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The Basel problem consists in finding the sum of the reciprocals of the squares of the positive integers. It was finally solved in 1735 by Leonhard Euler. In this paper, we propose a simple proof based on the Weierstrass Sine product…

综合数学 · 数学 2025-03-14 Alois Schiessl

Because of its relation to the distribution of prime numbers, the Riemann zeta function {\zeta} (s) is one of the most important functions in mathematics. The zeta function is defined by the following formula for any complex number s with…

综合数学 · 数学 2021-02-25 Sourangshu Ghosh

The Basel problem, solved by Leonhard Euler in 1734, asks to resolve $\zeta(2)$, the sum of the reciprocals of the squares of the natural numbers, i.e. the sum of the infinite series: \begin{equation}…

数论 · 数学 2024-02-27 Leon D. Fairbanks

Euler's solution in 1734 of the Basel problem, which asks for a closed form expression for the sum of the reciprocals of all perfect squares, is one of the most celebrated results of mathematical analysis. In the modern era, numerous proofs…

经典分析与常微分方程 · 数学 2023-12-12 F. L. Freitas

Leonhard Euler likely developed his summation formula in 1732, and soon used it to estimate the sum of the reciprocal squares to 14 digits --- a value mathematicians had been competing to determine since Leibniz's astonishing discovery that…

历史与综述 · 数学 2019-12-10 David J. Pengelley

In this article, we provide a new elementary proof of the Basel problem.

历史与综述 · 数学 2025-10-07 Jia Li

Some time ago Wastlund reformulated the Basel problem in terms of a physical system using the proportionality of the apparent brightness of a star to the inverse square of its distance. Inspired by this approach, we give another physical…

历史与综述 · 数学 2019-08-27 Z. K. Silagadze

The number $\frac{\pi ^{2}}{6}$ is involved in the variance of several distributions in statistics. At the same time it holds $\sum\nolimits_{k=1}^{\infty }k^{-2}= \frac{\pi ^{2}}{6}$, which solves the famous Basel problem. We first provide…

概率论 · 数学 2021-03-25 Uwe Hassler , Mehdi Hosseinkouchack

By doing a slight change to a beautiful and widely unknown argument by E. L. Stark [E. L. Stark, Application of a Mean Value Theorem for Integrals to Series Summation, Amer. Math. Monthly 85 (1978) 481--483.] we get a candidate to be…

历史与综述 · 数学 2015-02-27 Samuel G. Moreno

Euler explored the problem of finding three numbers such that the sum or difference of any two of them is a perfect square. He discovered a parametric solution represented by polynomials of degree 18 and identified the smallest of these…

综合数学 · 数学 2025-08-25 Seiji Tomita

The purpose of this paper is to present series expansions for even powers of the number $\pi$. This is accomplished by generalizing Euler's method for solving the Basel Problem, which was published in 1735. We employ elementary symmetric…

综合数学 · 数学 2024-03-18 Alois Schiessl

This translation has been published in Stephen Hawking (ed.), "God Created the Integers", published in 2007 by Running Press. There may have been some changes to the final published version and this copy. This is a translation from the…

历史与综述 · 数学 2008-02-05 Leonhard Euler

Euler had considered the problem of finding three integers whose sum, product, and also the sum of the products of the integers, taken two at a time, are all perfect squares. Euler's methods of solving the problem lead to parametric…

数论 · 数学 2025-05-27 Ajai Choudhry

By means of several examples, we motivate that universal properties are the simplest way to solve a given mathematical problem, explaining in this way why they appear everywhere in mathematics. In particular, we present the co-universal…

泛函分析 · 数学 2024-04-25 Djamel eddine Kebiche , Paolo Giordano

We prove that there exists essentially one {\it minimal} differential algebra of distributions $\A$, satisfying all the properties stated in the Schwartz impossibility result [L. Schwartz, Sur l'impossibilit\'e de la multiplication des…

泛函分析 · 数学 2024-05-20 Nuno Costa Dias , Cristina Jorge , Joao Nuno Prata

We present an astonishingly simple and elegant proof of the celebrated Basel problem.

经典分析与常微分方程 · 数学 2025-06-16 Jesus Retamozo

We give a proof of the identity $\zeta(2)=\sum_{n=1}^\infty \frac{1}{n^2}=\frac{\pi^2}6$ using the fundamental theorem of calculus and differentiation under the integral sign.

历史与综述 · 数学 2021-04-06 Alessio Del Vigna

The Law of Quadratic Reciprocity was conjectured by Euler and Legendre who both found an incomplete proof. Gauss called this law "Theorema Fundamentale", and he was the first who gave a complete proof, he also highlighted the equivalence of…

历史与综述 · 数学 2007-05-23 Roberto Volpe

We provide several general versions of Littlewood's Tauberian theorem. These versions are applicable to Laplace transforms of Schwartz distributions. We apply these Tauberian results to deduce a number of Tauberian theorems for power series…

泛函分析 · 数学 2013-09-24 Ricardo Estrada , Jasson Vindas

We establish existence and uniqueness of generalized solutions to the initial-boundary value problem corresponding to an Euler-Bernoulli beam model from mechanics. The governing partial differential equation is of order four and involves…

泛函分析 · 数学 2008-12-11 Günther Hörmann , Ljubica Oparnica
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