Theory of algorithms | Wikipedia audio article
This is an audio version of the Wikipedia Article: https://en.wikipedia.org/wiki/Theory_of_computation 00:01:24 1 History 00:02:02 2 Branches 00:02:11 ...
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This is an audio version of the Wikipedia Article:
https://en.wikipedia.org/wiki/Theory_of_computation
00:01:24 1 History
00:02:02 2 Branches
00:02:11 2.1 Automata theory
00:03:08 2.1.1 Formal Language theory
00:03:55 2.2 Computability theory
00:05:07 2.3 Computational complexity theory
00:07:19 3 Models of computation
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SUMMARY
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In theoretical computer science and mathematics, the theory of computation is the branch of theoretical computer science that deals with how efficiently problems can be solved on a model of computation, using an algorithm. The field is divided into three major branches: automata theory and languages, computability theory, and computational complexity theory, which are linked by the question: "What are the fundamental capabilities and limitations of computers?".In order to perform a rigorous study of computation, computer scientists work with a mathematical abstraction of computers called a model of computation. There are several models in use, but the most commonly examined is the Turing machine. Computer scientists study the Turing machine because it is simple to formulate, can be analyzed and used to prove results, and because it represents what many consider the most powerful possible "reasonable" model of computation (see Church–Turing thesis). It might seem that the potentially infinite memory capacity is an unrealizable attribute, but any decidable problem solved by a Turing machine will always require only a finite amount of memory. So in principle, any problem that can be solved (decided) by a Turing machine can be solved by a computer that has a finite amount of memory.
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