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<br /> 0 5 10 15 20 25 30 35 40 <br /> 0.50 <br /> 12 <br /> 0.45 <br />,...... 11 <br />.!: <br />'-..0.40 10 <br />.!: <br />() <br />.f: 0.35 9 <br />'-" <br />-> 0.30 8,...... <br /> .!: <br />:3 7'-.. <br />0" E <br />L.&.J 0.25 6E <br />L. '-" <br />CD 0.20 5 <br />- <br />c <br />3: 0.15 4 <br />g 0.1 0 J 3 <br />VI 2 <br /> 0.05 <br />0.00 0 <br /> 0 5 10 15 20 25 30 35 40 <br /> Ze (d8Z) <br />Figure 1. - Plots of three different Ze-S relationships showing the eff~ct of varying the ~ coefficient while the 0. coefficient <br />remains constant. <br /> <br /> <br /> <br /> 0 5 10 15 20 25 30 35 40 <br /> 0.50 , <br /> 12 <br /> 0.45 <br />,...... 11 <br />.!: <br />'-.. 0.40 10 <br />.!: <br />() <br />.~ 0.35 9 <br />'-" <br />-> 0.30 8..-... <br /> .!: <br />::l 7'-.. <br />0" E <br />L.&.J 0.25 -1 <br /> I 6E <br />L. '-" <br />CD 0.20 5 <br />- <br />c <br />3: 0.15 4 <br />~ 3 <br />g 0.10 2 <br />VI <br /> 0.05 <br /> 0.00 <br /> 0 5 10 15 20 25 30 35 <br /> Ze (d8Z) <br />Figure 2. - Plots of three different Ze-S relationships showing the effect of varying the 0. coefficient while the ~ coefficient <br />remains constant. <br /> 22 <br /> <br /> <br />