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Module 1 3
Introduction
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Lecture1.130 min
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Lecture1.205 min
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Lecture1.305 min
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Module 2 18
Fundamental Elements of Cybersecurity
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Lecture2.105 min
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Lecture2.205 min
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Lecture2.305 min
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Lecture2.405 min
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Lecture2.505 min
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Lecture2.605 min
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Lecture2.705 min
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Lecture2.805 min
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Lecture2.905 min
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Lecture2.1005 min
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Lecture2.1105 min
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Lecture2.1205 min
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Lecture2.1305 min
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Lecture2.1405 min
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Lecture2.1505 min
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Lecture2.1605 min
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Lecture2.1705 min
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Lecture2.1805 min
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Module 3 13
Introduction to Cyber Threats
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Lecture3.105 min
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Lecture3.205 min
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Lecture3.305 min
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Lecture3.405 min
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Lecture3.505 min
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Lecture3.605 min
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Lecture3.705 min
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Lecture3.805 min
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Lecture3.905 min
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Lecture3.1005 min
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Lecture3.1105 min
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Lecture3.1205 min
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Lecture3.1305 min
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Module 4 12
Security Risk Analysis and Management
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Lecture4.105 min
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Lecture4.205 min
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Lecture4.305 min
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Lecture4.405 min
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Lecture4.505 min
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Lecture4.605 min
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Lecture4.705 min
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Lecture4.805 min
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Lecture4.905 min
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Lecture4.1005 min
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Lecture4.1105 min
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Lecture4.1205 min
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Module 5 3
Cybersecurity Laws
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Lecture5.105 min
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Lecture5.205 min
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Lecture5.305 min
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Module 6 1
Conclusion
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Lecture6.105 min
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Exam 1
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Quiz7.130 questionsFinal
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Cryptograph
If it is said that now cryptography has become the main aspect of cybersecurity, then that won’t be wrong. Almost every cybersecurity system uses cryptography to make its cyber defense system free from any sort of malicious intervention. Cryptography is basically the algorithm that shuffles the bits of the transmitted data and these shuffled bits can only be restored if the recipient has been authorized to receive that data. Other than this single possibility, data bits remain shuffled. These ambiguous data streams remain no longer effective for attackers, as they won’t be able to interpret this data. Mathematics principles are used for this purpose, thus it is not an easy task for everyone to reach the base of original data. Moreover, cryptography standards are open source that makes it even more secure. As compared to symmetric encryption, the public-key encryption standard is the most widely used one.