The molecular structure of hinokitiol is represented below (See attached image) Draw a complete Lewis structure of the molecule and answer the following questions. Complete the structure by adding ONLY hydrogen atoms to carbon atoms where needed. You must not create any other bonds. Atoms such as oxygen or nitrogen may have lone pairs to complete their octets. Each of the non-hydrogen atoms of this skeletal structure has been randomly numbered. Match the atom number with the orbital hybridization invoked for sigma bonding. Match these to the below (A)) (Options: sp3, sp2, sp, s, p, d2sp3, dsp3) A) 12, 9, 7, 2, 4 B) How many pairs of non-bonding electrons are there in the molecule? C) How many CH3 (methyl) groups are there in the molecule? D) How many CH2 (methylene) groups are there in the molecule? (i.e. # of C-atoms having exactly two bonded H-atoms) E) How many CH (methyne) groups are there in the molecule? (i.e. # of C-atoms having exactly one bonded H-atom) F) How many C-atoms having no bonded H-atoms are there in the molecule? G) How many π-bonds are there in the molecule? H) How many σ-bonds are there in the molecule? Determine the molecular formula for this molecule. Choose appropriate coefficients in the molecular formula below. C ____ H_____O____

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The molecular structure of hinokitiol is represented below (See attached image)

Draw a complete Lewis structure of the molecule and answer the following questions.

Complete the structure by adding ONLY hydrogen atoms to carbon atoms where needed. You must not create any other bonds. Atoms such as oxygen or nitrogen may have lone pairs to complete their octets.

Each of the non-hydrogen atoms of this skeletal structure has been randomly numbered.

Match the atom number with the orbital hybridization invoked for sigma bonding.

 

Match these to the below (A)) (Options: sp3, sp2, sp, s, p, d2sp3, dsp3)

A) 12, 9, 7, 2, 4 

 B) How many pairs of non-bonding electrons are there in the molecule?

C) How many CH3 (methyl) groups are there in the molecule?

D)  How many CH2 (methylene) groups are there in the molecule? (i.e. # of C-atoms having exactly two bonded H-atoms)

  E)  How many CH (methyne) groups are there in the molecule? (i.e. # of C-atoms having exactly one bonded H-atom)

  F)  How many C-atoms having no bonded H-atoms are there in the molecule?

   G) How many π-bonds are there in the molecule?

 H)  How many σ-bonds are there in the molecule?

Determine the molecular formula for this molecule.
Choose appropriate coefficients in the molecular formula below.

C ____ H_____O____

1
он
O10
6
2
4
8
3
12 9 11
Transcribed Image Text:1 он O10 6 2 4 8 3 12 9 11
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