Problem 1.12 Draw a line-bond structure for propene, CH3CH=CH2. Indicate the hybrid- ization of each carbon, and predict the value of each bond angle.

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Can you help me answer and explain 1.12

Problem 1.11
Draw both an electron-dot and a line-bond structure for acetaldehyde,
CH3CHO.
Problem 1.12
Draw a line-bond structure for propene, CH3CH=CH2. Indicate the hybrid-
ization of each carbon, and predict the value of each bond angle.
Problem 1.13
Draw a line-bond structure for propyne, CH3C=CH. Indicate the hybridization
of each carbon, and predict a value for each bond angle..
Problem 1.14
Draw a line-bond structure for buta-1,3-diene, H2C=CH-CH=CH2. Indicate
the hybridization of each carbon, and predict a value for each bond angle.
Problem 1.15
Convert the following molecular model of aspirin into a line-bond structure, and
identify the hybridization of each carbon atom (gray = C, red = 0, ivory = H).
Aspirin
(acetylsalicylic acid)
Transcribed Image Text:Problem 1.11 Draw both an electron-dot and a line-bond structure for acetaldehyde, CH3CHO. Problem 1.12 Draw a line-bond structure for propene, CH3CH=CH2. Indicate the hybrid- ization of each carbon, and predict the value of each bond angle. Problem 1.13 Draw a line-bond structure for propyne, CH3C=CH. Indicate the hybridization of each carbon, and predict a value for each bond angle.. Problem 1.14 Draw a line-bond structure for buta-1,3-diene, H2C=CH-CH=CH2. Indicate the hybridization of each carbon, and predict a value for each bond angle. Problem 1.15 Convert the following molecular model of aspirin into a line-bond structure, and identify the hybridization of each carbon atom (gray = C, red = 0, ivory = H). Aspirin (acetylsalicylic acid)
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