Concept explainers
(a)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is propene. Thus, the longest carbon chain must have three carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the chain. The position of the double bond in the chain is between carbon atoms C1 and C2.
The root can be shown as:
At C2 carbon atom of the root, one chlorine is attached. Thus, the structure of
The structure of
(b)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is butene. Thus, the longest carbon chain must have four carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the chain. The position of the double bond in the chain is between carbon atoms C1 and C2.
The root can be shown as:
At C3 carbon atom of the root, a methyl substituent is attached.
Thus, the structure of
The structure of
(c)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is butene. Thus, the longest carbon chain must have four carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the chain. The position of the double bond in the chain is between carbon atoms C2 and C3.
The root can be shown as:
At C2 and C3 carbon atoms of the root, two methyl substituents are attached.
Thus, the structure of
The structure of
(d)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents, are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is cyclohexene. Thus, the largest carbon ring must have six carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the ring. The position of the double bond in the ring is always between carbon atoms C1 and C2.
The root can be shown as:
At C2 and C3 carbon atoms of the ring, one ethoxy and two methyl substituents are attached respectively. Thus, the structure of
The structure of
(e)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is cyclohexene. Thus, the largest carbon ring must have seven carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the ring. The position of the double bond in the ring is always between carbon atoms C1 and C2.
The root can be shown as:
At C2, C3, and C4 carbon atoms of this ring, three methoxy substituents are attached.
Thus, the structure of
The structure of
(f)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is cyclohexene. Thus, the largest carbon ring must have six carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the ring. The position of the double bond in the ring is always between carbon atoms C1 and C2.
The root can be shown as:
At C2, C3, and C4 carbon atoms, bromine, methyl, and nitro group are attached.
Thus, the structure of
The structure of
(g)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is cyclopentene. Thus, the largest carbon ring must have five carbon atoms. The suffix ‘ene’ indicates that there is a double bond in the ring. The position of the double bond in the ring is always between carbon atoms C1 and C2.
The root can be shown as:
At C3 and C4 carbon atoms of the ring, two bromine atoms and one methyl group are attached.
Thus, the structure of
The structure of
(h)
Interpretation:
The structure for
Concept introduction:
In case of molecules containing a
If the root is a chain, numbering begins from that end of the chain which encounters the
The carbon atoms having a double or triple bond between them are always assigned C1 and C2, if the root is a ring. This must be done such that the locator numbers for the substituents are minimized. The lower of the two locator numbers for the
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Answer to Problem B.26P
The structure for
Explanation of Solution
The given molecule is
In this molecule, the root is pentyne. Thus, the longest carbon chain must have five carbon atoms. The suffix ‘yne’ indicates that there is a triple bond in the chain. The position of the triple bond in the chain is always between carbon atoms C2 and C3.
The root can be shown as:
At C4 carbon atom of the root, a methyl group is attached.
Thus, the structure of
The structure of
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Chapter B Solutions
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- can someone draw out the reaction mechanism for this reaction showing all bonds, intermediates and side products Comment on the general features of the 1H-NMR spectrum of isoamyl ester provided belowarrow_forwardWhat would be the best choices for the missing reagents 1 and 3 in this synthesis? 1. PPh3 3 2. n-BuLi • Draw the missing reagents in the drawing area below. You can draw them in any arrangement you like. • Do not draw the missing reagent 2. If you draw 1 correctly, we'll know what it is. • Note: if one of your reagents needs to contain a halogen, use bromine. Click and drag to start drawing a structure.arrow_forwardIdentify the missing organic reactants in the following reaction: X + Y H+ two steps Note: This chemical equation only focuses on the important organic molecules in the reaction. Additional inorganic or small-molecule reactants or products (like H2O) are not shown. In the drawing area below, draw the skeletal ("line") structures of the missing organic reactants X and Y. You may draw the structures in any arrangement that you like, so long as they aren't touching. Click and drag to start drawing a structure. Х :arrow_forward
- I am struggling with the IUPAC (sys H Reply ☑Mark as Unreadarrow_forwardDon't used hand raiting and don't used Ai solution and correct answerarrow_forwardH R Part: 1/2 :CI: is a/an electrophile Part 2 of 2 Draw the skeletal structure of the product(s) for the Lewis acid-base reaction. Include lone pairs and formal charges (if applicable) on the structures. 4-7: H ö- H Skip Part Check X :C1: $ % L Fi Click and drag to start drawing a structure. MacBook Pro & ㅁ x G 0: P Add or increase positive formal cha Save For Later Submit ©2025 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Centearrow_forward
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