The osmotic pressures of solutions of an enzyme, denoted B, in water at 298 K are given below. Determine the molar mass of the enzyme. Cmass, /g dm-) 1.00 2.00 4.00 7.00 9.00 II/Pa 27 70 197 500 785 Slope: BRT Slope: BRTIM Intercept: RT Intercept: RTIM (a) Molar concentration, c, (b) Mass concentration, cmass,B Fig. 6 The plot and extrapolation made to analyse the results of an osmometry experiment (a) using the molar concentra- tion and (b) using the mass concentration. IVc, C mass,B

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The osmotic pressures of solutions of an enzyme, denoted B,
in water at 298 K are given below. Determine the molar mass
of the enzyme.
Cmass, /g dm-)
1.00
2.00
4.00
7.00
9.00
II/Pa
27
70
197
500
785
Slope: BRT
Slope: BRTIM
Intercept: RT
Intercept: RTIM
(a) Molar concentration, c, (b) Mass concentration, cmass,B
Fig. 6 The plot and extrapolation made to analyse the results
of an osmometry experiment (a) using the molar concentra-
tion and (b) using the mass concentration.
IVc,
C mass,B
Transcribed Image Text:The osmotic pressures of solutions of an enzyme, denoted B, in water at 298 K are given below. Determine the molar mass of the enzyme. Cmass, /g dm-) 1.00 2.00 4.00 7.00 9.00 II/Pa 27 70 197 500 785 Slope: BRT Slope: BRTIM Intercept: RT Intercept: RTIM (a) Molar concentration, c, (b) Mass concentration, cmass,B Fig. 6 The plot and extrapolation made to analyse the results of an osmometry experiment (a) using the molar concentra- tion and (b) using the mass concentration. IVc, C mass,B
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