HOMEWORK SET 1

HOMEWORK SET 1 - HOMEWORK SET# 1 Part 1 Problem 1.3 # of Cs...

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HOMEWORK SET# 1 Part 1 Problem 1.3 # of Cs P/N/A Component Weight % Mole % 6 P Hexanes 0.06 0.12 N Methylcyclopentane 0.39 0.81 A Benzene 0.10 0.21 N Cyclohexane 0.51 1.06 7 P Heptanes 4.89 8.54 N Methylcyclohexane 1.58 2.82 A Toluene 0.68 1.29 8 P Octanes 6.07 9.30 A Ethylbenzene 0.30 0.49 A Meta & Para Xylenes 0.87 1.43 A Orthoxylene 0.40 0.66 9 P Nonanes 7.00 9.57 A iso-Propyl Benzene 0.31 0.45 A n-Propyl Benzene 0.51 0.74 A 1,2,4-Trimethylbenzene 1.17 1.70 10 P Decanes 6.43 7.91 11 P Undecanes 7.93 8.90 12 P Dodecanes 6.76 6.95 13 P Tridecanes 6.78 6.44 14 P Tetradecanes 6.47 5.71 15 P Pentadecanes 5.86 4.83 16 P Hexadecanes 4.80 3.71 17 P Heptadecanes 3.84 2.78 18 P Octadecanes 3.36 2.31 19 P Nonadecanes 2.90 1.88 20 P Eicosanes 2.26 1.40 21 P Heneicosanes 2.03 1.19 22 P Docosanes 1.82 1.02 23 P Tricosanes 1.54 0.83 24 P Tetracosanes 1.31 0.68 25 P Pentacosanes 1.13 0.56 26 P Hexacosanes 1.32 0.63 27 P Heptacosanes 1.08 0.50 28 P Octacosanes 1.14 0.50 29 P Nonacosanes 0.98 0.42 30 + P Tricontanes plus 5.42 1.66 100.00 100.00 P: Paraffins, N: Naphthenes, A: Aromatics
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Structures Naphthenes: Methylcyclopentane Cyclohexane Methylcyclohexane Aromatics: Benzene Toluene Ethylbenzene Meta-xylene ortho-xylene para-xylene CH 3 CH 3 CH 3 CH 3 CH 3 CH 3 CH 3 CH 2 CH 3 CH 3 CH 3
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n-propylbenzene iso-propylbenzene 1,2,4-trimethylbenzene Problem 1.4 Ionic bond is formed as a result of transfer of electrons between atoms from their outermost shells. The attractive force between the oppositely charged ions creates this bond. Example: Sodium Chloride (NaCl). Covalent bond is formed as a result of sharing of electrons between atoms in their outermost shells. The attractive force between these electrons and the atom nuclei creates this bond. Example: Methane (CH 4 ). Problem 1.6 1 CH 3 CH 2 CH 2 CH 2 CH 2 CH 2 CH 2 CH 3 n-Octane 2 CH 3 CH CH 2 CH 2 CH 2 CH 2 CH 3 CH 3 2-methylheptane 3 CH 3 CH 2 CH CH 2 CH 2 CH 2 CH 3 CH 3 3-methylheptane 4 CH 3 CH 2 CH 2 CH CH 2 CH 2 CH 3 CH 3 4-methylheptane 5 CH 3 CH 2 CH CH 2 CH 2 CH 3 CH 2 CH 3 3-ethylhexane 6 CH 3 CH 3 C CH 2 CH 2 CH 2 CH 3 CH 3 2,2-dimethylhexane 7 CH 3 CH 3 CH 2 C CH 2 CH 2 CH 3 CH 3 3,3-dimethylhexane 8 CH 3 CH CH CH 2 CH 2 CH 3 CH 3 CH 3 2,3-dimethylhexane 9 CH 3 CH CH 2 CH CH 2 CH 3 CH 3 CH 3 2,4-dimethylhexane 10 CH 3 CH CH 2 CH 2 CH CH 3 CH 3 CH 3 2,5-dimethylhexane CH 3 CH 3 CH 3 CH 2 CH 2 CH 3 CH 3 CHCH 3
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11 CH 3 CH 2 CH CH CH 2 CH 3 CH 3 CH 3 3,4-dimethylhexane 12 CH 3 CH 3 CH 3 C CH CH 2 CH 3 CH 3 2,2,3-trimethylpentane 13 CH 3 CH 3 CH 3 CH C CH 2 CH 3 CH 3 2,3,3-trimethylpentane 14 CH 3 CH 3 CH 3 C CH 2 CH CH 3 CH 3 2,2,4-trimethylpentane 15 CH 3 CH 3 CH 3 CH 3 CH CH CH CH 3 2,3,4-trimethylpentane 16 CH 3 CH CH CH 2 CH 3 CH 3 CH 2 CH 3 3-ethyl-2-methylpentane 17 CH 3 CH 3 CH 2 C CH 2 CH 3 CH 2 CH 3 3-ethyl-3-methylpentane 18 CH 3 CH 3 CH
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This homework help was uploaded on 04/07/2008 for the course PETE 2032 taught by Professor Veazeym during the Spring '07 term at LSU.

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HOMEWORK SET 1 - HOMEWORK SET# 1 Part 1 Problem 1.3 # of Cs...

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