ation factors (Figure 1). THE ATAC The objective of this exercise is to become familiar with the spatial arrangement of organic molecules and to observe the phenomenon of isomerism. Bonding rules: Carbon must have 4 bonds to it; hydrogen 1 bond; oxygen 2 bonds; and chlorine 1 bond. 1. Construct four methane (CH4) molecules using 1 C, 4 H, and 4 bonds for each molecule. Draw the three-dimensional structure for this CH4 molecule.

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EXERCISE 25
t is So
Molecular Models and Isomerism
NAME
SECTION
Landa Bush
1/19/23
INSTRUCTOR
DATE
Marion
THE ATA
The objective of this exercise is to become familiar with the spatial arrangement of organic
molecules and to observe the phenomenon of isomerism.
Bonding rules: Carbon must have 4 bonds to it; hydrogen 1 bond; oxygen 2 bonds; and
chlorine 1 bond.
1. Construct four methane (CH4) molecules using 1 C, 4 H, and 4 bonds for each molecule.
Draw the three-dimensional structure for this CH4 molecule.
EX
Transcribed Image Text:EXERCISE 25 t is So Molecular Models and Isomerism NAME SECTION Landa Bush 1/19/23 INSTRUCTOR DATE Marion THE ATA The objective of this exercise is to become familiar with the spatial arrangement of organic molecules and to observe the phenomenon of isomerism. Bonding rules: Carbon must have 4 bonds to it; hydrogen 1 bond; oxygen 2 bonds; and chlorine 1 bond. 1. Construct four methane (CH4) molecules using 1 C, 4 H, and 4 bonds for each molecule. Draw the three-dimensional structure for this CH4 molecule. EX
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