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ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
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Published by Princeton University Press, 2022
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Published by Princeton University Press, 2022
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ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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ISBN 10: 0691235465 ISBN 13: 9780691235462
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, US, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
Language: English
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Paperback. Condition: New. New mathematical research in arithmetic dynamicsIn The Arithmetic of Polynomial Dynamical Pairs, Charles Favre and Thomas Gauthier present new mathematical research in the field of arithmetic dynamics. Specifically, the authors study one-dimensional algebraic families of pairs given by a polynomial with a marked point. Combining tools from arithmetic geometry and holomorphic dynamics, they prove an "unlikely intersection" statement for such pairs, thereby demonstrating strong rigidity features for them. They further describe one-dimensional families in the moduli space of polynomials containing infinitely many postcritically finite parameters, proving the dynamical André-Oort conjecture for curves in this context, originally stated by Baker and DeMarco.This is a reader-friendly invitation to a new and exciting research area that brings together sophisticated tools from many branches of mathematics.
Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
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Condition: New. Über den AutorCharles Favre and Thomas GauthierKlappentextIn The Arithmetic of Polynomial Dynamical Pairs, Charles Favre and Thomas Gauthier present new mathematical research in the field of arithmetic dy.
Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, US, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
Language: English
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Paperback. Condition: New. New mathematical research in arithmetic dynamicsIn The Arithmetic of Polynomial Dynamical Pairs, Charles Favre and Thomas Gauthier present new mathematical research in the field of arithmetic dynamics. Specifically, the authors study one-dimensional algebraic families of pairs given by a polynomial with a marked point. Combining tools from arithmetic geometry and holomorphic dynamics, they prove an "unlikely intersection" statement for such pairs, thereby demonstrating strong rigidity features for them. They further describe one-dimensional families in the moduli space of polynomials containing infinitely many postcritically finite parameters, proving the dynamical André-Oort conjecture for curves in this context, originally stated by Baker and DeMarco.This is a reader-friendly invitation to a new and exciting research area that brings together sophisticated tools from many branches of mathematics.
Published by Princeton University Press Jun 2022, 2022
ISBN 10: 0691235473 ISBN 13: 9780691235479
Language: English
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Taschenbuch. Condition: Neu. Neuware - In The Arithmetic of Polynomial Dynamical Pairs, Charles Favre and Thomas Gauthier present new mathematical research in the field of arithmetic dynamics. Specifically, the authors study one-dimensional algebraic families of pairs given by a polynomial with a marked point. Combining tools from arithmetic geometry and holomorphic dynamics, they prove an 'unlikely intersection' statement for such pairs, thereby demonstrating strong rigidity features for them. They further describe one-dimensional families in the moduli space of polynomials containing infinitely many postcritically finite parameters, proving the dynamical Andrâe-Oort conjecture for curves in this context, originally stated by Baker and DeMarco. This is a reader-friendly invitation to a new and exciting research area that brings together sophisticated tools from many branches of mathematics.
Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Published by Princeton University Press, US, 2022
ISBN 10: 0691235465 ISBN 13: 9780691235462
Language: English
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Hardback. Condition: New. New mathematical research in arithmetic dynamicsIn The Arithmetic of Polynomial Dynamical Pairs, Charles Favre and Thomas Gauthier present new mathematical research in the field of arithmetic dynamics. Specifically, the authors study one-dimensional algebraic families of pairs given by a polynomial with a marked point. Combining tools from arithmetic geometry and holomorphic dynamics, they prove an "unlikely intersection" statement for such pairs, thereby demonstrating strong rigidity features for them. They further describe one-dimensional families in the moduli space of polynomials containing infinitely many postcritically finite parameters, proving the dynamical André-Oort conjecture for curves in this context, originally stated by Baker and DeMarco.This is a reader-friendly invitation to a new and exciting research area that brings together sophisticated tools from many branches of mathematics.