University of Colorado System

Cryptography and Information Theory

Sang-Yoon Chang

Instructor: Sang-Yoon Chang

23,881 already enrolled

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Gain insight into a topic and learn the fundamentals.
4.5

(493 reviews)

Intermediate level
Some related experience required
Flexible schedule
Approx. 7 hours
Learn at your own pace
92%
Most learners liked this course
Gain insight into a topic and learn the fundamentals.
4.5

(493 reviews)

Intermediate level
Some related experience required
Flexible schedule
Approx. 7 hours
Learn at your own pace
92%
Most learners liked this course

Details to know

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Assessments

4 assignments

Taught in English

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This course is part of the Applied Cryptography Specialization
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There are 4 modules in this course

This module defines the technical terms in cryptography and introduce Alice, Bob, and Eve. To study the attacker Eve's perspective, we will describe Kerckhoff's Principle ("the attacker knows the system"), which defines the scope of the attacker knowledge (what is secret vs. what the attacker can know). We will also describe Security by Obscurity, which contrasts Kerckhoff's Principle.

What's included

8 videos2 readings1 assignment1 peer review1 discussion prompt

This module studies information entropy to quantify randomness. Information entropy can be used to measure the strength of the key or the secret information that determines the security of a cryptosystem against an attacker who does not know the random key.

What's included

6 videos1 reading2 assignments1 discussion prompt

This module studies the attacker view whose objective is to learn the key and break the cryptographic protection using the key. First, we will define brute force attack and describe how to quantify the attacker effort for brute force attack. Next, we will contrast cryptanalysis and brute force attack. Lastly, we will discuss about perfect secrecy, which is immune to cryptanalysis and is a strong notion of security derived from information theory.

What's included

4 videos1 reading1 assignment

This module studies cryptography from the practical point of view. We will first define computational security, which relies on the fact that real world attackers are computationally limited unlike information theoretic security, e.g., one-time pad. We will then survey side channel attacks and unintentional information leakage from the physical implementations of cryptosystems.

What's included

3 videos2 readings1 discussion prompt

Instructor

Instructor ratings
4.8 (78 ratings)
Sang-Yoon Chang
University of Colorado System
6 Courses54,167 learners

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4.5

493 reviews

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