An Elemenatry Proof of the Prime Number Theorem with a Remainder Term.
H.G. Diamond, J. Steinig (1970)
Inventiones mathematicae
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H.G. Diamond, J. Steinig (1970)
Inventiones mathematicae
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Frans Huikeshoven (1973)
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Omar Kihel, Jesse Larone (2015)
Acta Arithmetica
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Let f(x) be a complex rational function. We study conditions under which f(x) cannot be written as the composition of two rational functions which are not units under the operation of function composition. In this case, we say that f(x) is prime. We give sufficient conditions for complex rational functions to be prime in terms of their degrees and their critical values, and we also derive some conditions for the case of complex polynomials.
G. Tenenbaum (1990)
Inventiones mathematicae
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R.G. SWAN (1969)
Inventiones mathematicae
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J.S. Milne (1970)
Inventiones mathematicae
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P.X. Gallagher (1972)
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Håkan Lennerstad, Lars Lundberg (2010)
Acta Arithmetica
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E. Kani (1986)
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N. Mohan Kumar (1981/82)
Inventiones mathematicae
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