If R is a difference algebra over K the solutions of F in R are
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A difference algebra which is a field is called a " difference field extension ".
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For example, there is a proof of the Manin-Mumford conjecture using methods of difference algebra.
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The role of difference rings in difference algebra is similar to the role of commutative rings in commutative algebra and algebraic geometry.
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Difference algebra is related to many other mathematical areas, such as discrete dynamical systems, combinatorics, number theory or model theory.
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One of the basic theorems in difference algebra asserts that every ascending chain of perfect difference ideals in K \ { y \ } is finite.
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While some real life problems, such as population dynamics, can be modeled by algebraic difference equations, difference algebra also has applications in pure mathematics.
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It becomes a difference algebra over K by extending \ sigma from K to K \ { y \ } as suggested by the naming of the variables.
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A " difference algebra " over a difference field K is a difference ring R with a K-algebra structure such that K \ to R is a morphism of difference rings, i . e . \ sigma \ colon R \ to R extends \ sigma \ colon K \ to K.
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