Thâbit ibn Kurrah Rule (original) (raw)
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Thâbit ibn Kurrah's rules is a beautiful result of Thâbit ibn Kurrah dating back to the tenth century (Woepcke 1852; Escott 1946; Dickson 2005, pp. 5 and 39; Borho 1972). Take and suppose that
are all prime. Then are an amicable pair, where
is sometimes called a Thâbit ibn Kurrah number. This form was rediscovered by Fermat in 1636 and Descartes in 1638 and generalized by Euler to Euler's rule (Borho 1972).
In order for such numbers to exist, there must be prime for two consecutive
, leaving only the possibilities 1, 2, 3, 4, and 6, 7. Of these,
is prime for
, 4, and 7, giving the amicable pairs (220, 284), (17296, 18416), and (9363584, 9437056).
In fact, various rules can be found that are analogous to Thâbit ibn Kurrah's. Denote a "Thâbit rule" by for given natural numbers
and
, a prime
not dividing
,
, and polynomials
. Then a necessary condition for the set of amicable pairs
of the form
(
, 2) with
,
prime and
a natural number to be infinite is that
(4) |
---|
where is the divisor function (Borho 1972). As a result,
(
, 2) form an amicable pair, if for some
, both
(5) |
---|
for , 2 are prime integers not dividing
(Borho 1972).
The following table summarizes some of the known Thâbit ibn Kurrah rules (Borho 1972, te Riele 1974).
See also
Amicable Pair, Euler's Rule, Riesel Number
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References
Borho, W. "On Thabit ibn Kurrah's Formula for Amicable Numbers." Math. Comput. 26, 571-578, 1972.Dickson, L. E. History of the Theory of Numbers, Vol. 1: Divisibility and Primality. New York: Dover, 2005.Escott, E. B. E. "Amicable Numbers."Scripta Math. 12, 61-72, 1946.Riesel, H. "Lucasian Criteria for the Primality of ." Math. Comput. 23, 869-875, 1969.Riesel, H. Prime Numbers and Computer Methods for Factorization, 2nd ed. Basel: Birkhäuser, p. 394, 1994.Sloane, N. J. A. Sequence A002235/M0545 in "The On-Line Encyclopedia of Integer Sequences."te Riele, H. J. J. "Four Large Amicable Pairs." Math. Comput. 28, 309-312, 1974.Woepcke, F. J. Asiatique 20, 320-429, 1852.
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Cite this as:
Weisstein, Eric W. "Thâbit ibn Kurrah Rule." From MathWorld--A Wolfram Web Resource. https://mathworld.wolfram.com/ThabitibnKurrahRule.html