draw the structural formula for 1,3,5-trichlorocyclohexane

Hard to do on here! It is a 6 membered ring with alternating CH and CH2 groups. On each CH there is a Cl.

if it works:

CHClCH2CHClCH2CHClCH2
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The question does not give an indication as to the stereochemistry. If you make a model you will see that it is possible for the Cls to be above or below the ring. Hence there are a number of possible 1,3,5-trichlorocyclohexanes.

omg that was it! I was missing the extra H on the Cl points. Thank you SO much!

I am also trying to draw another one..but I will post it into a separate question in case others need to see that as well.

Thanks again!!!

To draw the structural formula for 1,3,5-trichlorocyclohexane, follow these steps:

Step 1: Draw a cyclohexane ring structure. Start by drawing a hexagon shape to represent the cyclohexane ring.

Cl Cl
| |
Cl - C - C - C - C - C - Cl
| |
Cl Cl

Step 2: Number the carbon atoms in the cyclohexane ring. Place the numbers 1 to 6 on each carbon atom, starting from any position.

Cl Cl
| |
Cl - C - C - C - C - C - Cl
1 | | 2
Cl Cl
|
6

Step 3: Add 3 chlorines to the positions 1, 3, and 5. Replace one hydrogen atom on each of these carbon atoms with a chlorine atom.

Cl Cl
| |
Cl - C - Cl - C - C - C - Cl
1 | | 2
Cl Cl
|
6

And that's the structural formula for 1,3,5-trichlorocyclohexane!

To draw the structural formula for 1,3,5-trichlorocyclohexane, you will need to follow these steps:

Step 1: Understand the molecule's formula.
In this case, we have 1,3,5-trichlorocyclohexane, which means there are three chlorine atoms attached to the cyclohexane ring. The numbers 1, 3, and 5 indicate the specific positions on the ring where the chlorine atoms are attached.

Step 2: Draw the cyclohexane ring.
Start by drawing a hexagon shape with each vertex representing a carbon atom. Label each carbon atom with a number from 1 to 6 in a clockwise or counterclockwise direction. Ensure that the ring is properly closed to form a cyclohexane structure.

Step 3: Add the chlorine atoms at the indicated positions.
Based on the name, we know that the chlorine atoms are attached to the carbon atoms at positions 1, 3, and 5 on the cyclohexane ring. Draw a downward line from each of these carbon atoms and attach a chlorine atom at the end of each line.

Here is the structural formula for 1,3,5-trichlorocyclohexane:

Cl
|
1--C--2
\ /
Cl
|
6--C--3
/ \
Cl Cl
|
5--C--4
|
Cl

Note: In the structural formula above, the lines representing the bonds are not perfectly spaced due to limitations in text formatting. In reality, the bonds between the carbon atoms in the cyclohexane ring should be equally spaced.