A prominent expert in the number theory Godfrey Hardy described it in the beginning of 20th century as one of the most obviously useless branches of Pure Mathematics”. Just 30 years after his death, an algorithm for encryption of secret messages was developed using achievements of number theory. It was called RSA after the names of its authors, and its implementation is probably the most frequently used computer program in the world nowadays. Without it, nobody would be able to make secure payments over the internet, or even log in securely to e-mail and other personal services. In this course we will start with the basics of the number theory and get to cryptographic protocols based on it. By the end, you will be able to apply the basics of the number theory to encrypt and decrypt messages, and to break the code if one applies RSA carelessly. You will even pass a cryptographic quest!
This course is part of the Introduction to Discrete Mathematics for Computer Science Specialization
About this Course
Skills you will gain
- Number Theory
- Modular Exponentiation
Syllabus - What you will learn from this course
Building Blocks for Cryptography
- 5 stars68.83%
- 4 stars21.33%
- 3 stars5.56%
- 2 stars1.29%
- 1 star2.96%
TOP REVIEWS FROM NUMBER THEORY AND CRYPTOGRAPHY
Some of the material is a bit hard to follow at times, but it's quite interesting and the final Quest quiz is a nice and fun way of putting everything together.
It was a great course which helped me learn number theory and introduced me to Cryptography.
The teaching assistants could have been more active.
Its a good course to the beginers of cryptography.If you want to join you should know basic number theory and computer language python.
Thank you! enjoyed learning number theory, understood new concepts of modular programming, how public key -private key works and the basis of rsa algorithm.
About the Introduction to Discrete Mathematics for Computer Science Specialization
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