The following data were obtained for the adsorption of a certain material (ORA) on activated carbon at 25 °C. [ORA) initial (M) Sample number [ORA] at equilibrium (M) 0.0044 Activated carbon mass (g)...


The following data were obtained for the adsorption of a certain material (ORA) on activated<br>carbon at 25 °C.<br>[ORA) initial (M)<br>Sample<br>number<br>[ORA] at equilibrium<br>(M)<br>0.0044<br>Activated carbon mass<br>(g)<br>1.0119<br>1.0186<br>0.0096<br>0.0289<br>0.0207<br>1.0360<br>1.0129<br>1.0393<br>0.0578<br>0.0446<br>4<br>0.0867<br>0.0721<br>0.1156<br>0.1002<br>6.<br>1.0312<br>0.1445<br>0.1270<br>1.0198<br>0.1926<br>0.1742<br>8<br>1.0270<br>1.0252<br>0.2407<br>0.2227<br>0.1108<br>9.<br>0.2889<br>1. Try fitting these data using Langmuir Isotherm and obtain K and monolayer of ORA molecules<br>per one gram<br>

Extracted text: The following data were obtained for the adsorption of a certain material (ORA) on activated carbon at 25 °C. [ORA) initial (M) Sample number [ORA] at equilibrium (M) 0.0044 Activated carbon mass (g) 1.0119 1.0186 0.0096 0.0289 0.0207 1.0360 1.0129 1.0393 0.0578 0.0446 4 0.0867 0.0721 0.1156 0.1002 6. 1.0312 0.1445 0.1270 1.0198 0.1926 0.1742 8 1.0270 1.0252 0.2407 0.2227 0.1108 9. 0.2889 1. Try fitting these data using Langmuir Isotherm and obtain K and monolayer of ORA molecules per one gram

Jun 10, 2022
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