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{{Short description|Danish actuary and mathematician}}
{{Short description|Danish actuary and mathematician (1850–1916)}}
{{Infobox scientist
{{Infobox scientist
| name = Jørgen Pedersen Gram
| name = Jørgen Pedersen Gram
| image = Jørgen Pedersen Gram by Johannes Hauerslev.jpg
| image = Jørgen Pedersen Gram by Johannes Hauerslev.jpg
|birth_date = {{birth date|1850|06|27|df=y}}
|birth_date = {{birth date|1850|06|27|df=y}}
|birth_place = [[Nustrup]], Duchy of [[Schleswig]], [[Denmark]]
|birth_place = [[Nustrup]], [[Duchy of Schleswig]], [[Denmark]]
|death_date = {{death date and age|1916|04|29|1850|06|27|df=y}}
|death_date = {{death date and age|1916|04|29|1850|06|27|df=y}}
|death_place = [[Copenhagen]], [[Denmark]]
|death_place = [[Copenhagen]], [[Denmark]]
|known_for = [[Gram matrix]]<br>[[Riemann%E2%80%93Siegel_theta_function#Gram_points|Gram points]]<br>[[Discrete Chebyshev polynomials|Gram polynomials]]<br>[[Gram's theorem]]<br>[[Gram–Charlier A series]]<br>[[Gram–Euler theorem]]<br>[[Gram–Schmidt process]]
|known_for = [[Gram matrix]]<br>[[Riemann–Siegel theta function#Gram points|Gram points]]<br>[[Discrete Chebyshev polynomials|Gram polynomials]]<br>[[Gram's theorem]]<br>[[Gram–Charlier A series]]<br>[[Gram–Euler theorem]]<br>[[Gram–Schmidt process]]
}}
}}


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[[Category:Pedestrian road incident deaths]]
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[[Category:Road incident deaths in Denmark]]
[[Category:People from the Duchy of Schleswig]]



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{{europe-mathematician-stub}}

Latest revision as of 21:04, 20 November 2024

Jørgen Pedersen Gram
Born(1850-06-27)27 June 1850
Died29 April 1916(1916-04-29) (aged 65)
Known forGram matrix
Gram points
Gram polynomials
Gram's theorem
Gram–Charlier A series
Gram–Euler theorem
Gram–Schmidt process

Jørgen Pedersen Gram (27 June 1850 – 29 April 1916) was a Danish actuary and mathematician who was born in Nustrup, Duchy of Schleswig, Denmark and died in Copenhagen, Denmark.

Important papers of his include On series expansions determined by the methods of least squares, and Investigations of the number of primes less than a given number. The mathematical method that bears his name, the Gram–Schmidt process, was first published in the former paper, in 1883.[1]

For number theorists his main fame is the series for the Riemann zeta function (the leading function in Riemann's exact prime-counting function). Instead of using a series of logarithmic integrals, Gram's function uses logarithm powers and the zeta function of positive integers. It has recently been supplanted by a formula of Ramanujan that uses the Bernoulli numbers directly instead of the zeta function.

In control theory, the Gramian or Gram matrix is an important contribution named after him. The Controllability Gramian and Observability Gramian are both important in the analysis of the stability of control systems. The Gram matrix is also important in deep learning, where it is used to represent the distribution of features in style transfer.

Gram was the first mathematician to provide a systematic theory of the development of skew frequency curves, showing that the normal symmetric Gaussian error curve was but one special case of a more general class of frequency curves.[2]

Gram's theorem, the Gram–Charlier series, and Gram points are also named after him.

He died on his way to a meeting of the Royal Danish Academy after being struck by a cyclist.[3]

References

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Notes

  1. ^ David Poole (2005). Linear Algebra. Thomson Brooks/Cole. p. 387. ISBN 0-534-99845-3.
  2. ^ Helen Mary Walker (1929). Studies in the History of Statistical Method: With Special Reference to Certain Educational Problems. The Williams & Wilkins Company. pp. 77, 81.
  3. ^ O'Connor, John J.; Robertson, Edmund F., "Jørgen Pedersen Gram", MacTutor History of Mathematics Archive, University of St Andrews

Bibliography

  • Gram, J. P. (1884). "Undersøgelser angaaende Maengden af Primtal under en given Graeense". Det K. Videnskabernes Selskab. 2: 183–308.