After graduating from your PhD, you are now working as a post-doctoral researcher in BASF , the world’s largest multinational chemical company. The management of your R&D department decided to look at the potentiality of chloroform-methanol mixture in removing the lipids of various biological systems. Your boss, a senior scientist at your department, thinking about the hydroxyl group on the alcohol and thet hree chlorines on the CHCl3 , suggested that the mixture is probably non-ideal. Being one of her brightest colleagues, she then tasked you to graph the partial molar enthalpies of the chloroform methanol mixture as a function of mole fraction. Ardently, you accepted the challenge and went back to your office. After several hours of searching, you finally come up with enthalpy of mixing data at 50oC fort his mixture (See the picture). Please provide the graphs that the boss has asked you for. Put both curves on the same graph. Note: provide your excel file for this

Chemistry
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After graduating from your PhD, you are now working as a post-doctoral researcher in BASF , the world’s largest multinational chemical company. The management of your R&D department decided to look at the potentiality of chloroform-methanol mixture in removing the lipids of various biological systems. Your boss, a senior scientist at your department, thinking about the hydroxyl group on the alcohol and thet hree chlorines on the CHCl3 , suggested that the mixture is probably non-ideal. Being one of her brightest colleagues, she then tasked you to graph the partial molar enthalpies of the chloroform methanol mixture as a function of mole fraction.

Ardently, you accepted the challenge and went back to your office. After several hours of searching, you finally come up with enthalpy of mixing data at 50oC fort his mixture (See the picture). Please provide the graphs that the boss has asked you for. Put both curves on the same graph.


Note: provide your excel file for this

Enthalpy of mixing data for the methanol (1) +
chlorofom (2) system at 50°C.
AH te (Wmol)
-96.8
0.0256
-194.4
0.0559
-2834
0.0930
-297.4
0.0974
-364.6
01374
-369.5
01447
-400.3
0.1755
-407.4
0.2014
-409.9
02175
-394.8
0.2568
-369.1
0.2860
-364.6
0.2921
-328.9
0.3184
-316.2
0.3272
-287.2
0.3456
-284.3
0.3468
-255.7
0.3622
-237.5
0.3740
-206.5
0.3870
-189.4
0.3963
-90.1
04431
-87.9
04433
31.2
04953
51.5
0.5053
194.3
0.5655
241.0
0.5908
390.3
0.6563
3/4
524.5
0.7331
587.2
0.7855
5733
0.7909
590.9
0.8563
523.9
09132
489.1
0.9224
334.0
0.9578
186.3
0.9797
339
0.9967
1
Transcribed Image Text:Enthalpy of mixing data for the methanol (1) + chlorofom (2) system at 50°C. AH te (Wmol) -96.8 0.0256 -194.4 0.0559 -2834 0.0930 -297.4 0.0974 -364.6 01374 -369.5 01447 -400.3 0.1755 -407.4 0.2014 -409.9 02175 -394.8 0.2568 -369.1 0.2860 -364.6 0.2921 -328.9 0.3184 -316.2 0.3272 -287.2 0.3456 -284.3 0.3468 -255.7 0.3622 -237.5 0.3740 -206.5 0.3870 -189.4 0.3963 -90.1 04431 -87.9 04433 31.2 04953 51.5 0.5053 194.3 0.5655 241.0 0.5908 390.3 0.6563 3/4 524.5 0.7331 587.2 0.7855 5733 0.7909 590.9 0.8563 523.9 09132 489.1 0.9224 334.0 0.9578 186.3 0.9797 339 0.9967 1
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