APS Excellence in Physics Education Award
November 2019

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Science SPORE Prize
November 2011

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The Open Source Physics Project is supported by NSF DUE-0442581.

Computer Program Detail Page

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Electrolysis System and Hydrogen Processing Model
written by Juan Borrero Mendoze
The Electrolysis System and Hydrogen Processing Model simulates a hydrogen production and purifying treatment plant.  The simulations has four  windows, where all the details attached to the simulation are screened and the user can easily control them in order to change the behavior of this chemical process. The user can set the plant's operational values and monitor the hydrogen electrolysis system and post-processing cycle to ensure its pureness.

Please note that this resource requires at least version 1.7 of Java (JRE).
1 supplemental document is available
1 source code document is available
Subjects Levels Resource Types
Other Sciences
- Chemistry
- Engineering
- Graduate/Professional
- Upper Undergraduate
- Instructional Material
= Simulation
- Reference Material
= Thesis/Dissertation
Intended Users Formats Ratings
- Learners
- Researchers
- Educators
- application/java
  • Currently 5.0/5

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Access Rights:
Free access
License:
This material is released under a Creative Commons Attribution-Noncommercial-Share Alike 3.0 license.
Rights Holder:
Juan Mendoza
Record Creator:
Metadata instance created October 7, 2015 by Juan Mendoza
Record Updated:
March 25, 2024 by wee lookang
ComPADRE is beta testing Citation Styles!

Record Link
AIP Format
J. Mendoza, Computer Program ELECTROLYSIS SYSTEM AND HYDROGEN PROCESSING MODEL (2015), WWW Document, (https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178).
AJP/PRST-PER
J. Mendoza, Computer Program ELECTROLYSIS SYSTEM AND HYDROGEN PROCESSING MODEL (2015), <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178>.
APA Format
Mendoza, J. (2015). Electrolysis System and Hydrogen Processing Model [Computer software]. Retrieved December 12, 2024, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178
Chicago Format
Mendoza, Juan. "Electrolysis System and Hydrogen Processing Model." https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178 (accessed 12 December 2024).
MLA Format
Mendoza, Juan. Electrolysis System and Hydrogen Processing Model. Computer software. 2015. Java (JRE) 1.7. 12 Dec. 2024 <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178>.
BibTeX Export Format
@misc{ Author = "Juan Mendoza", Title = {Electrolysis System and Hydrogen Processing Model}, Year = {2015} }
Refer Export Format

%A Juan Mendoza %T Electrolysis System and Hydrogen Processing Model %D 2015 %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178 %O application/java

EndNote Export Format

%0 Computer Program %A Mendoza, Juan %D 2015 %T Electrolysis System and Hydrogen Processing Model %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=13755&DocID=4178


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.

Electrolysis System and Hydrogen Processing Model:

Is Based On Easy Java Simulations Modeling and Authoring Tool

The Easy Java Simulations Modeling and Authoring Tool is needed to explore the computational model used in the Electrolysis System and Hydrogen Processing Model.

relation by Wolfgang Christian
Is the Basis For Electrolysis Model Simulator HTML5

JavaScript version and simplified to only have options for water or hydrogen chloride

relation by wee lookang

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