For the following group of elements: Carbon (C), Aluminum (Al), Fluorine (F) a. Draw the electron configuration diagram for each element shown. b. Draw a molecule that could be made using these elements. Do not worry about whether the molecule is actually stable in nature, just try to fill the electron. You have to use all of the elements in your molecule, but you can use any element more than once. This molecule MUST contain at least one TRIPLE bond. c. Label each bond as non-polar, polar, or ionic. Show the partial or full charges.
For the following group of elements: Carbon (C), Aluminum (Al), Fluorine (F) a. Draw the electron configuration diagram for each element shown. b. Draw a molecule that could be made using these elements. Do not worry about whether the molecule is actually stable in nature, just try to fill the electron. You have to use all of the elements in your molecule, but you can use any element more than once. This molecule MUST contain at least one TRIPLE bond. c. Label each bond as non-polar, polar, or ionic. Show the partial or full charges.
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:1. For the following group of elements: Carbon (C), Aluminum (Al), Fluorine (F)
a. Draw the electron configuration diagram for each element shown.
b.
Draw a molecule that could be made using these elements. Do not worry about
whether the molecule is actually stable in nature, just try to fill the electron. You
have to use all of the elements in your molecule, but you can use any element
more than once. This molecule MUST contain at least one TRIPLE bond.
c. Label each bond as non-polar, polar, or ionic. Show the partial or full charges.
2. Cholesterol (pictured below) is an organic molecule produced in all animal cells. It is a
component of all cell membranes in animals. Cholesterol is also a precursor molecule in
the synthesis of steroid hormones and Vitamin D. FIRST, on the diagram, make sure to
label any partial or full charges that would be present. SECOND, in the space provided
below, explain whether you think thyroxine would be dissolved in water or not, make
sure to clearly explain why or why not. LASTLY, on the diagram of below, indicate where
on the molecule water could interact via hydrogen bonds and if water soluble,
demonstrate the hydration shell.
HO
Cholesterol
CH3
H₂C
H₂C
CH3
CH3
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