Counting Real Roots in Polynomial-Time via Diophantine Approximation. [PDF]
Rojas JM.
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Integers representable as differences of linear recurrence sequences. [PDF]
Tichy R, Vukusic I, Yang D, Ziegler V.
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Mixing Rates of the Geometrical Neutral Lorenz Model. [PDF]
Bruin H, Canales FarÃas HH.
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Creating Decidable Diophantine Equations [PDF]
Generalizing an argument of Matiyasevich, we illustrate a method to generate infinitely many diophantine equations whose solutions can be completely described by linear recurrences. In particular, we provide an integer-coefficient polynomial $p(x, y, z)$
Zeilberger, Doron +2 more
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UHRMS Formula Assignment: Diophantine-Based Recalibration Yields Lorentzian Mass Error Distribution as the Limiting Factor. [PDF]
Safaridehkohneh N, Ott A.
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Parameter Identification of Model for Piezoelectric Actuators. [PDF]
Liu D, Dong J, Guo S, Tan L, Yu S.
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Analysis of anti-cancer treatment therapies based on TOPSIS method under fractional Diophantine fuzzy Muirhead mean operators. [PDF]
Qadir A +3 more
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Reverse engineering molecules from fingerprints through deterministic enumeration and generative models. [PDF]
Meyer P +3 more
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Framework development of continuous non-linear Diophantine fuzzy sets and its application to renewable energy source selection. [PDF]
Khan A, Khan S, Rahimzai AA, Abdullah S.
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