1 F.D. Wilde, "“Turbidity”, U.S. Geological Survey TWRI Book 9, no. 4., chapter 6, 7" 1998
2 L. Lewis, "Turbidity-controlled suspended sediment sampling for runoff-event load estimation" 32 (32): 2299-2310, 1996
3 R.B. Grayson, "The potential of field turbidity measurement for the computation of total phosphorous and suspended solids loads" 47 : 257-567, 1996
4 J.R. Gray, "The need for surrogate technologies to monitor fluvial-sediment transport" Reno, Nevada 2002
5 J.M. Dela Cruz, "Multiphoton Interference 3: Probing microscopic chemical environments" 108 : 53-58, 2004
6 M.H. Liao, "Immobilization of yeast alcohol dehydrogenase on magnetic nanoparticles for improving its stability" 23 : 1723-1727, 2001
7 S.H. Yeom, "Fiber-optic fluoroimmunosensor for foodborn pathogens using an optical evanescent field" 16 : 441-448, 2007
8 L. Lewis, "Estimation of suspended sediment flux in streams using continuous turbidity and flow data coupled with laboratory concentrations" Reno, Nevada 2002
9 R.E. Faye, "Erosion, sediment discharge, and channel morphology in the upper Chattahoochee river basin, Georgia" U.S. Govt. Printing Office, Washington, D.C., 1980
10 A.D. Van Den, "Development of a biomass sensor. Dual ratio versus transmission trade-off" 1999
1 F.D. Wilde, "“Turbidity”, U.S. Geological Survey TWRI Book 9, no. 4., chapter 6, 7" 1998
2 L. Lewis, "Turbidity-controlled suspended sediment sampling for runoff-event load estimation" 32 (32): 2299-2310, 1996
3 R.B. Grayson, "The potential of field turbidity measurement for the computation of total phosphorous and suspended solids loads" 47 : 257-567, 1996
4 J.R. Gray, "The need for surrogate technologies to monitor fluvial-sediment transport" Reno, Nevada 2002
5 J.M. Dela Cruz, "Multiphoton Interference 3: Probing microscopic chemical environments" 108 : 53-58, 2004
6 M.H. Liao, "Immobilization of yeast alcohol dehydrogenase on magnetic nanoparticles for improving its stability" 23 : 1723-1727, 2001
7 S.H. Yeom, "Fiber-optic fluoroimmunosensor for foodborn pathogens using an optical evanescent field" 16 : 441-448, 2007
8 L. Lewis, "Estimation of suspended sediment flux in streams using continuous turbidity and flow data coupled with laboratory concentrations" Reno, Nevada 2002
9 R.E. Faye, "Erosion, sediment discharge, and channel morphology in the upper Chattahoochee river basin, Georgia" U.S. Govt. Printing Office, Washington, D.C., 1980
10 A.D. Van Den, "Development of a biomass sensor. Dual ratio versus transmission trade-off" 1999
11 J.R. Gray, "Comparability of suspended-sediment concentration and total suspended solids data" Reston, Virginia 2000
12 R.C. van Benthem, "Compact optical sensor for real-time monitoring of bacterial growth for space applications" 974 : 541-555, 2002
13 M.H. Liao, "Characteristics of magneticnanoparticles- bound YADH in water/AOT/isooctane microemulsions" 18 : 81-87, 2002