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  1. Mathematical Models and Computer Simulations
  2. Mathematical Models and Computer Simulations : Volume 5
  3. Mathematical Models and Computer Simulations : Volume 5, Issue 2, April 2013
  4. Approximation of Planck distribution
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Mathematical Models and Computer Simulations : Volume 9
Mathematical Models and Computer Simulations : Volume 8
Mathematical Models and Computer Simulations : Volume 7
Mathematical Models and Computer Simulations : Volume 6
Mathematical Models and Computer Simulations : Volume 5
Mathematical Models and Computer Simulations : Volume 5, Issue 6, November 2013
Mathematical Models and Computer Simulations : Volume 5, Issue 5, September 2013
Mathematical Models and Computer Simulations : Volume 5, Issue 4, July 2013
Mathematical Models and Computer Simulations : Volume 5, Issue 3, May 2013
Mathematical Models and Computer Simulations : Volume 5, Issue 2, April 2013
Mathematical model of devices used to suppress external noise in a subregion of space
Mathematical model for calculating coastal wave processes
Diffusion model of gas in a phase space for moderate Knudsen numbers
Implementation of the quasi-diffusion method for calculating the critical parameters of a fast neutron reactor in 3D hexagonal geometry
Plasmostatic models of magnetic galateya-traps
Splitting schemes in the mixed finite-element method for the solution of heat transfer problems
Approximation of Planck distribution
On monotonicity of two-layer in time cabaret scheme
The use of incomplete LU decomposition in modeling convection-diffusion processes in an anisotropic medium
Mathematical Models and Computer Simulations : Volume 5, Issue 1, January 2013
Mathematical Models and Computer Simulations : Volume 4
Mathematical Models and Computer Simulations : Volume 3
Mathematical Models and Computer Simulations : Volume 2
Mathematical Models and Computer Simulations : Volume 1

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Approximation of Planck distribution

Content Provider Springer Nature Link
Author Shilkov, A. V.
Copyright Year 2013
Abstract Calculation of thermal radiation transport frequently requires calculating the integral of the Planck distribution density with respect to a finite interval of spectrum. An analytical approximation of this integral and its related integrals in elementary functions is constructed.
Starting Page 175
Ending Page 179
Page Count 5
File Format PDF
ISSN 20700482
Journal Mathematical Models and Computer Simulations
Volume Number 5
Issue Number 2
e-ISSN 20700490
Language English
Publisher SP MAIK Nauka/Interperiodica
Publisher Date 2013-03-24
Publisher Place Dordrecht
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword thermal radiation Planck function incomplete Riemann zeta function analytical approximation Mathematical Modeling and Industrial Mathematics Simulation and Modeling
Content Type Text
Resource Type Article
Subject Modeling and Simulation Computational Mathematics
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