Concept explainers
(a)
Interpretation: Hydrogen atoms and non bonded electron pairs in
Concept introduction: A charge on a carbon atom takes the place of one hydrogen atom. The charge determines the number of lone pairs. Negatively charged carbon atoms have one lone pair and positively charged carbon atoms have none.
(b)
Interpretation: Hydrogen atoms and non bonded electron pairs in
Concept introduction: A charge on a carbon atom takes the place of one hydrogen atom. The charge determines the number of lone pairs. Negatively charged carbon atoms have one lone pair and positively charged carbon atoms have none.
(c)
Interpretation: Hydrogen atoms and non bonded electron pairs in given ion is to be drawn.
Concept introduction: A charge on a carbon atom takes the place of one hydrogen atom. The charge determines the number of lone pairs. Negatively charged carbon atoms have one lone pair and positively charged carbon atoms have none.
(d)
Interpretation: Hydrogen atoms and non-bonded electron pairs in given ion is to be drawn.
Concept introduction: A charge on a carbon atom takes the place of one hydrogen atom. The charge determines the number of lone pairs. Negatively charged carbon atoms have one lone pair and positively charged carbon atoms have none.
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- a model of each of the following molecules: a. Based on your model, draw a bond-line representation with as many atoms as possible in the plane of the paper. Use wedge and dash bonds to represent any atoms that do not lie in the plane of the paper. b. Indicate each unique bond angle and the shape of each unique central atom.arrow_forward7.37 Draw the Lewis structure for each of the following molecules. (a) CO , (b) H2S , (c) SF6 , (d) NCl3arrow_forward
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