Computer Program Detail Page
STP Ising Partition Function
written by
Harvey Gould, Jan Tobochnik, Wolfgang Christian, and Anne Cox
The STP IsingPartitionFunction program is a Monte Carlo calculation of the partition function Z of the two-dimensional Ising model in equilibrium with a heat bath at temperature T. The default is a lattice of linear dimension L=32 (for a total of N=L^2 spins).
STP IsingPartitionFunction is part of a suite of Open Source Physics programs that model aspects of Statistical and Thermal Physics (STP). The program is distributed as a ready-to-run (compiled) Java archive. Double clicking the stp_IsingPartitionFunction.jar file will run the program if Java is installed on your computer. Additional programs can be found by searching ComPADRE for Open Source Physics, STP, or Statistical and Thermal Physics. Please note that this resource requires at least version 1.5 of Java.
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Record Link
<a href="https://www.compadre.org/STP/items/detail.cfm?ID=8544">Gould, H, J. Tobochnik, W. Christian, and A. Cox. "STP Ising Partition Function."</a>
AIP Format
H. Gould, J. Tobochnik, W. Christian, and A. Cox, Computer Program STP ISING PARTITION FUNCTION (2009), WWW Document, (https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971).
AJP/PRST-PER
H. Gould, J. Tobochnik, W. Christian, and A. Cox, Computer Program STP ISING PARTITION FUNCTION (2009), <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971>.
APA Format
Gould, H., Tobochnik, J., Christian, W., & Cox, A. (2009). STP Ising Partition Function [Computer software]. Retrieved October 13, 2024, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971
Chicago Format
Gould, H, J. Tobochnik, W. Christian, and A. Cox. "STP Ising Partition Function." https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971 (accessed 13 October 2024).
MLA Format
Gould, Harvey, Jan Tobochnik, Wolfgang Christian, and Anne Cox. STP Ising Partition Function. Computer software. 2009. Java 1.5. 13 Oct. 2024 <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971>.
BibTeX Export Format
@misc{
Author = "Harvey Gould and Jan Tobochnik and Wolfgang Christian and Anne Cox",
Title = {STP Ising Partition Function},
Month = {February},
Year = {2009}
}
Refer Export Format
%A Harvey Gould %A Jan Tobochnik %A Wolfgang Christian %A Anne Cox %T STP Ising Partition Function %D February 17, 2009 %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971 %O application/java
EndNote Export Format
%0 Computer Program %A Gould, Harvey %A Tobochnik, Jan %A Christian, Wolfgang %A Cox, Anne %D February 17, 2009 %T STP Ising Partition Function %8 February 17, 2009 %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8544&DocID=971 Disclaimer: ComPADRE offers citation styles as a guide only. We cannot offer interpretations about citations as this is an automated procedure. Please refer to the style manuals in the Citation Source Information area for clarifications.
Citation Source Information
The AIP Style presented is based on information from the AIP Style Manual. The APA Style presented is based on information from APA Style.org: Electronic References. The Chicago Style presented is based on information from Examples of Chicago-Style Documentation. The MLA Style presented is based on information from the MLA FAQ. This resource is stored in 2 shared folders. You must login to access shared folders. STP Ising Partition Function:
Is Part Of
Statistical and Thermal Physics 2nd Ed. Programs
STP Ising Partition Function Program is a part of STP Application package that contains curricular materials for the teaching of Statistical and Thermal Physics. relation by Anne Cox
References
STP Textbook Chapter 5: Magnetic Systems
Chapter 5 of Gould and Tobochnik's Statistical and Thermal Physics provides additional underpinnings for the STP Ising Partition Function Program. relation by Anne CoxKnow of another related resource? Login to relate this resource to it. |
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Is Part Of
Statistical and Thermal Physics 2nd Ed. Programs ReferencesSimilar Materials |