Scientific Research An Academic Publisher
OPEN ACCESS
Add your e-mail address to receive free newsletters from SCIRP.
Select Journal AA AAD AAR AASoci AAST ABB ABC ABCR ACES ACS ACT AD ADR AE AER AHS AID AiM AIT AJAC AJC AJCC AJCM AJIBM AJMB AJOR AJPS ALAMT ALC ALS AM AMI AMPC ANP APD APE APM ARS ARSci AS ASM BLR CC CE CellBio ChnStd CM CMB CN CRCM CS CSTA CUS CWEEE Detection EMAE ENG EPE ETSN FMAR FNS GEP GIS GM Graphene GSC Health IB ICA IIM IJAA IJAMSC IJCCE IJCM IJCNS IJG IJIDS IJIS IJMNTA IJMPCERO IJNM IJOC IJOHNS InfraMatics JACEN JAMP JASMI JBBS JBCPR JBiSE JBM JBNB JBPC JCC JCDSA JCPT JCT JDAIP JDM JEAS JECTC JEMAA JEP JFCMV JFRM JGIS JHEPGC JHRSS JIBTVA JILSA JIS JMF JMGBND JMMCE JMP JPEE JQIS JSBS JSEA JSEMAT JSIP JSS JSSM JST JTR JTST JTTs JWARP LCE MC ME MI MME MNSMS MPS MR MRC MRI MSA MSCE NJGC NM NR NS OALib OALibJ ODEM OJA OJAB OJAcct OJAnes OJAP OJApo OJAppS OJAPr OJAS OJBD OJBIPHY OJBM OJC OJCB OJCD OJCE OJCM OJD OJDer OJDM OJE OJEE OJEM OJEMD OJEpi OJER OJF OJFD OJG OJGas OJGen OJI OJIC OJIM OJINM OJL OJM OJMC OJMetal OJMH OJMI OJMIP OJML OJMM OJMN OJMP OJMS OJMSi OJN OJNeph OJO OJOG OJOGas OJOp OJOph OJOPM OJOTS OJPathology OJPC OJPChem OJPed OJPM OJPP OJPS OJPsych OJRA OJRad OJRD OJRM OJS OJSS OJSST OJST OJSTA OJTR OJTS OJU OJVM OPJ POS PP PST PSYCH SAR SCD SGRE SM SN SNL Soft SS TEL TI UOAJ VP WET WJA WJCD WJCMP WJCS WJET WJM WJNS WJNSE WJNST WJV WSN YM
More>>
K. S. Pitzer, “Thermodynamics of Electrolytes. I. Theoretical Basis and General Equations,” The Journal of Physical Chemistry, Vol. 77, No. 2, 1973, pp. 268-277. doi:10.1021/j100621a026
has been cited by the following article:
TITLE: An Equation of State for Nonaqueous Electrolyte Solutions
AUTHORS: Zheng Han
KEYWORDS: EOS; Nonaqueous; Electrolyte Solutions
JOURNAL NAME: Advances in Chemical Engineering and Science, Vol.2 No.4, November 1, 2012
ABSTRACT: A two parameters equation of state (EOS) for nonaqueous electrolyte solutions system has been developed. The equation is in terms of Helmholtz free energy and incorporated with results of low density expansion of non-primitive mean spherical approximation. The EOS was tested for experimental data reported in literatures of 9 nonaqueous single electrolyte solutions of which the temperature was 298.15 K, and it also has a good predictive capability for nonaqueous electrolyte solutions at different temperature in this work. The comparisons with EOSs published earlier by other researchers in literatures are carried out in detail.
Related Articles:
Maxwell’s Equations as the Basis for Model of Atoms
Milan Perkovac
DOI: 10.4236/jamp.2014.25029 5,024 Downloads 11,341 Views Citations
Pub. Date: April 25, 2014
Erratum to “Multilevel B-Spline Repulsive Energy in Nanomodeling of Graphenes” [Journal of Surface Engineered Materials and Advanced Technology Vol. 4 No. 2 (April 2014) 75-86]
Maharavo Randrianarivony
DOI: 10.4236/jsemat.2015.52009 3,505 Downloads 4,268 Views Citations
Pub. Date: March 24, 2015
Theoretical D* Optimization of N+-p Pb1-xSnxSe Long-Wavelength (8 - 11 μm) Photovoltaic Detector at 77 K
Binbin Weng, Jijun Qiu, Lihua Zhao, Caleb Chang, Zhisheng Shi
DOI: 10.4236/detection.2014.21001 3,526 Downloads 6,319 Views Citations
Pub. Date: March 28, 2014
A Simple and General Proof of Beal’s Conjecture (I)
Golden Gadzirayi Nyambuya
DOI: 10.4236/apm.2014.49059 3,422 Downloads 4,523 Views Citations
Pub. Date: September 22, 2014
Intervalley Scattering of Electrons in n-Si at T = 77 ÷ 450 K
Valerii Ermakov, Volodymyr Kolomoets, Leonid Panasyuk, Baja Orasgulyev
DOI: 10.4236/wjcmp.2013.31007 2,742 Downloads 4,504 Views Citations
Pub. Date: February 27, 2013