1. For the following group of elements: Beryllium (Be), Aluminum (Al), Hydrogen (H) a. Draw the Bohr model (electron configuration diagram) for each element shown. b. Draw a single 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 shell. You have to use all of the elements in your molecule, but you can use any of these three elements more than once. This molecule MUST contain at least one double bond. c. Label each bond as non-polar, polar, or ionic. Show the partial or full charges.

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ChapterU1: Alchemy: Matter, Atomic Structure, And Bonding
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1. For the following group of elements: Beryllium (Be), Aluminum (Al), Hydrogen (H)
a. Draw the Bohr model (electron configuration diagram) for each element shown.
b. Draw a single 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 shell.
You have to use all of the elements in your molecule, but you can use any of these
three elements more than once. This molecule MUST contain at least one double
bond.
c. Label each bond as non-polar, polar, or ionic. Show the partial or full charges.
Transcribed Image Text:1. For the following group of elements: Beryllium (Be), Aluminum (Al), Hydrogen (H) a. Draw the Bohr model (electron configuration diagram) for each element shown. b. Draw a single 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 shell. You have to use all of the elements in your molecule, but you can use any of these three elements more than once. This molecule MUST contain at least one double bond. c. Label each bond as non-polar, polar, or ionic. Show the partial or full charges.
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