
(a)
Interpretation:
The CN stretching mode that absorbs the higher-frequency IR photons is to be indicated for given pair of compounds. The reason for it is to be explained.
Concept introduction:
We simplify the picture of molecular vibrations by considering the ball-and-spring model, which treats bonds as simple springs that connect atoms together. According to Hooke’s law, the spring vibrates at a particular frequency (

Answer to Problem 15.19P
The CN stretching mode that absorbs the higher-frequency IR photons due to strong and stiffer bond is indicated below,
Explanation of Solution
The given pair of compounds is,
The triple bonds tend to be stronger and stiffer than double bonds. A stronger and stiffer bond tends to lead to a higher vibrational frequency. In given pair of compounds, with the faster vibration, the
The CN stretching mode that absorbs the higher-frequency IR photons is shown below,
The CN stretching mode that absorbs the higher-frequency IR photons is indicated on the basis of the relationship between strength and stiffness of the bond and vibrational frequency.
(b)
Interpretation:
The CN stretching mode that absorbs the higher-frequency IR photons is to be indicated for given pair of compounds. The reason for it is to be explained.
Concept introduction:
We simplify the picture of molecular vibrations by considering the ball-and-spring model, which treats bonds as simple springs that connect atoms together. According to Hooke’s law, the spring vibrates at a particular frequency (

Answer to Problem 15.19P
The CN stretching mode that absorbs the higher-frequency IR photons due to strong and stiffer bond is indicated below,
Explanation of Solution
The given pair of compounds is,
The double bonds tend to be stronger and stiffer than single bonds. A stronger and stiffer bond tends to lead to a higher vibrational frequency. In given pair of compounds, with the faster vibration, the
The CN stretching mode that absorbs the higher-frequency IR photons is shown below,
The CN stretching mode that absorbs the higher-frequency IR photons is indicated on the basis of the relationship between strength and stiffness of the bond and vibrational frequency.
(c)
Interpretation:
The CN stretching mode that absorbs the higher-frequency IR photons is to be indicated for given pair of compounds. The reason for it is to be explained.
Concept introduction:
We simplify the picture of molecular vibrations by considering the ball-and-spring model, which treats bonds as simple springs that connect atoms together. According to Hooke’s law, the spring vibrates at a particular frequency (

Answer to Problem 15.19P
The CN stretching mode that absorbs the higher-frequency IR photons due to lower mass is indicated below,
Explanation of Solution
The given pair of compounds is,
In both compounds there is
But
The CN stretching mode that absorbs the higher-frequency IR photons is shown below,
The vibrational mode that absorbs at a higher frequency in the IR region is determined on the basis of the relationship between mass and vibrational frequency.
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Chapter 15 Solutions
Organic Chemistry: Principles And Mechanisms
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- Predict the products of this organic reaction: OH + NaOH A? Specifically, in the drawing area below draw the skeletal ("line") structure of the product, or products, of this reaction. (If there's more than one product, draw them in any arrangement you like, so long as they aren't touching.) If there aren't any products because this reaction won't happen, check the No reaction box under the drawing area. No reaction Click and drag to start drawing a structure. ✓ Sarrow_forwardPredict the products of this organic reaction: CH3-C-O-CH2-CH2-C-CH3 + H₂O ? A Specifically, in the drawing area below draw the condensed structure of the product, or products, of this reaction. (If there's more than one product, draw them in any arrangement you like, so long as they aren't touching.) If there aren't any products because this reaction won't happen, check the No reaction box under the drawing area. No reaction Click anywhere to draw the first atom of your structure. :☐ darrow_forwardDE d. Draw an arrow pushing mechanism for the following IN O CI N fo 人 P Polle DELL prt sc home end ins F5 F6 F7 F8 F9 F10 F11 F12arrow_forward
- Predict the products of this organic reaction: + H₂O H* ? A Specifically, in the drawing area below draw the skeletal ("line") structure of the product, or products, of this reaction. (If there's more than one product, draw them in any arrangement you like, so long as they aren't touching.) If there aren't any products because this reaction won't happen, check the No reaction box under the drawing area. No Reaction Click and drag to start drawing a structure.arrow_forwardPredict the major organic products of the reaction below and draw them on right side of the arrow. If there will be no significant reaction, check the box below the drawing area instead. C Cl CH, OH There will be no significant reaction. + pyridine G Click and drag to start drawing a structure.arrow_forwardWhat is the missing reactant in this organic reaction? H R+ H2O Δ OH 0= CH3-CH-O-CH3 + CH3-C-OH Specifically, in the drawing area below draw the condensed structure of R. If there is more than one reasonable answer, you can draw any one of them. If there is no reasonable answer, check the No answer box under the drawing area. No Answer Click anywhere to draw the first atom of your structure. dyarrow_forward
- You are trying to determine whether the following organic reaction can be done in a single synthesis step. If so, add any missing reagents or conditions in the drawing area below. If it isn't possible to do this reaction in a single synthesis step, check the box below the drawing area instead. Note for advanced students: if you have a choice of reagents to add, you should choose the least reactive and most economical reagents possible. Cl It isn't possible to do this reaction in a single synthesis step. + T OHarrow_forwardPredict the products of this organic reaction: CH3 O CH3-CH-C-O-CH2-CH2-CH3 + H₂OH+ Η ? A Specifically, in the drawing area below draw the condensed structure of the product, or products, of this reaction. (If there's more than one product, draw them in any arrangement you like, so long as they aren't touching.) If there aren't any products because this reaction won't happen, check the No reaction box under the drawing area. No Reaction Click anywhere to draw the first atom of your structure.arrow_forward€ CH3-CH-C-O-CH2-CH2-CH3 + NaOH A? Specifically, in the drawing area below draw the condensed structure of the product, or products, of this reaction. (If there's more than one product, draw them in any arrangement you like, so long as they aren't touching.) If there aren't any products because this reaction won't happen, check the No reaction box under the drawing area. Predict the products of this organic reaction: CH3 O Click anywhere to draw the first atom of your structure. No reaction ✓ Garrow_forward
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