Irreducible fraction

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An irreducible fraction (or fraction in lowest terms or reduced fraction) is a fraction in which the numerator and denominator are integers that have no other common divisors than 1 (and -1, when negative numbers are considered).[1] In other words, a fraction ab is irreducible if and only if a and b are coprime, that is, if a and b have a greatest common divisor of 1. In higher mathematics, "irreducible fraction" may also refer to rational fractions such that the numerator and the denominator are coprime polynomials.[2] Every positive rational number can be represented as an irreducible fraction in exactly one way.[3]


An equivalent definition is sometimes useful: if a, b are integers, then the fraction ab is irreducible if and only if there is no other equal fraction cd such that |c| < |a| or |d| < |b|, where |a| means the absolute value of a.[4] (Two fractions ab and cd are equal or equivalent if and only if ad = bc.)


For example, 14, 56, and −101100 are all irreducible fractions. On the other hand, 24 is reducible since it is equal in value to 12, and the numerator of 12 is less than the numerator of 24.


A fraction that is reducible can be reduced by dividing both the numerator and denominator by a common factor. It can be fully reduced to lowest terms if both are divided by their greatest common divisor.[5] In order to find the greatest common divisor, the Euclidean algorithm or prime factorization may be used. The Euclidean algorithm is commonly preferred because it allows one to reduce fractions with numerators and denominators too large to be easily factored.[6]




Contents





  • 1 Examples


  • 2 Uniqueness


  • 3 Applications


  • 4 Generalization


  • 5 See also


  • 6 References


  • 7 External links




Examples


12090=129=43.displaystyle frac 12090=frac 129=frac 43,.frac 12090=frac 129=frac 43,.

In the first step both numbers were divided by 10, which is a factor common to both 120 and 90. In the second step, they were divided by 3. The final result, 4/3, is an irreducible fraction because 4 and 3 have no common factors other than 1.


The original fraction could have also been reduced in a single step by using the greatest common divisor of 90 and 120, which is 30 (i.e., gcd(90,120)=30).


12090=43.displaystyle frac 12090=frac 43,.frac 12090=frac 43,.

Which method is faster "by hand" depends on the fraction and the ease with which common factors are spotted. In case a denominator and numerator remain that are too large to ensure they are coprime by inspection, a greatest common divisor computation is needed anyway to ensure the fraction is actually irreducible.



Uniqueness


Every rational number has a unique representation as an irreducible fraction with a positive denominator[3] (however 23=−2−3displaystyle tfrac 23=tfrac -2-3tfrac 23=tfrac -2-3 although both are irreducible). Uniqueness is a consequence of the unique prime factorization of integers, since ab=cddisplaystyle tfrac ab=tfrac cdtfrac ab=tfrac cd implies ad = bc and so both sides of the latter must share the same prime factorization, yet adisplaystyle aa and bdisplaystyle bb share no prime factors so the set of prime factors of adisplaystyle aa (with multiplicity) is a subset of those of cdisplaystyle cc and vice versa meaning a=cdisplaystyle a=ca=c and b=ddisplaystyle b=db=d.



Applications


The fact that any rational number has a unique representation as an irreducible fraction is utilized in various proofs of the irrationality of the square root of 2 and of other irrational numbers. For example, one proof notes that if the square root of 2 could be represented as a ratio of integers, then it would have in particular the fully reduced representation abdisplaystyle tfrac abtfrac ab where a and b are the smallest possible; but given that abdisplaystyle tfrac abtfrac ab equals the square root of 2, so does 2b−aa−bdisplaystyle tfrac 2b-aa-btfrac 2b-aa-b (since cross-multiplying this with abdisplaystyle tfrac abtfrac ab shows that they are equal). Since the latter is a ratio of smaller integers, this is a contradiction, so the premise that the square root of two has a representation as the ratio of two integers is false.



Generalization


The notion of irreducible fraction generalizes to the field of fractions of any unique factorization domain: any element of such a field can be written as a fraction in which denominator and numerator are coprime, by dividing both by their greatest common divisor.[7] This applies notably to rational expressions over a field. The irreducible fraction for a given element is unique up to multiplication of denominator and numerator by the same invertible element. In the case of the rational numbers this means that any number has two irreducible fractions, related by a change of sign of both numerator and denominator; this ambiguity can be removed by requiring the denominator to be positive. In the case of rational functions the denominator could similarly be required to be a monic polynomial.[8]



See also



  • Anomalous cancellation, an erroneous arithmetic procedure that produces the correct irreducible fraction by cancelling digits of the original unreduced form


  • Diophantine approximation, the approximation of real numbers by rational numbers.


References




  1. ^ Stepanov, S. A. (2001) [1994], "Fraction", in Hazewinkel, Michiel, Encyclopedia of Mathematics, Springer Science+Business Media B.V. / Kluwer Academic Publishers, ISBN 978-1-55608-010-4.mw-parser-output cite.citationfont-style:inherit.mw-parser-output qquotes:"""""""'""'".mw-parser-output code.cs1-codecolor:inherit;background:inherit;border:inherit;padding:inherit.mw-parser-output .cs1-lock-free abackground:url("//upload.wikimedia.org/wikipedia/commons/thumb/6/65/Lock-green.svg/9px-Lock-green.svg.png")no-repeat;background-position:right .1em center.mw-parser-output .cs1-lock-limited a,.mw-parser-output .cs1-lock-registration abackground:url("//upload.wikimedia.org/wikipedia/commons/thumb/d/d6/Lock-gray-alt-2.svg/9px-Lock-gray-alt-2.svg.png")no-repeat;background-position:right .1em center.mw-parser-output .cs1-lock-subscription abackground:url("//upload.wikimedia.org/wikipedia/commons/thumb/a/aa/Lock-red-alt-2.svg/9px-Lock-red-alt-2.svg.png")no-repeat;background-position:right .1em center.mw-parser-output .cs1-subscription,.mw-parser-output .cs1-registrationcolor:#555.mw-parser-output .cs1-subscription span,.mw-parser-output .cs1-registration spanborder-bottom:1px dotted;cursor:help.mw-parser-output .cs1-hidden-errordisplay:none;font-size:100%.mw-parser-output .cs1-visible-errorfont-size:100%.mw-parser-output .cs1-subscription,.mw-parser-output .cs1-registration,.mw-parser-output .cs1-formatfont-size:95%.mw-parser-output .cs1-kern-left,.mw-parser-output .cs1-kern-wl-leftpadding-left:0.2em.mw-parser-output .cs1-kern-right,.mw-parser-output .cs1-kern-wl-rightpadding-right:0.2em


  2. ^ E.g., see Laudal, Olav Arnfinn; Piene, Ragni (2004), The Legacy of Niels Henrik Abel: The Abel Bicentennial, Oslo, June 3-8, 2002, Springer, p. 155


  3. ^ ab Scott, William (1844), Elements of Arithmetic and Algebra: For the Use of the Royal Military College, College text books, Sandhurst. Royal Military College, 1, Longman, Brown, Green, and Longmans, p. 75.


  4. ^ Scott (1844), p. 74.


  5. ^ Sally, Judith D.; Sally, Paul J., Jr. (2012), "9.1. Reducing a fraction to lowest terms", Integers, Fractions, and Arithmetic: A Guide for Teachers, MSRI mathematical circles library, 10, American Mathematical Society, pp. 131–134, ISBN 9780821887981.


  6. ^ Cuoco, Al; Rotman, Joseph (2013), Learning Modern Algebra, Mathematical Association of America Textbooks, Mathematical Association of America, p. 33, ISBN 9781939512017.


  7. ^ Garrett, Paul B. (2007), Abstract Algebra, CRC Press, p. 183, ISBN 9781584886907.


  8. ^ Grillet, Pierre Antoine (2007), Abstract Algebra, Graduate Texts in Mathematics, 242, Springer, Lemma 9.2, p. 183, ISBN 9780387715681.




External links


  • Weisstein, Eric W. "Reduced Fraction". MathWorld.






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