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n. Gauss familienaam; Karl Friedrich Gauss (1777-1855), Duits wiskundige en wetenschapper die belangrijkste bijdrage leverde aan de cijfertheorie en elektromagnetische theorie
Carl Friedrich Gauss
GERMAN MATHEMATICIAN AND PHYSICIST (1777–1855)
Johann Carl Friedrich Gauss; Karl Gauss; Carl Frederich Gauss; Karl Friedrich Gauss; Carl Gauss; C. F. Gauss; Carl F. Gauss; Carl Friedrich Gauß; Johann Friedrich Karl Gauss; C.F. Gauss; Carl friedrich gauss; Carl Friederich Gauss; C. F. Gauß; Guass; CF Gauss; Karl Friedrich Gauß; Carl Freidrich Gauss; Johann Carl Friedrich Gauß; Carl Gauß; Friedrich gauss; Gauss; Johann Karl Friedrich Gauss; Carolus Fridericus Gauss; Princeps mathematicorum; Religious views of Carl Friedrich Gauss; Gauß, Johann Carl Friedrich; Carl Friedrich Gausz
Carl Friedrich Gauss (1777-1855), Duitse wiskundige en natuurkundige die veel bijgedragen heeft aan cijferleer voor kansberekening en voor onderzoek van elektro-magnetische velden
normal distribution
PROBABILITY DISTRIBUTION
Bell Curve; Gaussian distribution; NormalDistribution; Normal Distribution; Standard normal distribution; Law of error; Cumulative normal; Normally distributed; Cumulative Normal distribution; Normality (statistics); Standard normal; Normal density function; Normal curve; Normal distribution curve; Normal Curve; Normal random variable; The bell-shaped curve; Gaussian normal distribution; Gaussian Distributions; Gaussian Distribution; Bell-shaped; Gaussian random variable; Error Distribution; Bell-shaped curve; Standard distribution; Error distribution; Bell-curve; Normal distributions; Bell distribution; Normal probability distribution; Gaussian density; Gauss distribution; Normal cumulative distribution function; Bell Curves; Bell curves; Normal distribution about the mean; Gaussian probability density function; Gaussian probability distribution; Normal Model; Standard normal random variable; Gaussian profile; Normal-distribution; Bell-shaped frequency distribution curve; Gaussian distributions; Normal distribution quantile function; E-x2; E−x2; Normal population; Cumulative distribution function of the normal distribution; Bellcurve; Univariate Gaussian; Univariate Gaussian distribution; Bell curve; Bell shaped curve; Operations on normal deviates; Operations on normal distributions; Normal deviate; Standard normally distributed; Approximately normal distribution; Normalcdf; Gaussian pdf; Normal density; Normaldist
normale distributie (gelijke verdeling in klokdiagram weergegeven)
Definition
Carl Friedrich Gauss
<person> A German mathematician (1777 - 1855), one of all time
greatest. Gauss discovered the method of least squares and
Gaussian elimination.
Gauss was something of a child prodigy; the most commonly told
story relates that when he was 10 his teacher, wanting a rest,
told his class to add up all the numbers from 1 to 100. Gauss
did it in seconds, having noticed that 1+...+100 = 100+...+1 =
(101+...+101)/2.
He did important work in almost every area of mathematics.
Such eclecticism is probably impossible today, since further
progress in most areas of mathematics requires much hard
background study.
Some idea of the range of his work can be obtained by noting
the many mathematical terms with "Gauss" in their names. E.g.
Gaussian elimination (linear algebra); Gaussian primes
(number theory); Gaussian distribution (statistics); Gauss
[unit] (electromagnetism); Gaussian curvature (differential
geometry); Gaussian quadrature (numerical analysis);
Gauss-Bonnet formula (differential geometry); {Gauss's
identity} (hypergeometric functions); Gauss sums ({number
theory}).
His favourite area of mathematics was number theory. He
conjectured the Prime Number Theorem, pioneered the {theory
of quadratic forms}, proved the {quadratic reciprocity
theorem}, and much more.
He was "the first mathematician to use complex numbers in a
really confident and scientific way" (Hardy & Wright, chapter
12).
He nearly went into architecture rather than mathematics; what
decided him on mathematics was his proof, at age 18, of the
startling theorem that a regular N-sided polygon can be
constructed with ruler and compasses if and only if N is a
power of 2 times a product of distinct Fermat primes.
(1995-04-10)