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Volumn 117, Issue , 2013, Pages 112-118
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Extended artificial neural networks: Incorporation of a priori chemical knowledge enables use of ion selective electrodes for in-situ measurement of ions at environmentally relevant levels
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Author keywords
array Electronic tongue; Charge balance; Chemometrics Artificial Neural Network (ANN); In situ environmental sensors; Ion Selective Electrode (ISE); Real time chemical measurements
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Indexed keywords
COMPUTER ARCHITECTURE;
ELECTRONIC TONGUES;
ESTIMATION;
FUNCTIONS;
IONS;
MIXTURES;
NETWORK ARCHITECTURE;
NEURAL NETWORKS;
ANALYTE CONCENTRATION;
CHARGE BALANCES;
CHEMICAL MEASUREMENTS;
CHEMOMETRICS;
CONDUCTIVITY MEASUREMENTS;
ENVIRONMENTAL PROBLEMS;
ENVIRONMENTAL SENSOR;
NONLINEAR FUNCTIONS;
ION SELECTIVE ELECTRODES;
ANION;
CATION;
WATER;
ARTICLE;
ARTIFICIAL NEURAL NETWORK;
ARTIFICIAL NEURAL NETWORK (ANN);
CHARGE BALANCE;
CHEMISTRY;
CHEMOMETRICS;
ELECTRIC CONDUCTIVITY;
ELECTRONIC TONGUE;
IN-SITU ENVIRONMENTAL SENSORS;
ION SELECTIVE ELECTRODE;
ION SELECTIVE ELECTRODE (ISE) ARRAY;
NONLINEAR SYSTEM;
REAL-TIME CHEMICAL MEASUREMENTS;
SOLUTION AND SOLUBILITY;
ARTIFICIAL NEURAL NETWORK (ANN);
CHARGE BALANCE;
CHEMOMETRICS;
ELECTRONIC TONGUE;
IN-SITU ENVIRONMENTAL SENSORS;
ION SELECTIVE ELECTRODE (ISE) ARRAY;
REAL-TIME CHEMICAL MEASUREMENTS;
ANIONS;
CATIONS;
ELECTRIC CONDUCTIVITY;
ION-SELECTIVE ELECTRODES;
NEURAL NETWORKS (COMPUTER);
NONLINEAR DYNAMICS;
SOLUTIONS;
WATER;
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EID: 84884688914
PISSN: 00399140
EISSN: None
Source Type: Journal
DOI: 10.1016/j.talanta.2013.08.045 Document Type: Article |
Times cited : (44)
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References (26)
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