Uses of Class
org.apfloat.Aprational
Packages that use Aprational
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Uses of Aprational in org.apfloat
Subclasses of Aprational in org.apfloatMethods in org.apfloat that return AprationalModifier and TypeMethodDescription(package private) AprationalAprational.abs()static AprationalAprationalMath.abs(Aprational x) Absolute value.Aprational.add(Aprational x) Adds two aprational numbers.static AprationalAprationalMath.bernoulli(long n) Returns the specified Bernoulli number.static AprationalAprationalMath.bernoulli(long n, int radix) Returns the specified Bernoulli number in the given radix.(package private) static AprationalAprationalMath.bernoulliBig(long n, int radix) (package private) static AprationalAprationalMath.bernoulliSmall(long n, int radix) static AprationalAprationalMath.binomial(Aprational n, Aprational k) Binomial coefficient.static Aprational[]ApfloatMath.convergents(Apfloat x, int n) Generates the firstnconvergents corresponding to the continued fraction ofx.static Aprational[]AprationalMath.convergents(Aprational x, int n) Generates the firstnconvergents corresponding to the continued fraction ofx.static AprationalAprationalMath.copySign(Aprational x, Aprational y) Copy sign from one argument to another.Aprational.divide(Aprational x) Divides two aprational numbers.Aprational.frac()Returns the fractional part.static AprationalAprationalMath.harmonicNumber(Apint n) Harmonic number.static AprationalAprationalMath.harmonicNumber(Apint n, Apint r) Generalized harmonic number.static AprationalAprationalMath.max(Aprational x, Aprational y) Returns the greater of the two values.static AprationalAprationalMath.min(Aprational x, Aprational y) Returns the smaller of the two values.Aprational.mod(Aprational x) Calculates the remainder when divided by an aprational.Aprational.multiply(Aprational x) Multiplies two aprational numbers.Aprational.negate()Negative value.static AprationalAprationalMath.negate(Aprational x) Deprecated.static AprationalAprationalMath.pochhammer(Aprational x, Apint n) Pochhammer symbol.static AprationalAprationalMath.pow(Aprational x, long n) Integer power.static AprationalAprationalMath.product(Aprational... x) Product of numbers.private static AprationalAprationalMath.recursiveSum(Aprational[] x, int n, int m) private AprationalAprational.reduce()static AprationalAprationalMath.roundToMultiple(Aprational x, Aprational y, RoundingMode roundingMode) Roundsxto the nearest multiple ofyusing the specified rounding mode.static AprationalRoundingHelper.roundToMultiple(Aprational x, Aprational y, RoundingMode roundingMode) (package private) AprationalAprational.scale(long scale) static AprationalAprationalMath.scale(Aprational x, long scale) Multiply by a power of the radix.Aprational.subtract(Aprational x) Subtracts two aprational numbers.static AprationalAprationalMath.sum(Aprational... x) Sum of numbers.Aprational.toRadix(int radix) Convert this aprational to the specified radix.Methods in org.apfloat that return types with arguments of type AprationalModifier and TypeMethodDescription(package private) static Iterator<Aprational> AprationalMath.bernoullis(long n, int radix) (package private) static Iterator<Aprational> AprationalMath.bernoullis2(long n, int radix) (package private) static Iterator<Aprational> AprationalMath.bernoullis2Big(long n, int radix) (package private) static Iterator<Aprational> AprationalMath.bernoullis2Small(int radix) (package private) static Iterator<Aprational> AprationalMath.bernoullisBig(long n, int radix) (package private) static Iterator<Aprational> AprationalMath.bernoullisSmall(int radix) static Iterator<Aprational> ContinuedFractionHelper.convergents(Iterator<Apint> continuedFraction, int radix) Methods in org.apfloat with parameters of type AprationalModifier and TypeMethodDescriptionstatic AprationalAprationalMath.abs(Aprational x) Absolute value.Aprational.add(Aprational x) Adds two aprational numbers.static AprationalAprationalMath.binomial(Aprational n, Aprational k) Binomial coefficient.intApint.compareTo(Aprational x) Compare this apint to the specified aprational.intAprational.compareTo(Aprational x) Compare this aprational to the specified aprational.static intRoundingHelper.compareToHalf(Aprational x) static Apint[]AprationalMath.continuedFraction(Aprational x, int n) Generates the firstnterms in the continued fraction representation ofx.ContinuedFractionHelper.continuedFraction(Aprational x) static Aprational[]AprationalMath.convergents(Aprational x, int n) Generates the firstnconvergents corresponding to the continued fraction ofx.static AprationalAprationalMath.copySign(Aprational x, Aprational y) Copy sign from one argument to another.Aprational.divide(Aprational x) Divides two aprational numbers.static AprationalAprationalMath.max(Aprational x, Aprational y) Returns the greater of the two values.static AprationalAprationalMath.min(Aprational x, Aprational y) Returns the smaller of the two values.Aprational.mod(Aprational x) Calculates the remainder when divided by an aprational.Aprational.multiply(Aprational x) Multiplies two aprational numbers.static AprationalAprationalMath.negate(Aprational x) Deprecated.UseAprational.negate().static AprationalAprationalMath.pochhammer(Aprational x, Apint n) Pochhammer symbol.static AprationalAprationalMath.pow(Aprational x, long n) Integer power.static AprationalAprationalMath.product(Aprational... x) Product of numbers.private static AprationalAprationalMath.recursiveSum(Aprational[] x, int n, int m) static ApfloatAprationalMath.round(Aprational x, long precision, RoundingMode roundingMode) Deprecated.static ApintAprationalMath.roundToInteger(Aprational x, RoundingMode roundingMode) Roundsxto integer using the specified rounding mode.static AprationalAprationalMath.roundToMultiple(Aprational x, Aprational y, RoundingMode roundingMode) Roundsxto the nearest multiple ofyusing the specified rounding mode.static AprationalRoundingHelper.roundToMultiple(Aprational x, Aprational y, RoundingMode roundingMode) static ApfloatAprationalMath.roundToPlaces(Aprational x, long places, RoundingMode roundingMode) Roundsxto the specified number of places using the specified rounding mode.static ApfloatAprationalMath.roundToPrecision(Aprational x, long precision, RoundingMode roundingMode) Rounds the given number to the specified precision with the specified rounding mode.static AprationalAprationalMath.scale(Aprational x, long scale) Multiply by a power of the radix.static longApfloatHelper.size(Aprational x) Aprational.subtract(Aprational x) Subtracts two aprational numbers.static AprationalAprationalMath.sum(Aprational... x) Sum of numbers.booleanApint.test(Aprational x) booleanAprational.test(Aprational x) Tests two aprational numbers for equality.
Aprational.negate().