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1
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0344421059
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Renewable reagent fiber optic based ammonia sensor
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R.A. Lieberman and M.T. Wlodarczyk (eds.)
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R. Berman and L. Burgess, Renewable reagent fiber optic based ammonia sensor, in R.A. Lieberman and M.T. Wlodarczyk (eds.), Proc. SPIE, Vol. 1172, Chemical, Biochemical and Environmental Sensors, 1990, pp. 206-214.
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Berman, R.1
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0025721205
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Flow optrodes for chemical analysis
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R. Berman and L. Burgess, Flow optrodes for chemical analysis, Proc. SPIE, Vol. 1368, 1990, pp. 25-35.
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Berman, R.1
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3
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0001049491
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Measurement of sodium hydroxide concentration with a renewable reagent-based fiber optic sensor
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R. Berman, G. Christian and L. Burgess, Measurement of sodium hydroxide concentration with a renewable reagent-based fiber optic sensor, Anal. Chem., 19 (1990) 2066-2071.
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Anal. Chem.
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Berman, R.1
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18944397868
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Theory of analytical chemistry
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K. Booksh and B. Kowalski, Theory of analytical chemistry, Anal. Chem., 15 (1994) 782A-791A.
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Booksh, K.1
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2742546597
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Chemically facilitated Donnan dialysis and its application in a fiber optic heavy metal sensor
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Z. Lin and L. Burgess, Chemically facilitated Donnan dialysis and its application in a fiber optic heavy metal sensor, Anal. Chem., 15 (1994) 2544-2551.
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Anal. Chem.
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Lin, Z.1
Burgess, L.2
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6
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0001376331
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Second-order fiber optic heavy metal sensor employing second-order tensoral calibration
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Z. Lin, K. Booksh, L. Burgess and B. Kowalski, Second-order fiber optic heavy metal sensor employing second-order tensoral calibration, Anal. Chem., 15 (1994) 2552-2560.
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Anal. Chem.
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Lin, Z.1
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Burgess, L.3
Kowalski, B.4
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7
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0000404807
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Extension of trilinear decomposition method with an application to the flow probe sensor
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K. Booksh, Z. Lin, Z. Wang and B. Kowalski, Extension of trilinear decomposition method with an application to the flow probe sensor, Anal. Chem., 15 (1994) 2561-2569.
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Booksh, K.1
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8
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0000958109
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Multicomponent determination of chlorinated hydrocarbons using a reaction-based chemical sensor. 1. Multivariate calibration of Fujiwara reaction products
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J. Henshaw, L. Burgess, K. Booksh and B. Kowalski, Multicomponent determination of chlorinated hydrocarbons using a reaction-based chemical sensor. 1. Multivariate calibration of Fujiwara reaction products, Anal. Chem., 20 (1994) 3328-3331.
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Henshaw, J.1
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9
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0000958108
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Multicomponent determination of chlorinated hydrocarbons using a reaction-based chemical sensor. 2. Chemical speciation using multivariate curve resolution
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R. Tauler, A. Smilde, J. Henshaw, L. Burgess and B. Kowalski, Multicomponent determination of chlorinated hydrocarbons using a reaction-based chemical sensor. 2. Chemical speciation using multivariate curve resolution, Anal. Chem., 20 (1994) 3337-3344.
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Anal. Chem.
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Tauler, R.1
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Burgess, L.4
Kowalski, B.5
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10
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0000958107
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Multicomponent determination of chlorinated hydrocarbons using a reaction-based chemical sensor. 3. Medium-rank second-order calibration with restricted Tucker models
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A. Smilde, R. Tauler, J. Henshaw, L. Burgess and B. Kowalski, Multicomponent determination of chlorinated hydrocarbons using a reaction-based chemical sensor. 3. Medium-rank second-order calibration with restricted Tucker models, Anal. Chem., 20 (1994) 3345-3351.
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Anal. Chem.
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Smilde, A.1
Tauler, R.2
Henshaw, J.3
Burgess, L.4
Kowalski, B.5
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12
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0000167662
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Bathophenanthrolinedisuiphonic acid and bathocuproinedisulphonic acid: Water soluble reagents for iron and copper
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D. Blair and H. Diehl, Bathophenanthrolinedisuiphonic acid and bathocuproinedisulphonic acid: water soluble reagents for iron and copper, Talanta, 7 (1961) 163-174.
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Blair, D.1
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