding of this critical subcategory within Reverse Engineering.

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Check out the MCQs below to embark on an enriching journey through Piracy and Copy Protection. Test your knowledge, expand your horizons, and solidify your grasp on this vital area of Reverse Engineering.

Note: Each MCQ comes with multiple answer choices. Select the most appropriate option and test your understanding of Piracy and Copy Protection. You can click on an option to test your knowledge before viewing the solution for a MCQ. Happy learning!

Piracy and Copy Protection MCQs | Page 11 of 13

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Answer: (a).The vendor encrypts the data using your system’s public key Explanation:When you purchase copyrighted material, the vendor encrypts the data using your system’s public key.
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Answer: (b).Because the cryptographic engine chip prevents access to the decrypted information Explanation:The data is secure because the trusted platform will ensure that the user will be unable to access the decrypted information at any time.
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Answer: (b).Enabling secure storage of sensitive information Explanation:Trusted computing will allow you to encrypt all of your sensitive information and to only make that information available to trusted software that comes from a trusted vendor.
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Answer: (a).To prevent viruses and Trojans from stealing the information Explanation:The purpose of encrypting sensitive information in trusted computing is to prevent viruses and Trojans from stealing the information.
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Answer: (c).In the cryptographic engine chip Explanation:The decryption key is safely stored inside the cryptographic engine chip which is inaccessible to the malicious program.
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Answer: (b).It allows them to create closed file formats that can't be used by other vendors. Explanation:With trusted computing, an application could encrypt all of its files using a hidden key that is stored inside the application. Because no one ever sees the application code in its unencrypted form, no one would be able to find the key and decrypt the files created by that specific application. This may be an advantage for software vendors, but it’s certainly a disadvantage for end users.
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Answer: (b).It prevents them from accessing encrypted files created by specific applications. Explanation:With trusted computing, an application could encrypt all of its files using a hidden key that is stored inside the application. Because no one ever sees the application code in its unencrypted form, no one would be able to find the key and decrypt the files created by that specific application. This may be an advantage for software vendors, but it’s certainly a disadvantage for end users.
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Answer: (a).The inability to hide decrypted information while it is being used. Explanation:The biggest weakness of current copy protection schemes is the inability to hide decrypted information while it is being used.
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Answer: (c).A partition where programs can run securely, with their code and data being inaccessible to other programs. Explanation:Trusted platforms typically have a protected partition where programs can run securely, with their code and data being inaccessible to other programs.
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Answer: (d).A technology that will allow future versions of Windows to support the Nexus execution mode. Explanation:NGSCB (Next-Generation Secure Computing Base) is a technology that will allow future versions of Windows to support the Nexus execution mode.

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